US20040110941A2 - Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors - Google Patents

Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors Download PDF

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US20040110941A2
US20040110941A2 US10/290,233 US29023302A US2004110941A2 US 20040110941 A2 US20040110941 A2 US 20040110941A2 US 29023302 A US29023302 A US 29023302A US 2004110941 A2 US2004110941 A2 US 2004110941A2
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antigen
polypeptide
variable domain
antibody
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Gregory WINTER
Elizabeth WARD
Detlef GUSSOW
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Medical Research Council
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Priority claimed from GB888826444A external-priority patent/GB8826444D0/en
Priority claimed from GB898906034A external-priority patent/GB8906034D0/en
Priority claimed from GB898909217A external-priority patent/GB8909217D0/en
Priority claimed from GB898911047A external-priority patent/GB8911047D0/en
Priority claimed from GB898912652A external-priority patent/GB8912652D0/en
Priority claimed from GB898913900A external-priority patent/GB8913900D0/en
Priority claimed from GB898918543A external-priority patent/GB8918543D0/en
Priority claimed from US07/580,674 external-priority patent/US5066942A/en
Application filed by Medical Research Council filed Critical Medical Research Council
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Publication of US20030130496A1 publication Critical patent/US20030130496A1/en
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    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K14/00Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof
    • C07K14/435Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans
    • C07K14/575Hormones
    • C07K14/655Somatostatins
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K16/00Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies
    • C07K16/46Hybrid immunoglobulins
    • C07K16/461Igs containing Ig-regions, -domains or -residues form different species
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12QMEASURING OR TESTING PROCESSES INVOLVING ENZYMES, NUCLEIC ACIDS OR MICROORGANISMS; COMPOSITIONS OR TEST PAPERS THEREFOR; PROCESSES OF PREPARING SUCH COMPOSITIONS; CONDITION-RESPONSIVE CONTROL IN MICROBIOLOGICAL OR ENZYMOLOGICAL PROCESSES
    • C12Q1/00Measuring or testing processes involving enzymes, nucleic acids or microorganisms; Compositions therefor; Processes of preparing such compositions
    • C12Q1/68Measuring or testing processes involving enzymes, nucleic acids or microorganisms; Compositions therefor; Processes of preparing such compositions involving nucleic acids
    • C12Q1/6876Nucleic acid products used in the analysis of nucleic acids, e.g. primers or probes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K38/00Medicinal preparations containing peptides
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K2317/00Immunoglobulins specific features
    • C07K2317/20Immunoglobulins specific features characterized by taxonomic origin
    • C07K2317/24Immunoglobulins specific features characterized by taxonomic origin containing regions, domains or residues from different species, e.g. chimeric, humanized or veneered

Abstract

Abstract of the Disclosure
  • The present invention relates to single domain ligands derived from molecules in the immunoglobulin (Ig) superfamily, receptors comprising at least one such ligand, methods for cloning, amplifying and expressing DNA sequences encoding such ligands, preferably using the polymerase chain reaction, methods for the use of said DNA sequences in the productions of Ig-type molecules and said ligands or receptors, and the use of said ligand or receptors in therapy, diagnosis or catalysis.
  • Description

      Detailed Description of the Invention Cross Reference to Related Applications
    • This is a continuation of application Serial No. 09/722,364, filed November 28, 2000, now U.S. Patent No. 6,545,142, which is a continuation of Serial No. 08/470,031, filed June 6, 1995, now U.S. Patent No. 6,248,516 issued June 19, 2001; which is a divisional of Serial No. 08/332,046, filed November 1, 1994 (now abandoned); which is a continuation of Serial No. 07/796,805, filed November 25, 1991 (now abandoned), which is a divisional of Serial No. 07/580,374, filed September 11, 1990 (now abandoned), the entire contents of each which is hereby incorporated by reference in this application. Serial No. 07/580,374 is a 371 U.S. National Phase of PCT/GB89/01344, filed November 13, 1989.[0001]
    • Summary of Invention
    • The present invention relates to single domain ligands derived from molecules in the immunoglobulin (Ig) superfamily, receptors comprising at least one such ligand, methods for cloning, amplifying and expressing DNA sequences encoding such ligands, methods for the use of said DNA sequences in the production of Ig-type molecules and said ligands or receptors, and the use of said ligands or receptors in therapy, diagnosis or catalysis.[0002]
    • Brief Description of Drawings
    • The present invention is now described, by way of example only, with reference to the accompanying drawings. [0003]
    • FIG. 1 shows a schematic representation of the unrearranged and rearranged heavy and light chain variable genes and the location of the primers. [0004]
    • FIG. 2 shows a schematic representation of the M13-VHPCR1 vector and a cloning scheme for amplified heavy chain variable domains. [0005]
    • FIG. 3 shows the sequence of the Ig variable region derived sequences in M13-VHPCR1. [0006]
    • FIG. 4 shows a schematic representation of the M13-VKPCR1 vector and a cloning scheme for light chain variable domains. [0007]
    • FIG. 5 shows the sequence of the Ig variable region derived sequences in M13-VKPCR1. [0008]
    • FIG. 6 shows the nucleotide sequences of the heavy and light chain variable domain encoding sequences of MAb MBr1. [0009]
    • FIG. 7 shows a schematic representation of the pSV-gpt vector (also known as α-Lys 30) which contains a variable region cloned as a HindIII-BamHI fragment, which is excised on introducing the new variable region. The gene for human IgG1 has also been engineered to remove a BamHI site, such that the BamHI site in the vector is unique. [0010]
    • FIG. 8 shows a schematic representation of the pSV-hygro vector (also known as α-Lys 17). It is derived from pSV gpt vector with the gene encoding mycophenolic acid replaced by a gene coding for hygromycin resistance. The construct contains a variable gene cloned as a HindIII-BamHI fragment which is excised on introducing the new variable region. The gene for human Cκhas also been engineered to remove a BamHI site, such that the BamHI site in the vector is unique. [0011]
    • FIG. 9 shows the assembly of the mouse: human MBr1 chimeric antibody. [0012]
    • FIG. 10a-10b shows encoded amino acid sequences of 48 mouse rearranged VH genes. [0013]
    • FIG. 11 shows encoded amino acid sequences of human rearranged VH genes. [0014]
    • FIG. 12 shows encoded amino acid sequences of unrearranged human VH genes. [0015]
    • FIG. 13 shows the sequence of part of the plasmid pSW1: essentially the sequence of a pectate lyase leader linked to VHLYS in pSW1 and cloned as an SphI-EcoRI fragment into pUC19 and the translation of the open reading frame encoding the pectate lyase leader-VHLYS polypeptide being shown.[0016]
    • FIG. 14a-14b shows the sequence of part of the plasmid pSW2: essentially the sequence of a pectate lyase leader linked to VHLYS and to VKLYS, and cloned as an SphI-EcoRI-EcoRI fragment into pUC19 and the translation of open reading frames encoding the pectate lyase leader-VHLYS and pectate lyase leader-VKLYS polypeptides being shown. [0017]
    • FIG. 15 shows the sequence of part of the plasmid pSW1HPOLYMYC which is based on pSW1 and in which a polylinker sequence has replaced the variable domain of VHLYS, and acts as a cloning site for amplified VH genes, and a peptide tag is introduced at the C-terminal end. [0018]
    • FIG. 16 shows the encoded amino acid sequences of two VH domains derived from mouse spleen and having lysozyme binding activity, and compared with the VH domain of the D1,3 antibody. The arrows mark the points of difference between the two VH domains. [0019]
    • FIG. 17 shows the encoded amino acid sequence of a VH domain derived from human peripheral blood lymphocytes and having lysozyme binding activity. [0020]
    • FIG. 18 shows a scheme for generating and cloning mutants of the VHLYS gene, which is compared with the scheme for cloning natural repertoires of VH genes. [0021]
    • FIG. 19 shows the sequence of part of the vector pSW2HPOLY. [0022]
    • FIG. 20 shows the sequence of part of the vector pSW3 which encodes the two linked VHLYS domains. [0023]
    • FIG. 21a-21c shows the sequence of the VHLYS domain and pelB leader sequence fused to the alkaline phosphatase gene. [0024]
    • FIG. 22 shows the sequence of the vector pSW1VHLYS-VKPOLYMYC for expression of a repertoire of Vκlight chain variable domains in association with the VHLYS domain. [0025]
    • FIG. 23 shows the sequence of VH domain which is secreted at high levels from [0026] E. coli. The differences with VHLYS domain are marked.
    • Detailed Description
    • Unknown;The present invention relates to single domain ligands derived from molecules in the immunoglobulin (Ig) superfamily, receptors comprising at least one such ligand, methods for cloning, amplifying and expressing DNA sequences encoding such ligands, methods for the use of said DNA sequences in the production of Ig-type molecules and said ligands or receptors, and the use of said ligands or receptors in therapy, diagnosis or catalysis. [0027]
    • A list of references is appended to the end of the description. The documents listed therein are referred to in the description by number, which is given in square brackets [ ]. [0028]
    • The Ig superfamily includes not only the Igs themselves but also such molecules as receptors on lymphoid cells such as T lymphocytes. Immunoglobulins comprise at least one heavy and one light chain covalently bonded together. Each chain is divided into a number of domains. At the N-terminal end of each chain is a variable domain. The variable domains on the heavy and light chains fit together to form a binding site designed to receive a particular target molecule. In the case of Igs, the target molecules are antigens. T-cell receptors have two chains of equal size, the αand β chains, each consisting of two domains. At the N-terminal end of each chain is a variable domain and the variable domains on the α and β chains are believed to fit together to form a binding site for target molecules, in this case peptides presented by a histocompatibility antigen. The variable domains are so called because their amino acid sequences vary particularly from one molecule to another. This variation in sequence enables the molecules to recognize an extremely wide variety of target molecules. [0029]
    • Much research has been carried out on Ig molecules to determine how the variable domains are produced. It has been shown that each variable domain comprises a number of areas of relatively conserved sequence and three areas of hypervariable sequence. The three hypervariable areas are generally known as complementarity determining regions (CDRs). [0030]
    • Crystallographic studies have shown that in each variable domain of an Ig molecule the CDRs are supported on framework areas formed by the areas of conserved sequences. The three CDRs are brought together by the framework areas and, together with the CDRs on the other chain, form a pocket in which the target molecule is received. [0031]
    • Since the advent of recombinant DNA technology, there has been much interest in the use of such technology to clone and express Ig molecules and derivatives thereof. This interest is reflected in the numbers of patent applications and other publications on the subject. [0032]
    • The earliest work on the cloning and expression of full Igs in the patent literature is EP-[0033] A-0 120 694 (Boss). The Boss application also relates to the cloning and expression of chimeric antibodies. Chimeric antibodies are Ig-type molecules in which the variable domains from one Ig are fused to constant domains from another Ig. Usually, the variable domains are derived from an Ig from one species (often a mouse Ig) and the constant domains are derived from an Ig from a different species (often a human Ig).
    • A later European patent application, EP-A-0 125 023 (Genentech), relates to much the same subject as the Boss application, but also relates to the production by recombinant DNA technology of other variations of Ig-type molecules. [0034]
    • EP-[0035] A-0 194 276 (Neuberger) discloses not only chimeric antibodies of the type disclosed in the Boss application but also chimeric antibodies in which some or all of the constant domains have been replaced by non-Ig derived protein sequences. For instance, the heavy chain CH2 and CH3 domains may be replaced by protein sequences derived from an enzyme or a protein toxin.
    • EP-A-0 239 400 (Winter) discloses a different approach to the production of Ig molecules. In this approach, only the CDRs from a first type of Ig are grafted onto a second type of Ig in place of its normal CDRs. The Ig molecule thus produced is predominantly of the second type, since the CDRs form a relatively small part of the whole Ig. However, since the CDRs are the parts which define the specificity of the Ig, the Ig molecule thus produced has its specificity derived from the first Ig. [0036]
    • Hereinafter, chimeric antibodies, CDR-grafted Igs, the altered antibodies described by Genentech, and fragments of such Igs such as F(ab')[0037] 2 and Fv fragments are referred to herein as modified antibodies.
    • One of the main reasons for all the activity in the Ig field using recombinant DNA technology is the desire to use Igs in therapy. It is well known that, using the hybridoma technique developed by Kohler and Milstein, it is possible to produce monoclonal antibodies (MAbs) of almost any specificity. Thus, MAbs directed against cancer antigens have been produced. It is envisaged that these MAbs could be covalently attached or fused to toxins to provide "magic bullets" for use in cancer therapy. MAbs directed against normal tissue or cell surface antigens have also been produced. Labels can be attached to these so that they can be used for [0038] in vivo imaging.
    • The major obstacle to the use of such MAbs in therapy or [0039] in vivo diagnosis is that the vast majority of MAbs which are produced are of rodent, in particular mouse, origin. It is very difficult to produce human MAbs. Since most MAbs are derived from non-human species, they are antigenic in humans. Thus, administration of these MAbs to humans generally results in an anti-Ig response being mounted by the human. Such a response can interfere with therapy or diagnosis, for instance by destroying or clearing the antibody quickly, or can cause allergic reactions or immune complex hypersensitivity which has adverse effects on the patient.
    • The production of modified Igs has been proposed to ensure that the Ig administered to a patient is as "human" as possible, but still retains the appropriate specificity. It is therefore expected that modified Igs will be as effective as the MAb from which the specificity is derived but at the same time not very antigenic. Thus, it should be possible to use the modified Ig a reasonable number of times in a treatment or diagnosis regime. [0040]
    • At the level of the gene, it is known that heavy chain variable domains are encoded by a "rearranged" gene which is built from three gene segments: an "unrearranged" VH gene (encoding the N-terminal three framework regions, first two complete CDRs and the first part of the third CDR), a diversity (DH)-segment (DH) (encoding the central portion of the third CDR) and a joining segment (JH) (encoding the last part of the third CDR and the fourth framework region). In the maturation of B-cells, the genes rearrange so that each unrearranged VH gene is linked to one DH gene and one JH gene. The rearranged gene corresponds to VH-DH-JH. This rearranged gene is linked to a gene which encodes the constant portion of the Ig chain. [0041]
    • For light chains, the situation is similar, except that for light chains there is no diversity region. Thus light chain variable domains are encoded by an "unrearranged" VL gene and a JL gene. There are two types of light chains, kappa (κ) or lambda (λ), which are built respectively from unrearranged Vκgenes and Jκ segments, and from unrearranged Vλgenes and Jλsegments. [0042]
    • Previous work has shown that it is necessary to have two variable domains in association together for efficient binding. For example, the associated heavy and light chain variable domains were shown to contain the antigen binding site [1]. This assumption is borne out by X-ray crystallographic studies of crystallized antibody/antigen complexes [2-6] which show that both the heavy and light chains of the antibody's variable domains contact the antigen. The expectation that association of heavy and light chain variable domains is necessary for efficient antigen binding underlies work to co-secrete these domains from bacteria [1], and to link the domains together by a short section of polypeptide as in the single chain antibodies [8, 9]. [0043]
    • Binding of isolated heavy and light chains had also been detected. However the evidence suggested strongly that this was a property of heavy or light chain dimmers. Early work, mainly with polyclonal antibodies, in which antibody heavy and light chains had been separated under denaturing conditions [10] suggested that isolated antibody heavy chains could bind to protein antigens [11] or hapten [12]. The binding of protein antigen was not characterized, but the hapten-binding affinity of the heavy chain fragments was reduced by two orders of magnitude [12] and the number of hapten molecules binding were variously estimated as 0.14 or 0.37 [13] or 0.26 [14] per isolated heavy chain. Furthermore binding of haptens was shown to be a property of dimeric heavy or dimeric light chains [14]. Indeed light chain dimers have been crystallized. It has been shown that in light chain dimers the two chains form a cavity which is able to bind to a single molecule of hapten [15]. [0044]
    • This confirms the assumption that, in order to obtain efficient binding, it is necessary to have a dimer, and preferably a heavy chain/light chain dimer, containing the respective variable domains. This assumption also underlies the teaching of the patent references cited above, wherein the intention is always to produce dimeric, and preferably heavy/light chain dimeric, molecules. [0045]
    • It has now been discovered, contrary to expectations, that isolated Ig heavy chain variable domains can bind to antigen in a 1:1 ratio and with binding constants of equivalent magnitude to those of complete antibody molecules. In view of what was known up until now and in view of the assumptions made by those skilled in the art, this is highly surprising. [0046]
    • Therefore, according to a first aspect of the present invention, there is provided a single domain ligand consisting of at least part of the variable domain of one chain of a molecule from the Ig superfamily. [0047]
    • Preferably, the ligand consists of the variable domain of an Ig light, or, most preferably, heavy chain. [0048]
    • The ligand may be produced by any known technique, for instance by controlled cleavage of Ig superfamily molecules or by peptide synthesis. However, preferably the ligand is produced by recombinant DNA technology. For instance, the gene encoding the rearranged gene for a heavy chain variable domain may be produced, for instance by cloning or gene synthesis, and placed into a suitable expression vector. The expression vector is then used to transform a compatible host cell which is then cultured to allow the ligand to be expressed and, preferably, secreted. [0049]
    • If desired, the gene for the ligand can be mutated to improve the properties of the expressed domain, for example to increase the yields of expression or the solubility of the ligand, to enable the ligand to bind better, or to introduce a second site for covalent attachment (by introducing chemically reactive residues such as cysteine and histidine) or non-covalent binding of other molecules. In particular it would be desirable to introduce a second site for binding to serum components, to prolong the residence time of the domains in the serum; or for binding to molecules with effector functions, such as components of complement, or receptors on the surfaces of cells. [0050]
    • Thus, hydrophobic residues which would normally be at the interface of the heavy chain variable domain with the light chain variable domain could be mutated to more hydrophilic residues to improve solubility; residues in the CDR loops could be mutated to improve antigen binding; residues on the other loops or parts of the β-sheet could be mutated to introduce new binding activities. Mutations could include single point mutations, multiple point mutations or more extensive changes and could be introduced by any of a variety of recombinant DNA methods, for example gene synthesis, site directed mutagenesis or the polymerase chain reaction. [0051]
    • Since the ligands of the present invention have equivalent binding affinity to that of complete Ig molecules, the ligands can be used in many of the ways as are Ig molecules or fragments. For example, Ig molecules have been used in therapy (such as in treating cancer, bacterial and viral diseases), in diagnosis (such as pregnancy testing), in vaccination (such as in producing anti-idiotypic antibodies which mimic antigens), in modulation of activities of hormones or growth factors, in detection, in biosensors and in catalysis. [0052]
    • It is envisaged that the small size of the ligands of the present invention may confer some advantages over complete antibodies, for example, in neutralizing the activity of low molecular weight drugs (such as digoxin) and allowing their filtration from the kidneys with drug attached; in penetrating tissues and tumors; in neutralizing viruses by binding to small conserved regions on the surfaces of viruses such as the "canyon" sites of viruses [16]; in high resolution epitope mapping of proteins; and in vaccination by ligands which mimic antigens. [0053]
    • The present invention also provides receptors comprising a ligand according to the first aspect of the invention linked to one or more of an effector molecule, a label, a surface, or one or more other ligands having the same or different specificity. [0054]
    • A receptor comprising a ligand linked to an effector molecule may be of use in therapy. The effector molecule may be a toxin, such as ricin or pseudomonas exotoxin, an enzyme which is able to activate a prodrug, a binding partner or a radio-isotope. The radio-isotope may be directly linked to the ligand or may be attached thereto by a chelating structure which is directly linked to the ligand. Such ligands with attached isotopes are much smaller than those based on Fv fragments, and could penetrate tissues and access tumors more readily. [0055]
    • A receptor comprising a ligand linked to a label may be of use in diagnosis. The label may be a heavy metal atom or a radio-isotope, in which case the receptor can be used for [0056] in vivo imaging using X-ray or other scanning apparatus. The metal atom or radio-isotope may be attached to the ligand either directly or via a chelating structure directly linked to the ligand. For in vitro diagnostic testing, the label may be a heavy metal atom, a radio-isotope, an enzyme, a fluorescent or colored molecule or a protein or peptide tag which can be detected by an antibody, an antibody fragment or another protein. Such receptors would be used in any of the known diagnostic tests, such as ELISA or fluorescence-linked assays.
    • A receptor comprising a ligand linked to a surface, such as a chromatography medium, could be used for purification of other molecules by affinity chromatography. Linking of ligands to cells, for example to the outer membrane proteins of [0057] E. coli or to hydrophobic tails which localize the ligands in the cell membranes, could allow a simple diagnostic test in which the bacteria or cells would agglutinate in the presence of molecules bearing multiple sites for binding the ligand(s).
    • Receptors comprising at least two ligands can be used, for instance, in diagnostic tests. The first ligand will bind to a test antigen and the second ligand will bind to a reporter molecule, such as an enzyme, a fluorescent dye, a colored dye, a radio-isotope or a colored-, fluorescently- or radio-labelled protein. [0058]
    • Alternatively, such receptors may be useful in increasing the binding to an antigen. The first ligand will bind to a first epitope of the antigen and the second ligand will bind to a second epitope. Such receptors may also be used for increasing the affinity and specificity of binding to different antigens in close proximity on the surface of cells. The first ligand will bind to the first antigen and the second epitope to the second antigen: strong binding will depend on the co-expression of the epitopes on the surface of the cell. This may be useful in therapy of tumors, which can have elevated expression of several surface markers. Further ligands could be added to further improve binding or specificity. Moreover, the use of strings of ligands, with the same or multiple specificities, creates a larger molecule which is less readily filtered from the circulation by the kidney. [0059]
    • For vaccination with ligands which mimic antigens, the use of strings of ligands may prove more effective than single ligands, due to repetition of the immunizing epitopes. [0060]
    • If desired, such receptors with multiple ligands could include effector molecules or labels so that they can be used in therapy or diagnosis as described above. [0061]
    • The ligand may be linked to the other part of the receptor by any suitable means, for instance by covalent or non-covalent chemical linkages. However, where the receptor comprises a ligand and another protein molecule, it is preferred that they are produced by recombinant DNA technology as a fusion product. If necessary, a linker peptide sequence can be placed between the ligand and the other protein molecule to provide flexibility. [0062]
    • The basic techniques for manipulating Ig molecules by recombinant DNA technology are described in the patent references cited above. These may be adapted in order to allow for the production of ligands and receptors according to the invention by means of recombinant DNA technology. [0063]
    • Preferably, where the ligand is to be used for [0064] in vivo diagnosis or therapy in humans, it is humanized, for instance by CDR replacement as described in EP-A-0 239 400.
    • In order to obtain a DNA sequence encoding a ligand, it is generally necessary firstly to produce a hybridoma which secretes an appropriate MAb. This can be a very time consuming method. Once an immunized animal has been produced, it is necessary to fuse separated spleen cells with a suitable myeloma cell line, grow up the cell lines thus produced, select appropriate lines, reclone the selected lines and reselect. This can take some long time. This problem also applies to the production of modified Igs. [0065]
    • A further problem with the production of ligands, and also receptors according to the invention and modified Igs, by recombinant DNA technology is the cloning of the variable domain encoding sequences from the hybridoma which produces the MAb from which the specificity is to be derived. This can be a relatively long method involving the production of a suitable probe, construction of a clone library from cDNA or genomic DNA, extensive probing of the clone library, and manipulation of any isolated clones to enable the cloning into a suitable expression vector. Due to the inherent variability of the DNA sequences encoding Ig variable domains, it has not previously been possible to avoid such time consuming work. It is therefore a further aim of the present invention to provide a method which enables substantially any sequence encoding an Ig superfamily molecule variable domain (ligand) to be cloned in a reasonable period of time. [0066]
    • According to another aspect of the present invention therefore, there is provided a method of cloning a sequence (the target sequence) which encodes at least part of the variable domain of an Ig superfamily molecule, which method comprises: (a) providing a sample of double stranded (ds) nucleic acid which contains the target sequence; (b) denaturing the sample so as to separate the two strands; (c) annealing to the sample a forward and a back oligonucleotide primer, the forward primer being specific for a sequence at or adjacent the 3' end of the sense strand of the target sequence, the back primer being specific for a sequence at or adjacent the 3' end of the antisense strand of the target sequence, under conditions which allow the primers to hybridize to the nucleic acid at or adjacent the target sequence; (d) treating the annealed sample with a DNA polymerase enzyme in the presence of deoxynucleoside triphosphates under conditions which cause primer extension to take place; and (e) denaturing the sample under conditions such that the extended primers become separated from the target sequence. [0067]
    • Preferably, the method of the present invention further includes the step (f) of repeating steps (c) to (e) on the denatured mixture a plurality of times. [0068]
    • Preferably, the method of the present invention is used to clone complete variable domains from Ig molecules, most preferably from Ig heavy chains. In the most preferred instance, the method will produce a DNA sequence encoding a ligand according to the present invention. [0069]
    • In step (c) recited above, the forward primer becomes annealed to the sense strand of the target sequence at or adjacent the 3' end of the strand. In a similar manner, the back primer becomes annealed to the antisense strand of the target sequence at or adjacent the 3' end of the strand. Thus, the forward primer anneals at or adjacent the region of the ds nucleic acid which encodes the C-terminal end of the variable region or domain. Similarly, the back primer anneals at or adjacent the region of the ds nucleic acid which encodes the N-terminal end of the variable domain. [0070]
    • In step (d), nucleotides are added onto the 3' end of the forward and back primers in accordance with the sequence of the strand to which they are annealed. Primer extension will continue in this manner until stopped by the beginning of the denaturing step (e). It must therefore be ensured that step (d) is carried out for a long enough time to ensure that the primers are extended so that the extended strands totally overlap one another. [0071]
    • In step (e), the extended primers are separated from the ds nucleic acid. The ds nucleic acid can then serve again as a substrate to which further primers can anneal. Moreover, the extended primers themselves have the necessary complementary sequences to enable the primers to anneal thereto. [0072]
    • During further cycles, if step (f) is used, the amount of extended primers will increase exponentially so that at the end of the cycles there will be a large quantity of cDNA having sequences complementary to the sense and antisense strands of the target sequence. Thus, the method of the present invention will result in the accumulation of a large quantity of cDNA which can form ds cDNA encoding at least part of the variable domain. [0073]
    • As will be apparent to the skilled person, some of the steps in the method may be carried out simultaneously or sequentially as desired. [0074]
    • The forward and back primers may be provided as isolated oligonucleotides, in which case only two oligonucleotides will be used. However, alternatively the forward and back primers may each be supplied as a mixture of closely related oligonucleotides. For instance, it may be found that at a particular point in the sequence to which the primer is to anneal, there is the possibility of nucleotide variation. In this case a primer may be used for each possible nucleotide variation. Furthermore it may be possible to use two or more sets of "nested" primers in the method to enhance the specific cloning of variable region genes. [0075]
    • The method described above is similar to the method described by Saiki et al. [17]. A similar method is also used in the methods described in EP-[0076] A-0 200 362. In both cases the method described is carried out using primers which are known to anneal efficiently to the specified nucleotide sequence. In neither of these disclosures was it suggested that the method could be used to clone Ig parts of variable domain encoding sequences, where the target sequence contains inherently highly variable areas.
    • The ds nucleic acid sequence used in the method of the present invention may be derived from mRNA. For instance, RNA may be isolated in known manner from a cell or cell line which is known to produce Igs. mRNA may be separated from other RNA by oligo-dT chromatography. A complementary strand of cDNA may then be synthesized on the mRNA template, using reverse transcriptase and a suitable primer, to yield an RNA/DNA heteroduplex. A second strand of DNA can be made in one of several ways, for example, by priming with RNA fragments of the mRNA strand (made by incubating RNA/DNA heteroduplex with RNase H) and using DNA polymerase, or by priming with a synthetic oligodeoxynucleotide primer which anneals to the 3' end of the first strand and using DNA polymerase. It has been found that the method of the present invention can be carried out using ds cDNA prepared in this way. [0077]
    • When making such ds cDNA, it is possible to use a forward primer which anneals to a sequence in the CH1 domain (for a heavy chain variable domain) or the Cλor Cκdomain (for a light chain variable domain). These will be located in close enough proximity to the target sequence to allow the sequence to be cloned. [0078]
    • The back primer may be one which anneals to a sequence at the N-terminal end of the VH1, Vκ or V λdomain. The back primer may consist of a plurality of primers having a variety of sequences designed to be complementary to the various families of VH1, Vκor Vλsequences known. Alternatively the back primer may be a single primer having a consensus sequence derived from all the families of variable region genes. [0079]
    • Surprisingly, it has been found that the method of the present invention can be carried out using genomic DNA. If genomic DNA is used, there is a very large amount of DNA present, including actual coding sequences, introns and untranslated sequences between genes. Thus, there is considerable scope for non-specific annealing under the conditions used. However, it has surprisingly been found that there is very little non-specific annealing. It is therefore unexpected that it has proved possible to clone the genes of Ig-variable domains from genomic DNA. [0080]
    • Under some circumstances the use of genomic DNA may prove advantageous compared with use of mRNA, as the mRNA is readily degraded, and especially difficult to prepare from clinical samples of human tissue. [0081]
    • Thus, in accordance with an aspect of the present invention, the ds nucleic acid used in step (a) is genomic DNA. [0082]
    • When using genomic DNA as the ds nucleic acid source, it will not be possible to use as the forward primer an oligonucleotide having a sequence complementary to a sequence in a constant domain. This is because, in genomic DNA, the constant domain genes are generally separated from the variable domain genes by a considerable number of base pairs. Thus, the site of annealing would be too remote from the sequence to be cloned. [0083]
    • It should be noted that the method of the present invention can be used to clone both rearranged and unrearranged variable domain sequences from genomic DNA. It is known that in germ line genomic DNA the three genes, encoding the VH, DH and JH respectively, are separated from one another by considerable numbers of base pairs. On maturation of the immune response, these genes are rearranged so that the VH, DH and JH genes are fused together to provide the gene encoding the whole variable domain (see FIG. 1). By using a forward primer specific for a sequence at or adjacent the 3' end of the sense strand of the genomic "unrearranged" VH gene, it is possible to clone the "unrearranged" VH gene alone, without also cloning the DH and JH genes. This can be of use in that it will then be possible to fuse the VH gene onto pre-cloned or synthetic DH and DH genes. In this way, rearrangement of the variable domain genes can be carried out [0084] in vitro.
    • The oligonucleotide primers used in step (c) may be specifically designed for use with a particular target sequence. In this case, it will be necessary to sequence at least the 5' and 3' ends of the target sequence so that the appropriate oligonucleotides can be synthesized. However, the present inventors have discovered that it is not necessary to use such specifically designed primers. Instead, it is possible to use a species specific general primer or a mixture of such primers for annealing to each end of the target sequence. This is not particularly surprising as regards the 3' end of the target sequence. It is known that this end of the variable domain encoding sequence leads into a segment encoding JH which is known to be relatively conserved. However, it was surprisingly discovered that, within a single species, the sequence at the 5' end of the target sequence is sufficiently well conserved to enable a species specific general primer or a mixture thereof to be designed for the 5' end of the target sequence. [0085]
    • Therefore according to a preferred aspect of the present invention, in step (c) the two primers which are used are species specific general primers, whether used as single primers or as mixtures of primers. This greatly facilitates the cloning of any undetermined target sequence since it will avoid the need to carry out any sequencing on the target sequence in order to produce target sequence-specific primers. Thus the method of this aspect of the invention provides a general method for cloning variable region or domain encoding sequences of a particular species. [0086]
    • Once the variable domain gene has been cloned using the method described above, it may be directly inserted into an expression vector, for instance using the PCR reaction to paste the gene into a vector. [0087]
    • Advantageously, however, each primer includes a sequence including a restriction enzyme recognition site. The sequence recognized by the restriction enzyme need not be in the part of the primer which anneals to the ds nucleic acid, but may be provided as an extension which does not anneal. The use of primers with restriction sites has the advantage that the DNA can be cut with at least one restriction enzyme which leaves 3' or 5' overhanging nucleotides. Such DNA is more readily cloned into the corresponding sites on the vectors than blunt end fragments taken directly from the method. The ds cDNA produced at the end of the cycles will thus be readily insertable into a cloning vector by use of the appropriate restriction enzymes. Preferably the choice of restriction sites is such that the ds cDNA is cloned directly into an expression vector, such that the ligand encoded by the gene is expressed. In this case the restriction site is preferably located [0088] in the sequence which is annealed to the ds nucleic acid.
    • Since the primers may not have a sequence exactly complementary to the target sequence to which it is to be annealed, for instance because of nucleotide variations or because of the introduction of a restriction enzyme recognition site, it may be necessary to adjust the conditions in the annealing mixture to enable the primers to anneal to the ds nucleic acid. This is well within the competence of the person skilled in the art and needs no further explanation. [0089]
    • In step (d), any DNA polymerase may be used. Such polymerases are known in the art and are available commercially. The conditions to be used with each polymerase are well known and require no further explanation here. The polymerase reaction will need to be carried out in the presence of the four nucleoside triphosphates. These and the polymerase enzyme may already be present in the sample or may be provided afresh for each cycle. [0090]
    • The denaturing step (e) may be carried out, for instance, by heating the sample, by use of chaotropic agents, such as urea or guanidine, or by the use of changes in ionic strength or pH. Preferably, denaturing is carried out by heating since this is readily reversible. Where heating is used to carry out the denaturing, it will be usual to use a thermostable DNA polymerase, such as Taq polymerase, since this will not need replenishing at each cycle. [0091]
    • If heating is used to control the method, a suitable cycle of heating comprises denaturation at about 95°C for about 1 minute, annealing at from 30°C to 65°C for about 1 minute and primer extension at about 75°C for about 2 minutes. To ensure that elongation and renaturation is complete, the mixture after the final cycle is preferably held at about 60°C for about 5 minutes. [0092]
    • The product ds cDNA may be separated from the mixture for instance by gel electrophoresis using agarose gels. However, if desired, the ds cDNA may be used in unpurified form and inserted directly into a suitable cloning or expression vector by conventional methods. This will be particularly easy to accomplish if the primers include restriction enzyme recognition sequences. [0093]
    • The method of the present invention may be used to make variations in the sequences encoding the variable domains. For example this may be achieved by using a mixture of related oligonucleotide primers as at least one of the primers. Preferably the primers are particularly variable in the middle of the primer and relatively conserved at the 5' and 3' ends. Preferably the ends of the primers are complementary to the framework regions of the variable domain, and the variable region in the middle of the primer covers all or part of a CDR. Preferably a forward primer is used in the area which forms the third CDR. If the method is carried out using such a mixture of oligonucleotides, the product will be a mixture of variable domain encoding sequences. Moreover, variations in the sequence may be introduced by incorporating some mutagenic nucleotide triphosphates in step (d), such that point mutations are scattered throughout the target region. Alternatively such point mutations are introduced by performing a large number of cycles of amplification, as errors due to the natural error rate of the DNA polymerase are amplified, particularly when using high concentrations of nucleoside triphosphates. [0094]
    • The method of this aspect of the present invention has the advantage that it greatly facilitates the cloning of variable domain encoding sequences directly from mRNA or genomic DNA. This in turn will facilitate the production of modified Ig-type molecules by any of the prior art methods referred to above. Further, target genes can be cloned from tissue samples containing antibody producing cells, and the genes can be sequenced. By doing this, it will be possible to look directly at the immune repertoire of a patient. This "fingerprinting" of a patient's immune repertoire could be of use in diagnosis, for instance of auto-immune diseases. [0095]
    • In the method for amplifying the amount of a gene encoding a variable domain, a single set of primers is used in several cycles of copying via the polymerase chain reaction. As a less preferred alternative, there is provided a second method which comprises steps (a) to (d) as above, which further includes the steps of: (g) treating the sample of ds cDNA with traces of DNAse in the presence of DNA polymerase I to allow nick translation of the DNA; and (h) cloning the ds cDNA into a vector. [0096]
    • If desired, the second method may further include the steps of: (i) digesting the DNA of recombinant plasmids to release DNA fragments containing genes encoding variable domains; and (j) treating the fragments in a further set of steps (c) to (h). [0097]
    • Preferably the fragments are separated from the vector and from other fragments of the incorrect size by gel electrophoresis. [0098]
    • The steps (a) to (d) then (g) to (h) can be followed once, but preferably the entire cycle (c) to (d) and (g) to (j) is repeated at least once. In this way a priming step, in which the genes are specifically copied, is followed by a cloning step, in which the amount of genes is increased. [0099]
    • In step (a) the ds cDNA is derived from mRNA. For Ig derived variable domains, the mRNA is preferably be isolated from lymphocytes which have been stimulated to enhance production of mRNA. [0100]
    • In each step (c) the set of primers are preferably different from the previous step (c), so as to enhance the specificity of copying. Thus the sets of primers form a nested set. For example, for cloning of Ig heavy chain variable domains, the first set of primers may be located within the signal sequence and constant region, as described by Larrick et al., [18], and the second set of primers entirely within the variable region, as described by Orlandi et al., [19]. Preferably the primers of step (c) include restriction sites to facilitate subsequent cloning. In the last cycle the set of primers used in step (c) should preferably include restriction sites for introduction into expression vectors. In step (g) possible mismatches between the primers and the template strands are corrected by "nick translation". In step (h), the ds cDNA is preferably cleaved with restriction enzymes at sites introduced into the primers to facilitate the cloning. [0101]
    • According to another aspect of the present invention the product ds cDNA is cloned directly into an expression vector. The host may be prokaryotic or eukaryotic, but is preferably bacterial. Preferably the choice of restriction sites in the primers and in the vector, and other features of the vector will allow the expression of complete ligands, while preserving all those features of the amino acid sequence which are typical of the (methoded) ligands. For example, for expression of the rearranged variable genes, the primers would be chosen to allow the cloning of target sequences including at least all the three CDR sequences. The cloning vector would then encode a signal sequence (for secretion of the ligand), and sequences encoding the N-terminal end of the first framework region, restriction sites for cloning and then the C-terminal end of the last (fourth) framework region. [0102]
    • For expression of unrearranged VH genes as part of complete ligands, the primers would be chosen to allow the cloning of target sequences including at least the first two CDRs. The cloning vector could then encode signal sequence, the N-terminal end of the first framework region, restriction sites for cloning and then the C-terminal end of the third framework region, the third CDR and fourth framework region. [0103]
    • Primers and cloning vectors may likewise be devised for expression of single CDRs, particularly the third CDR, as parts of complete ligands. The advantage of cloning repertoires of single CDRs would permit the design of a "universal" set of framework regions, incorporating desirable properties such as solubility. [0104]
    • Single ligands could be expressed alone or in combination with a complementary variable domain. For example, a heavy chain variable domain can be expressed either as an individual domain or, if it is expressed with a complementary light chain variable domain, as an antigen binding site. Preferably the two partners would be expressed in the same cell, or secreted from the same cell, and the proteins allowed to associate non-covalently to form an Fv fragment. Thus the two genes encoding the complementary partners can be placed in tandem and expressed from a single vector, the vector including two sets of restriction sites. Preferably the genes are introduced sequentially: for example the heavy chain variable domain can be cloned first and then the light chain variable domain. Alternatively the two genes are introduced into the vector in a single step, for example by using the polymerase chain reaction to paste together each gene with any necessary intervening sequence, as essentially described by Yon and Fried [29]. The two partners could be also expressed as a linked protein to produce a single chain Fv fragment, using similar vectors to those described above. As a further alternative the two genes may be placed in two different vectors, for example in which one vector is a phage vector and the other is a plasmid vector. [0105]
    • Moreover, the cloned ds cDNA may be inserted into an expression vector already containing sequences encoding one or more constant domains to allow the vector to express Ig-type chains. The expression of Fab fragments, for example, would have the advantage over Fv fragments that the heavy and light chains would tend to associate through the constant domains in addition to the variable domains. The final expression product may be any of the modified Ig-type molecules referred to above. [0106]
    • The cloned sequence may also be inserted into an expression vector so that it can be expressed as a fusion protein. The variable domain encoding sequence may be linked directly or via a linker sequence to a DNA sequence encoding any protein effector molecule, such as a toxin, enzyme, label or another ligand. The variable domain sequences may also be linked to proteins on the outer side of bacteria or phage. Thus, the method of this aspect of the invention may be used to produce receptors according to the invention. [0107]
    • According to another aspect of the invention, the cloning of ds cDNA directly for expression permits the rapid construction of expression libraries which can be screened for binding activities. For Ig heavy and light chain variable genes, the ds cDNA may comprise variable genes isolated as complete rearranged genes from the animal, or variable genes built from several different sources, for example a repertoire of unrearranged VH genes combined with a synthetic repertoire of DH and JH genes. Preferably repertoires of genes encoding Ig heavy chain variable domains are prepared from lymphocytes of animals immunized with an antigen. [0108]
    • The screening method may take a range of formats well known in the art. For example Ig heavy chain variable domains secreted from bacteria may be screened by binding to antigen on a solid phase, and detecting the captured domains by antibodies. Thus the domains may be screened by growing the bacteria in liquid culture and binding to antigen coated on the surface of ELISA plates. However, preferably bacterial colonies (or phage plaques) which secrete ligands (or modified ligands, or ligand fusions with proteins) are screened for antigen binding on membranes. Either the ligands are bound directly to the membranes (and for example detected with labelled antigen), or captured on antigen coated membranes (and detected with reagents specific for ligands). The use of membranes offers great convenience in screening many clones, and such techniques are well known in the art. [0109]
    • The screening method may also be greatly facilitated by making protein fusions with the ligands, for example by introducing a peptide tag which is recognized by an antibody at the N-terminal or C-terminal end of the ligand, or joining the ligand to an enzyme which catalyses the conversion of a colorless substrate to a colored product. In the latter case, the binding of antigen may be detected simply by adding substrate. Alternatively, for ligands expressed and folded correctly inside eukaryotic cells, joining of the ligand and a domain of a transcriptional activator such as the GAL4 protein of yeast, and joining of antigen to the other domain of the GAL4 protein, could form the basis for screening binding activities, as described by Fields and Song [21]. [0110]
    • The preparation of proteins, or even cells with multiple copies of the ligands, may improve the avidity of the ligand for immobilized antigen, and hence the sensitivity of the screening method. For example, the ligand may be joined to a protein subunit of a multimeric protein, to a phage coat protein or to an outer membrane protein of [0111] E. coli such as ompA or lamB. Such fusions to phage or bacterial proteins also offers possibilities of selecting bacteria displaying ligands with antigen binding activities. For example such bacteria may be precipitated with antigen bound to a solid support, or may be subjected to affinity chromatography, or may be bound to larger cells or particles which have been coated with antigen and sorted using a fluorescence activated cell sorter (FACS). The proteins or peptides fused to the ligands are preferably encoded by the vector, such that cloning of the ds cDNA repertoire creates the fusion product.
    • In addition to screening for binding activities of single ligands, it may be necessary to screen for binding or catalytic activities of associated ligands, for example, the associated Ig heavy and light chain variable domains. For example, repertoires of heavy and light chain variable genes may be cloned such that two domains are expressed together. Only some of the pairs of domains may associate, and only some of these associated pairs may bind to antigen. The repertoires of heavy and light chain variable domains could be cloned such that each domain is paired at random. This approach may be most suitable for isolation of associated domains in which the presence of both partners is required to form a cleft. Alternatively, to allow the binding of hapten. Alternatively, since the repertoires of light chain sequences are less diverse than those of heavy chains, a small repertoire of light chain variable domains, for example including representative members of each family of domains, may be combined with a large repertoire of heavy chain variable domains. [0112]
    • Preferably however, a repertoire of heavy chain variable domains is screened first for antigen binding in the absence of the light chain partner, and then only those heavy chain variable domains binding to antigen are combined with the repertoire of light chain variable domains. Binding of associated heavy and light chain variable domains may be distinguished readily from binding of single domains, for example by fusing each domain to a different C-terminal peptide tag which are specifically recognized by different monoclonal antibodies. [0113]
    • The hierarchical approach of first cloning heavy chain variable domains with binding activities, then cloning matching light chain variable domains may be particularly appropriate for the construction of catalytic antibodies, as the heavy chain may be screened first for substrate binding. A light chain variable domain would then be identified which is capable of association with the heavy chain, and "catalytic" residues such as cysteine or histidine (or prosthetic groups) would be introduced into the CDRs to stabilize the transition state or attack the substrate, as described by Baldwin and Schultz [22]. [0114]
    • Although the binding activities of non-covalently associated heavy and light chain variable domains (Fv fragments) may be screened, suitable fusion proteins may drive the association of the variable domain partners. Thus Fab fragments are more likely to be associated than the Fv fragments, as the heavy chain variable domain is attached to a single heavy chain constant domain, and the light chain variable domain is attached to a single light chain variable domain, and the two constant domains associate together. [0115]
    • Alternatively the heavy and light chain variable domains are covalently linked together with a peptide, as in the single chain antibodies, or peptide sequences attached, preferably at the C-terminal end which will associate through forming cysteine bonds or through non-covalent interactions, such as the introduction of "leucine zipper" motifs. However, in order to isolate pairs of tightly associated variable domains, the Fv fragments are preferably used. [0116]
    • The construction of Fv fragments isolated from a repertoire of variable region genes offers a way of building complete antibodies, and an alternative to hybridoma technology. For example by attaching the variable domains to light or suitable heavy chain constant domains, as appropriate, and expressing the assembled genes in mammalian cells, complete antibodies may be made and should possess natural effector functions, such as complement lysis. This route is particularly attractive for the construction of human monoclonal antibodies, as hybridoma technology has proved difficult, and for example, although human peripheral blood lymphocytes can be immortalized with Epstein Barr virus, such hybridomas tend to secrete low affinity IgM antibodies. [0117]
    • Moreover, it is known that immunological mechanisms ensure that lymphocytes do not generally secrete antibodies directed against host-proteins. However it is desirable to make human antibodies directed against human proteins, for example to human cell surface markers to treat cancers, or to histocompatibility antigens to treat auto-immune diseases. The construction of human antibodies built from the combinatorial repertoire of heavy and light chain variable domains may overcome this problem, as it will allow human antibodies to be built with specificities which would normally have been eliminated. [0118]
    • The method also offers a new way of making bispecific antibodies. Antibodies with dual specificity can be made by fusing two hybridomas of different specificities, so as to make a hybrid antibody with an Fab arm of one specificity, and the other Fab arm of a second specificity. However the yields of the bispecific antibody are low, as heavy and light chains also find the wrong partners. The construction of Fv fragments which are tightly associated should preferentially drive the association of the correct pairs of heavy with light chains. (It would not assist in the correct pairing of the two heavy chains with each other.) The improved production of bispecific antibodies would have a variety of applications in diagnosis and therapy, as is well known. [0119]
    • Thus the invention provides a species specific general oligonucleotide primer or a mixture of such primers useful for cloning variable domain encoding sequences from animals of that species. The method allows a single pair or pair of mixtures of species specific general primers to be used to clone any desired antibody specificity from that species. This eliminates the need to carry out any sequencing of the target sequence to be cloned and the need to design specific primers for each specificity to be recovered. [0120]
    • Furthermore it provides for the construction of repertoires of variable genes, for the expression of the variable genes directly on cloning, for the screening of the encoded domains for binding activities and for the assembly of the domains with other variable domains derived from the repertoire. [0121]
    • Thus the use of the method of the present invention will allow for the production of heavy chain variable domains with binding activities and variants of these domains. It allows for the production of monoclonal antibodies and bispecific antibodies, and will provide an alternative to hybridoma technology. For instance, mouse splenic ds mRNA or genomic DNA may be obtained from a hyper-immunized mouse. This could be cloned using the method of the present invention and then the cloned ds DNA inserted into a suitable expression vector. The expression vector would be used to transform a host cell, for instance a bacterial cell, to enable it to produce an Fv fragment or a Fab fragment. The Fv or Fab fragment would then be built into a monoclonal antibody by attaching constant domains and expressing it in mammalian cells. [0122]
    • [0123] PrimersIn the Examples described below, the following oligonucleotide primers, or mixed primers were used. Their locations are marked on FIG. 1 and sequences are as follows:
    • VH1FOR 5' TGAGGAGACGGTGACCGTGGTCCCTTGGCCCCAG 3'; VH1FOR-2 5' TGAGGAGACGGTGACCGTGGTCCCTTGGCCCC 3'; Hu1VHFOR 5'CTTGGTGGAGGCTGAGGAGACGGTGACC 3'; Hu2VHFOR 5'CTTGGTGGAGGCTGAGGAGACGGTGACC 3'; Hu3VHFOR 5'CTTGGTGGATGCTGAGGAGACGGTGACC 3'; Hu4VHFOR 5'CTTGGTGGATGCTGATGAGACGGTGACC 3'; MOJH1FOR 5' TGAGGAGACGGTGACCGTGGTCCCTGCGCCCCAG 3'; MOJH2FOR 5' TGAGGAGACGGTGACCGTGGTGCCTTGGCCCCAG 3'; MOJH3FOR 5' TGCAGAGACGGTGACCAGAGTCCCTTGGCCCCAG 3'; MOJH4FOR 5' TGAGGAGACGGTGACCGAGGTTCCTTGACCCCAG 3'; HUJH1FOR 5' TGAGGAGACGGTGACCAGGGTGCCCTGGCCCCAG 3'; HUJH2FOR 5' TGAGGAGACGGTGACCAGGGTGCCACGGCCCCAG 3'; HUJH4FOR 5' TGAGGAGACGGTGACCAGGGTTCCTTGGCCCCAG 3'; VK1FOR 5' GTTAGATCTCCAGCTTGGTCCC 3'; VK2FOR 5' CGTTAGATCTCCAGCTTGGTCCC 3'; VK3FOR 5' CCGTTTCAGCTCGAGCTTGGTCCC 3'; MOJK1FOR 5' CGTTAGATCTCCAGCTTGGTGCC 3'; MOJK3FOR 5' GGTTAGATCTCCAGTCTGGTCCC 3'; MOJK4FOR 5' CGTTAGATCTCCAACTTTGTCCC 3'; HUJK1FOR 5' CGTTAGATCTCCACCTTGGTCCC 3'; HUJK3FOR 5' CGTTAGATCTCCACTTTGGTCCC 3'; HUJK4FOR 5' CGTTAGATCTCCACCTTGGTCCC 3'; HUJK5FOR 5' CGTTAGATCTCCAGTCGTGTCCC 3'; VH1BACK 5' AGGT(C/G)(C/A)A(G/A)CTGCAG(G/C)AGTC(T/A)GG 3'; Hu2VHIBACK: 5' CAGGTGCAGCTGCAGCAGTCTGG 3'; HuVHIIBACK: 5' CAGGTGCAGCTGCAGGAGTCGGG 3'; Hu2VHIIIBACK: 5' GAGGTGCAGCTGCAGGAGTCTGG 3'; HuVHIVBACK: 5' CAGGTGCAGCTGCAGCAGTCTGG 3'; MOVHIBACK 5' AGGTGCAGCTGCAGGAGTCAG 3'; MOVHIIABACK 5' AGGTCCAGCTGCAGCA(G/A)TCTGG 3'; MOVHIIBBACK 5' AGGTCCAACTGCAGCAGCCTGG 3'; MOVHIIBACK 5' AGGTGAAGCTGCAGGAGTCTGG 3'; VK1BACK 5' GACATTCAGCTGACCCAGTCTCCA 3'; VK2BACK 5' GACATTGAGCTCACCCAGTCTCCA 3'; MOVKIIABACK 5' GATGTTCAGCTGACCCAAACTCCA 3' MOVKIIBBACK 5' GATATTCAGCTGACCCAGGATGAA 3'; HuHep1FOR 5' C(A/G)(C/G)TGAGCTCACTGTGTCTCTCGCACA 3'; HuOcta1BACK 5' CGTGAATATGCAAATAA 3'; HUOcta2BACK 5' AGTAGGAGACATGCAAAT 3'; and HuOcta3BACK 5' CACCACCCACATGCAAAT 3'; VHMUT1 5' GGAGACGGTGACCGTGGTCCCTTGGCCCCAGTAGTCAAG NNNNNNNNNNNNCTCTCTGGC 3' (where N is an equimolar mixture of T, C, G and A) M13 pRIMER 5' AACAGCTATGACCATG 3' (New England Biolabs *1201) [0124]
    • [0125] EXAMPLE 1Cloning of mouse rearranged variable region genes from hybridomas, assembly of genes encoding chimeric antibodies and the expression of antibodies from myeloma cells VH1FOR is designed to anneal with the 3' end of the sense strand of any mouse heavy chain variable domain encoding sequence. It contains a BstEII recognition site. VK1FOR is designed to anneal with the 3' end of the sense strand of any mouse kappa-type light chain variable domain encoding sequence and contains a BglII recognition site. VH1BACK is designed to anneal with the 3' end of the antisense strand of any mouse heavy chain variable domain and contains a PstI recognition site. VK1BACK is designed to anneal with the 3' end of the antisense strand of any mouse kappa-type light chain variable domain encoding sequence and contains a PvuII recognition site.
    • In this Example five mouse hybridomas were used as a source of ds nucleic acid. The hybridomas produce monoclonal antibodies (MAbs) designated MBr1 [23], BW431/26 [24], BW494/32 [25], BW250/183 [24,26] and BW704/152 [27]. MAb MBr1 is particularly interesting in that it is known to be specific for a saccharide epitope on a human mammary carcinoma line MCF-7 [28]. [0126]
    • [0127] Cloning via mRNA Each of the five hybridomas referred to above was grown up in roller bottles and about 5 x 108 cells of each hybridoma were used to isolate RNA. mRNA was separated from the isolated RNA using oligodT cellulose [29]. First strand cDNA was synthesized according to the procedure described by Maniatis et al. [30] as set out below.
    • In order to clone the heavy chain variable domain encoding sequence, a 50 μl reaction solution which contains 10 μg mRNA, 20 pmole VH1FOR primer, 250 μM each of dATP, dTTP, dCTP and dGTP, 10 mM dithiothreitol (DTT), 100 mM Tris.HCl, 10 MM MgCl[0128] 2 and 140 mM KCl, adjusted to pH 8.3 was prepared. The reaction solution was heated at 70°C for ten minutes and allowed to cool to anneal the primer to the 3' end of the variable domain encoding sequence in the mRNA. To the reaction solution was then added 46 units of reverse transcriptase (Anglian Biotec) and the solution was then incubated at 42°C for 1 hour to cause first strand cDNA synthesis.
    • In order to clone the light chain variable domain encoding sequence, the same procedure as set out above was used except that the VK1FOR primer was used in place of the VH1FOR primer. [0129]
    • [0130] Amplification from RNA/DNA Hybrid Once the ds RNA/DNA hybrids had been produced, the variable domain encoding sequences were amplified as follows. For heavy chain variable domain encoding sequence amplification, a 50 μl reaction solution containing 5 μl of the ds RNA/DNA hybrid-containing solution, 25 pmole each of VH1FOR and VH1BACK primers, 250 μM of dATP, dTTP, dCTP and dGTP, 67 mM Tris.HCl, 17 mM ammonium sulphate, 10 mM MgCl2, 200 μg/ml gelatine and 2 units Taq polymerase (Cetus) was prepared. The reaction solution was overlaid with paraffin oil and subjected to 25 rounds of temperature cycling using a Techne PHC-1 programmable heating block. Each cycle consisted of 1 minute and 95°C (to denature the nucleic acids), 1 minute at 30°C (to anneal the primers to the nucleic acids) and 2 minutes at 72°C (to cause elongation from the primers). After the 25 cycles, the reaction solution and the oil were extracted twice with ether, once with phenol and once with phenol/CHCl3. Thereafter ds cDNA was precipitated with ethanol. The precipitated ds cDNA was then taken up in 50 μl of water and frozen.
    • The procedure for light chain amplification was exactly as described above, except that the VK1FOR and VK1BACK primers were used in place of the VHlFOR and VHlBACK primers respectively. [0131]
    • 5 μl of each sample of amplified cDNA was fractionated on 2% agarose gels by electrophoresis and stained with ethidium bromide. This showed that the amplified ds cDNA gave a major band of the expected size (about 330 bp). (However the band for VK DNA of MBr1 was very weak. It was therefore excised from the gel and reamplified in a second round.) Thus by this simple procedure, reasonable quantities of ds DNA encoding the light and heavy chain variable domains of the five MAbs were produced. [0132]
    • [0133] Heavy Chain Vector Construction A BstEII recognition site was introduced into the vector M13-HuVHNP [31] by site directed mutagenesis [32,33] to produce the vector M13-VHPCR1 (FIGS. 2 and 3).
    • Each amplified heavy chain variable domain encoding sequence was digested with the restriction enzymes PstI and BstEII. The fragments were phenol extracted, purified on 2% low melting point agarose gels and force cloned into vector M13-VHPCR1 which had been digested with PstI and BstEII and purified on an 0.8% agarose gel. Clones containing the variable domain inserts were identified directly by sequencing [34] using primers based in the 3' non-coding variable gene in the M13-VHPCR1 vector. [0134]
    • There is an internal PstI site in the heavy chain variable domain encoding sequences of BW431/26. This variable domain encoding sequence was therefore assembled in two steps. The 3' PstI-BstEII fragment was first cloned into M13-VHPCR1, followed in a second step by the 5' PstI fragment. [0135]
    • [0136] Light Chain Vector Construction Vector M13 mp18 [35] was cut with PvuII and the vector backbone was blunt ligated to a synthetic HindIII-BamHI polylinker. Vector M13-HuVKLYS [36] was digested with HindIII and BamHI to isolate the HuVKLYS gene. This HindIII-BamHI fragment was then inserted into the HindIII-BamHI polylinker site to form a vector M13-VKPCR1 which lacks any PvuII sites in the vector backbone (FIGS. 4 and 5). This vector was prepared in E. coli JM110 [22] to avoid dam methylation at the BclI site.
    • Each amplified light chain variable domain encoding sequence was digested with PvuII and BglII. The fragments were phenol extracted, purified on 2% low melting point agarose gels and force cloned into vector M13-VKPCR1 which had been digested with PvuII and BclI, purified on an 0.8% agarose gel and treated with calf intestinal phosphatase. Clones containing the light chain variable region inserts were identified directly by sequencing [34] using primers based in the 3' non-coding region of the variable domain in the M13-VKPCR1 vector. [0137]
    • The nucleotide sequences of the MBr1 heavy and light chain variable domains are shown in FIG. 6 with part of the flanking regions of the M13-VHPCR1 and M13-VKPCR1 vectors. [0138]
    • [0139] Antibody Expression The HindIII-BamHI fragment carrying the MBr1 heavy chain variable domain encoding sequence in M13-VHPCR1 was recloned into a pSV-gpt vector with human γ1 constant regions [37] (FIG. 7). The MBr1 light chain variable domain encoding sequence in M13-VKPCR1 was recloned as a HindIII-BamHI fragment into a pSV vector, PSV-hyg-HuCK with a hygromycin resistance marker and a human kappa constant domain (FIG. 8). The assembly of the genes is summarized in FIG. 9.
    • The vectors thus produced were linearized with PvuI (in the case of the pSV-hygro vectors the PvuI digest is only partial) and cotransfected into the non-secreting mouse myeloma line NSO [38] by electroporation [39]. One day after cotransfection, cells were selected in 0.3 μg/ml mycophenolic acid (MPA) and after seven days in 1 μg/ml MPA. After 14 days, four wells, each containing one or two major colonies, were screened by incorporation of [0140] 14C-lysine [40] and the secreted antibody detected after precipitation with protein-A SepharoseTM (Pharmacia) on SDS-PAGE [41]. The gels were stained, fixed, soaked in a fluorographic reagent, AmplifyTM (Amersham), dried and autoradiographed on preflashed film at -70°C for 2 days.
    • Supernatant was also tested for binding to the mammary carcinoma line MCF-7 and the colon carcinoma line HT-29, essentially as described by Menard et al. [23], either by an indirect immunoflorescence assay on cell suspensions (using a fluorescein-labelled goat anti-human IgG (Amersham)) or by a solid phase RIA on monolayers of fixed cells (using [0141] 125I-protein A (Amersham)).
    • It was found that one of the supernatants from the four wells contained secreted antibody. The chimeric antibody in the supernatant, like the parent mouse MBr1 antibody, was found to bind to MCF-7 cells but not the HT-29 cells, thus showing that the specificity had been properly cloned and expressed. [0142]
    • [0143] EXAMPLE 2Cloning of rearranged variable genes from genomic DNA of mouse spleen Preparation of DNA From Spleen The DNA from the mouse spleen was prepared in one of two ways (although other ways can be used).
    • [0144] Method 1. A mouse spleen was cut into two pieces and each piece was put into a standard Eppendorf tube with 200 μl of PBS. The tip of a 1 ml glass pipette was closed and rounded in the blue flame of a Bunsen burner. The pipette was used to squash the spleen piece in each tube. The cells thus produced were transferred to a fresh Eppendorf tube and the method was repeated three times until the connective tissue of the spleen appeared white. Any connective tissue which has been transferred with the cells was removed using a drawn-out Pasteur pipette. The cells were then washed in PBS and distributed into four tubes.
    • The mouse spleen cells were then sedimented by a 2 minute spin in a Microcentaur centrifuge at low speed setting. All the supernatant was aspirated with a drawn out Pasteur pipette. If desired, at this point the cell sample can be frozen and stored at -20°C. [0145]
    • To the cell sample (once thawed if it had been frozen) was added 500 μl of water and 5 μl of a 10% solution of NP-40, a non-ionic detergent. The tube was closed and a hole was punched in the lid. The tube was placed on a boiling water bath for 5 minutes to disrupt the cells and was then cooled on ice for 5 minutes. The tube was then spun for 2 minutes at high speed to remove cell debris. [0146]
    • The supernatant was transferred to a new tube and to this was added 125 μl 5M NaCl and 30 μl 1M MOPS adjusted to pH 7.0. The DNA in the supernatant was absorbed on a [0147] Quiagen 5 tip and purified following the manufacturer's instructions for lambda DNA. After isopropanol precipitation, the DNA was resuspended in 500 μl water.
    • [0148] Method 2. This method is based on the technique described in Maniatis et al. [30]. A mouse spleen was cut into very fine pieces and put into a 2 ml glass homogenizer. The cells were then freed from the tissue by several slow up and down strokes with the piston. The cell suspension was made in 500 μl phosphate buffered saline (PBS) and transferred to an Eppendorf tube. The cells were then spun for 2 min at low speed in a Microcentaur centrifuge. This results in a visible separation of white and red cells. The white cells, sedimenting slower, form a layer on top of the red cells. The supernatant was carefully removed and spun to ensure that all the white cells had sedimented. The layer of white cells was resuspended in two portions of 500 μl PBS and transferred to another tube.
    • The white cells were precipitated by spinning in the Microcentaur centrifuge at low speed for one minute. The cells were washed a further two times with 500 μl PBS, and were finally resuspended in 200 μl PBS. The white cells were added to 2.5 [0149] ml 25 mM EDTA and 10 mM Tris.Cl, pH 7.4, and vortexed slowly. While vortexing 25 μl 20% SDS was added. The cells lysed immediately and the solution became viscous and clear. 100 μl of 20 mg/ml proteinase K was added and incubated one to three hours at 50°C.
    • The sample was extracted with an equal volume of phenol and the same volume of chloroform, and vortexed. After centrifuging, the aqueous phase was removed and 1/10 volume 3M ammonium acetate was added. This was overlaid with three volumes of cold ethanol and the tube rocked carefully until the DNA strands became visible. The DNA was spooled out with a Pasteur pipette, the ethanol allowed to drip off, and the DNA transferred to 1 ml of 10 mM Tris.Cl pH 7.4, 0.1 mM EDTA in an Eppendorf tube. The DNA was allowed to dissolve in the cold overnight on a roller. [0150]
    • [0151] Amplification From Genomic DNA The DNA solution was diluted 1/10 in water and boiled for 5 min prior to using the polymerase chain reaction (PCR). For each PCR reaction, typically 50-200 ng of DNA were used.
    • The heavy and light chain variable domain encoding sequences in the genomic DNA isolated from the human PBL or the mouse spleen cells was then amplified and cloned using the general protocol described in the first two paragraphs of the section headed "Amplification from RNA/DNA Hybrid" in Example 1, except that during the annealing part of each cycle, the temperature was held at 65°C and that 30 cycles were used. Furthermore, to minimize the annealing between the 3' ends of the two primers, the sample was first heated to 95°C, then annealed at 65°C, and only then was the Taq polymerase added. At the end of the 30 cycles, the reaction mixture was held at 60°C for five minutes to ensure that complete elongation and renaturation of the amplified fragments had taken place. [0152]
    • The primers used to amplify the mouse spleen genomic DNA were VH1FOR and VH1BACK, for the heavy chain variable domain and VK2FOR and VK1BACK, for the light chain variable domain. (VK2FOR only differs from VK1FOR in that it has an extra C residue on the 5' end.) Other sets of primers, designed to optimize annealing with different families of mouse VH and Vκ genes were devised and used in mixtures with the primers above. For example, mixtures of VK1FOR, MOJK1FOR, MOJK3FOR and MOJK4FOR were used as forward primers and mixtures of VK1BACK, MOVKIIABACK and MOVKIIBBACK as back primers for amplification of Vκgenes. Likewise mixtures of VH1FOR, MOJH1FOR, MOJH2FOR, MOJH3FOR and MOJH4FOR were used as forward primers and mixtures of VH1BACK, MOVHIBACK, MOVHIIABACK, MOVHIIBBACK, MOVHIIIBACK were used as backward primers for amplification of VH genes. [0153]
    • All these heavy chain FOR primers referred to above contain a BstEII site and all the BACK primers referred to above contain a PstI site. These light chain FOR and BACK primers referred to above all contain BglII and PvuII sites respectively. Light chain primers (VK3FOR and VK2BACK) were also devised which utilized different restriction sites, SacI and XhoI. [0154]
    • Typically all these primers yielded amplified DNA of the correct size on gel electrophoresis, although other bands were also present. However, a problem was identified in which the 5' and 3' ends of the forward and backward primers for the VH genes were partially complementary, and this could yield a major band of "primer-dimer" in which the two oligonucleotides prime on each other. For this reason an improved forward primer, VHlFOR-2 was devised in which the two 3' nucleotides were removed from VH1FOR. [0155]
    • Thus, the preferred amplification conditions for mouse VH genes are as follows: the sample was made in a volume of 50-100 μl, 50-100 ng of DNA, VH1FOR-2 and VH1BACK primers (25 pmole of each), 250 μM of each deoxynucleotide triphosphate, 10 mM Tris.HCl, pH 8.8, 50 mM KCl, 1.5 mM MgCl[0156] 2, and 100 μg/ml gelatine. The sample was overlaid with paraffin oil, heated to 95°C for 2 min, 65°C for 2 min, and then to 72°C: taq polymerase was added after the sample had reached the elongation temperature and the reaction continued for 2 min at 72°C. The sample was subjected to a further 29 rounds of temperature cycling using the Techne PHC-1 programmable heating block.
    • The preferred amplification conditions for mouse Vκ genes from genomic DNA are as follows: the sample treated as above except with Vκ primers, for example VK3FOR and VK2BACK, and using a cycle of 94°C for one minute, 60°C for one minute and 72°C for one minute. [0157]
    • The conditions which were devised for genomic DNA are also suitable for amplification from the cDNA derived from mRNA from mouse spleen or mouse hybridoma. [0158]
    • [0159] Cloning and analysis of variable region genes The reaction mixture was then extracted twice with 40 μl of water-saturated diethyl ether. This was followed by a standard phenol extraction and ethanol precipitation as described in Example 1. The DNA pellet was then dissolved in 100 μl 10 mM Tris.Cl, 0.1 mM EDTA.
    • Each reaction mixture containing a light chain variable domain encoding sequence was digested with SacI and XhoI (or with PvuII and BglII) to enable it to be ligated into a suitable expression vector. Each reaction mixture containing a heavy chain variable domain encoding sequence was digested with PstI and BstEII for the same purpose. [0160]
    • The heavy chain variable genes isolated as above from a mouse hyper-immunized with lysozyme were cloned into M13VHPCR1 vector and sequenced. The complete sequences of 48 VH gene clones were determined (FIG. 10a-10b). All but two of the mouse VH gene families were represented, with frequencies of: VA (1), IIIC (1), IIIB (8), IIIA (3), IIB (17), IIA (2), IB (12), IA (4). In 30 clones, the D segments could be assigned to families SP2 (14), FL16 (11) and Q52 (5), and in 38 clones the JH minigenes to families JH1 (3), JH2 (7), JH3 (14) and JH4 (14). The different sequences of CDR3 marked out each of the 48 clones as unique. Nine pseudogenes and 16 unproductive rearrangements were identified. Of the clones sequenced, 27 have open reading frames. [0161]
    • Thus the method is capable of generating a diverse repertoire of heavy chain variable genes from mouse spleen DNA. [0162]
    • [0163] EXAMPLE 3 Cloning of rearranged variable genes from mRNA from human peripheral blood lymphocytes Preparation of mRNA Human peripheral blood lymphocytes were purified and mRNA prepared directly (Method 1), or mRNA was prepared after addition of Epstein Barr virus (Method 2).
    • [0164] Method 1. 20 ml of heparinized human blood from a healthy volunteer was diluted with an equal volume of phosphate buffered saline (PBS) and distributed equally into 50 ml Falcon tubes. The blood was then underlayed with 15 ml Ficoll Hypaque (Pharmacia 10-A-001-07). To separate the lymphocytes from the red blood cells, the tubes were spun for 10 minutes at 1800 rpm at room temperature in an IEC Centra 3E table centrifuge. The peripheral blood lymphocytes (PBL) were then collected from the interphase by aspiration with a Pasteur pipette. The cells were diluted with an equal volume of PBS and spun again at 1500 rpm for 15 minutes. The supernatant was aspirated, the cell pellet was resuspended in 1 ml PBS and the cells were distributed into two Eppendorf tubes.
    • [0165] Method 2. 40 ml human blood from a patient with HIV in the pre-AIDS condition was layered on Ficoll to separate the white cells (see Method 1 above). The white cells were then incubated in tissue culture medium for 4-5 days. On day 3, they were infected with Epstein Barr virus. The cells were pelleted (approx 2 x 107 cells) and washed in PBS.
    • The cells were pelleted again and lysed with 7 ml 5M guanidine isothiocyanate, 50 mM Tris, 10 mM EDTA, 0.1 mM dithiothreitol. The cells were vortexed vigorously and 7 volumes of 4M LiCl added. The mixture was incubated at 4°C for 15-20 hrs. The suspension was spun and the supernatant resuspended in 3M LiCl and centrifuged again. The pellet was dissolved in 2 ml 0.1% SDS, 10 mM Tris HCl and 1 mM EDTA. The suspension was frozen at -20°C, and thawed by vortexing for 20 s every 10 min for 45 min. A large white pellet was left behind and the clear supernatant was extracted with phenol chloroform, then with chloroform. The RNA was precipitated by adding 1/10 volume 3M sodium acetate and 2 vol ethanol and leaving overnight at -20°C. The pellet was suspended in 0.2 ml water and reprecipitated with ethanol. Aliquots for cDNA synthesis were taken from the ethanol precipitate which had been vortexed to create a fine suspension. [0166]
    • 100 μl of the suspension was precipitated and dissolved in 20 μl water for cDNA synthesis [30] using 10 pmole of a HUFOR primer (see below) in final volume of 50 μl. A sample of 5 μl of the cDNA was amplified as in Example 2 except using the primers for the human VH gene families (see below) using a cycle of 95°C, 60°C and 72°C. [0167]
    • The back primers for the amplification of human DNA were designed to match the available human heavy and light chain sequences, in which the different families have slightly different nucleotide sequences at the 5' end. Thus for the human VH genes, the primers Hu2VHIBACK, HuVHIIBACK, Hu2VHIIIBACK and HuVH1VBACK were designed as back primers, and HUJH1FOR, HUJH2FOR and HUJH4FOR as forward primers based entirely in the variable gene. Another set of forward primers Hu1VHFOR, Hu2VHFOR, Hu3VHFOR, and Hu4VHFOR was also used, which were designed to match the human J-regions and the 5' end of the constant regions of different human isotypes. [0168]
    • Using sets of these primers it was possible to demonstrate a band of amplified ds cDNA by gel electrophoresis. [0169]
    • One such experiment was analyzed in detail to establish whether there was a diverse repertoire in a patient with HIV infection. It is known that during the course of AIDS, that T-cells and also antibodies are greatly diminished in the blood. Presumably the repertoire of lymphocytes is also diminished. In this experiment, for the forward priming, an equimolar mixture of primers HulVHFOR, Hu2VHFOR, Hu3VHFOR, and Hu4VHFOR (in [0170] PCR 25 pmole of primer 5' ends) was used. For the back priming, the primers Hu2VHIBACK, HuVHIIBACK, Hu2VHIIIBACK and HuVH1VBACK were used separately in four separate primings. The amplified DNA from the separate primings was then pooled, digested with restriction enzymes PstI and BstEII as above, and then cloned into the vector M13VHPCR1 for sequencing. The sequences reveal a diverse repertoire (FIG. 11) at this stage of the disease.
    • For human Vκ genes the primers HuJK1FOR, HUJK3FOR; HUJK4FOR and HUJK5FOR were used as forward primers and VK1BACK as back primer. Using these primers it was possible to see a band of amplified ds cDNA of the correct size by gel electrophoresis. [0171]
    • [0172] EXAMPLE 4 Cloning of unrearranged variable gene genomic DNA from human peripheral blood lymphocytes Human peripheral blood lymphocytes of a patient with non-Hodgkins lymphoma were prepared as in Example 3 (Method 1). The genomic DNA was prepared from the PBL using the technique described in Example 2 (Method 2). The VH region in the isolated genomic DNA was then amplified and cloned using the general protocol described in the first two paragraphs of the section headed "Amplification from RNA/DNA hybrid" in Example 1 above, except that during the annealing part of each cycle, the temperature was held at 55°C and that 30 cycles were used. At the end of the 30 cycles, the reaction mixture was held at 60°C for five minutes to ensure that complete elongation and renaturation of the amplified fragments had taken place.
    • The forward primer used was HuHep1FOR, which contains a SacI site. This primer is designed to anneal to the 3' end of the unrearranged human VH region gene, and in particular includes a sequence complementary to the last three codons in the VH region gene and nine nucleotides downstream of these three codons. [0173]
    • As the back primer, an equimolar mixture of HuOcta1BACK, HuOcta2BACK and HuOcta3BACK was used. These primers anneal to a sequence in the promoter region of the genomic DNA VH gene (see FIG. 1). 5 μl of the amplified DNA was checked on 2% agarose gels in TBE buffer and stained with ethidium bromide. A double band was seen of about 620 nucleotides which corresponds to the size expected for the unrearranged VH gene. The ds cDNA was digested with SacI and cloned into an M13 vector for sequencing. Although there are some sequences which are identical, a range of different unrearranged human VH genes were identified (FIG. 12). [0174]
    • [0175] EXAMPLE 5 Cloning variable domains with binding activities from a hybridoma The heavy chain variable domain (VHLYS) of the D1.3 (anti-lysozyme) antibody was cloned into a vector similar to that described previously [42] but under the control of the lac z promoter, such that the VHLYS domain is attached to a pelB leader sequence for export into the periplasm. The vector was constructed by synthesis of the pelB leader sequence [43], using overlapping oligonucleotides, and cloning into a pUC 19 vector [35]. The VHLYS domain of the D1.3 antibody was derived from a cDNA clone [44] and the construct (pSW1) sequenced (FIG. 13).
    • To express both heavy and light chain variable domains together, the light chain variable region (VKLYS) of the D1.3 antibody was introduced into the pSW1 vector, with a pelB signal sequence to give the construct pSW2 (FIG. 14a-14b). [0176]
    • A strain of [0177] E. coli (BMH71-18) [45] was then transformed [46,47] with the plasmid pSW1 or pSW2, and colonies resistant to ampicillin (100 μg/ml) were selected on a rich (2 x TY = per litre of water, 16 g Bacto-tryptone, 10g yeast extract, 5g NaCl) plate which contained 1% glucose to repress the expression of variable domain(s) by catabolite repression.
    • The colonies were inoculated into 50 ml 2 x TY (with 1% glucose and 100 μg/ml ampicillin) and grown in flasks at 37°C with shaking for 12-16 hr. The cells were centrifuged, the pellet washed twice with 50 mM sodium chloride, resuspended in 2 x TY medium containing 100 µg/ml ampicillin and the inducer IPTG (1 mM) and grown for a further 30 hrs at 37°C. The cells were centrifuged and the supernatant was passed through a Nalgene filter (0.45 µm) and then down a 1-5 ml lysozyme-Sepharose®affinity column (Pharmacia Fine Chemicals, Inc.). (The column was derived by coupling lysozyme at 10 mg/ml to CNBr activated Sepharose.) The column was first washed with phosphate buffered saline (PBS), then with 50 mM diethylamine to elute the VHLYS domain (from pSW1) or VHLYS in association with VKLYS (from pSW2). [0178]
    • The VHLYS and VKLYS domains were identified by SDS polyacrylamide electrophoresis as the correct size. In addition, N-terminal sequence determination of VHLYS and VKLYS isolated from a polyacrylamide gel showed that the signal peptide had been produced correctly. Thus both the Fv fragment and the VHLYS domains are able to bind to the lysozyme affinity column, suggesting that both retain at least some of the affinity of the original antibody. [0179]
    • The size of the VHLYS domain was compared by FPLC with that of the Fv fragment on Superose 12. This indicates that the VHLYS domain is a monomer. The binding of the VHLYS and Fv fragment to lysozyme was checked by ELISA, and equilibrium and rapid reaction studies were carried out using fluorescence quench. [0180]
    • The ELISA for lysozyme binding was undertaken as follows: (1) The plates (Dynatech Immulon) were coated with 200 μl per well of 300 μg/ml lysozyme in 50 mM NaHCO[0181] 3, pH 9.6 overnight at room temperature; (2) The wells were rinsed with three washes of PBS, and blocked with 300 μl per well of 1% Sainsbury's instant dried skimmed milk powder in PBS for 2 hours at 37°C; (3) The wells were rinsed with three washes of PBS and 200 μl of VHLYS or Fv fragment (VHLYS associated with VKLYS) were added and incubated for 2 hours at room temperature; (4) The wells were washed three times with 0.05% Tween 20 in PBS and then three times with PBS to remove detergent; (5) 200 μl of a suitable dilution (1:1000) of rabbit polyclonal antisera raised against the Fv fragment in 2% skimmed milk powder in PBS was added to each well and incubated at room temperature for 2 hours; (6) Washes were repeated as in (4); (7) 200 μl of a suitable dilution (1:1000) of goat anti-rabbit antibody (ICN Immunochemicals) coupled to horse radish peroxidase, in 2% skimmed milk powder in PBS, was added to each well and incubated at room temperature for 1 hour; (8) Washes were repeated as in (4); and (9) 200 ml 2,2'azino-bis(3-ethylbenzthiazolinesulphonic acid) [Sigma] (0.55 mg/ml, with 1 μl 20% hydrogen peroxide: water per 10 ml) was added to each well and the color allowed to develop for up to 10 minutes at room temperature.
    • The reaction was stopped by adding 0.05% sodium azide in 50 mM citric acid pH 4.3. ELISA plates were read in a Titertek Multiscan plate reader. Supernatant from the induced bacterial cultures of both pSWl (VHLYS domain) or pSW2 (Fv fragment) was found to bind to lysozyme in the ELISA. [0182]
    • The purified VHLYS and Fv fragments were titrated with lysozyme using fluorescence quench (Perkin Elmer LS5B Luminescence Spectrometer) to measure the stoichiometry of binding and the affinity constant for lysozyme [48,49]. The titration of the Fv fragment at a concentration of 30 nM indicates a dissociation constant of 2.8 nM using a Scatchard analysis. [0183]
    • A similar analysis using fluorescence quench and a Scatchard plot was carried out for VHLYS, at a VHLYS concentration of 100 nM. The stoichiometry of antigen binding is about 1 mole of lysozyme per mole of VHLYS (calculated from plot). (The concentration of VH domains was calculated from optical density at 280 nM using the typical extinction coefficient for complete immunoglobulins.) Due to possible errors in measuring low optical densities and the assumption about the extinction coefficient, the stoichiometry was also measured more carefully. VHLYS was titrated with lysozyme as above using fluorescence quench. To determine the concentration of VHLYS a sample of the stock solution was removed, a known amount of norleucine added, and the sample subjected to quantitative amino acid analysis. This showed a stoichiometry of 1.2 mole of lysozyme per mole of VHLYS domain. The dissociation constant was calculated as about 12 nM. [0184]
    • The on-rates for VHLYS and Fv fragments with lysozyme were determined by stopped-flow analysis (HI Tech Stop Flow SHU machine) under pseudo-first order conditions with the fragment at a ten fold higher concentration than lysozyme [50]. The concentration of lysozyme binding sites was first measured by titration with lysozyme using fluorescence quench as above. The on rates were calculated per mole of binding site (rather than amount of VHLYS protein). The on-rate for the Fv fragment was found to be 2.2 x 10[0185] 6 M-1 s-1 at 25°C. The on-rate for the VHLYS fragment found to be 3.8 x 106 M-1 s-1 and the off-rate 0.075 s-1 at 20°C. The calculated affinity constant is 19 nM. Thus the VHLYS binds to lysozyme with a dissociation constant of about 19 nM, compared with that of the Fv of 3 nM.
    • [0186] EXAMPLE 6 Cloning complete variable domains with binding activities from mRNA or DNA of antibody-secreting cells A mouse was immunized with hen egg white lysozyme (100 μg i.p. day 1 in complete Freunds adjuvant), after 14 days immunized i.p. again with 100 μg lysozyme with incomplete Freunds adjuvant, and on day 35 i.v. with 50 μg lysozyme in saline. On day 39, spleen was harvested. A second mouse was immunized with keyhole limpet haemocyanin (KLH) in a similar way. The DNA was prepared from the spleen according to Example 2 (Method 2). The VH genes were amplified according to the preferred method in Example 2.
    • Human peripheral blood lymphocytes from a patient infected with HIV were prepared as in Example 3 (Method 2) and mRNA prepared. The VH genes were amplified according to the method described in Example 3, using primers designed for human VH gene families. [0187]
    • After the PCR, the reaction mixture and oil were extracted twice with ether, once with phenol and once with phenol/CHCl[0188] 3. The double stranded DNA was then taken up in 50 μl of water and frozen. 5 μl was digested with PstI and BstEII (encoded within the amplification primers) and loaded on an agarose gel for electrophoresis. The band of amplified DNA at about 350 bp was extracted. Expression of anti-lysozyme activities The repertoire of amplified heavy chain variable domains (from mouse immunized with lysozyme and from human PBLs) was then cloned directly into the expression vector pSW1HPOLYMYC. This vector is derived from pSW1 except that the VHLYS gene has been removed and replaced by a polylinker restriction site. A sequence encoding a peptide tag was inserted (FIG. 15). Colonies were toothpicked into 1 ml cultures. After induction (see Example 5 for details), 10 μl of the supernatant from fourteen 1 ml cultures was loaded on SDS-PAGE gels and the proteins transferred electrophoretically to nitrocellulose. The blot was probed with antibody 9E10 directed against the peptide tag.
    • The probing was undertaken as follows. The nitrocellulose filter was incubated in 3% bovine serum albumin (BSA)/TBS buffer for 20 min (10 x TBS buffer is 100 mM Tris.HCl, pH 7.4, 9% w/v NaCl). The filter was incubated in a suitable dilution of antibody 9E10 (about 1/500) in 3% BSA/TBS for 1 - 4 hrs. After three washes in TBS (100 ml per wash, each wash for 10 min), the filter was incubated with 1:500 dilution of anti-mouse antibody (peroxidase conjugated anti-mouse Ig (Dakopats)) in 3% BSA/TBS for 1 - 2 hrs. After three washes in TBS and 0.1% Triton X-100 (about 100 ml per wash, each wash for 10 min), a solution containing 10 ml chloronapthol in methanol (3 mg/ml), 40 ml TBS and 50 μl hydrogen peroxide solution was added over the blot and allowed to react for up to 10 min. The substrate was washed out with excess water. The blot revealed bands similar in mobility to VHLYSMYC on the Western blot, showing that other VH domains could be expressed. [0189]
    • Colonies were then toothpicked individually into wells of an ELISA plate (200 μl) for growth and induction. They were assayed for lysozyme binding with the 9E10 antibody (as in Examples 5 and 7). Wells with lysozyme-binding activity were identified. Two positive wells (of 200) were identified from the amplified mouse spleen DNA and one well from the human cDNA. The heavy chain variable domains were purified on a column of lysozyme-Sepharose. The affinity for lysozyme of the clones was estimated by fluorescence quench titration as >50 nM. The affinities of the two clones (VH3 and VH8) derived from the mouse genes were also estimated by stop flow analysis (ratio of k[0190] on/koff) as 12 nM and 27 nM respectively. Thus both these clones have a comparable affinity to the VHLYS domain. The encoded amino acid sequences of of VH3 and VH8 are given in FIG. 16, and that of the human variable domain in FIG. 17.
    • A library of VH domains made from the mouse immunized with lysozyme was screened for both lysozyme and keyhole limpet haemocyanin (KLH) binding activities. Two thousand colonies were toothpicked in groups of five into wells of ELISA plates, and the supernatants tested for binding to lysozyme coated plates and separately to KLH coated plates. Twenty one supernatants were shown to have lysozyme binding activities and two to have KLH binding activities. A second expression library, prepared from a mouse immunized with KLH was screened as above. Fourteen supernatants had KLH binding activities and a single supernatant had lysozyme binding activity. [0191]
    • This shows that antigen binding activities can be prepared from single VH domains, and that immunization facilitates the isolation of these domains. [0192]
    • [0193] EXAMPLE 7 Cloning variable domains with binding activities by mutagenesis Taking a single rearranged VH gene, it may be possible to derive entirely new antigen binding activities by extensively mutating each of the CDRs. The mutagenesis might be entirely random, or be derived from pre-existing repertoires of CDRs. Thus a repertoire of CDR3s might be prepared as in the preceding examples by using "universal" primers based in the flanking sequences, and likewise repertoires of the other CDRs (singly or in combination). The CDR repertoires could be stitched into place in the flanking framework regions by a variety of recombinant DNA techniques.
    • CDR3 appears to be the most promising region for mutagenesis as CDR3 is more variable in size and sequence than [0194] CDRs 1 and 2. This region would be expected to make a major contribution to antigen binding. The heavy chain variable region (VHLYS) of the anti-lysozyme antibody D1.3 is known to make several important contacts in the CDR3 region.
    • Multiple mutations were made in CDR3. The polymerase chain reaction (PCR) and a highly degenerate primer were used to make the mutations and by this means the original sequence of CDR3 was destroyed. (It would also have been possible to construct the mutations in CDR3 by cloning a mixed oligonucleotide duplex into restriction sites flanking the CDR or by other methods of site-directed mutagenesis). Mutants expressing heavy chain variable domains with affinities for lysozyme were screened and those with improved affinities or new specificities were identified. [0195]
    • The source of the heavy chain variable domain was an M13 vector containing the VHLYS gene. The body of the sequence encoding the variable region was amplified using the polymerase chain reaction (PCR) with the mutagenic primer VHMUT1 based in CDR3 and the M13 primer which is based in the M13 vector backbone. The mutagenic primer hypermutates the central four residues of CDR3 (Arg-Asp-Tyr-Arg). The PCR was carried out for 25 cycles on a Techne PHC-1 programmable heat block using 100 ng single stranded M13mp19SWO template, with 25 pmol of VHMUT1 and the M13 primer, 0.5 mM each dNTP, 67 mM Tris.HCl, pH 8.8, 10 mM MgCl[0196] 2, 17 mM (NH4)2SO4, 200 μg/ml gelatine and 2.5 units Taq polymerase in a final volume of 50 μl. The temperature regime was 95°C for 1.5 min, 25°C for 1.5 min and 72°C for 3 min (However a range of PCR conditions could be used). The reaction products were extracted with phenol/chloroform, precipitated with ethanol and resuspended in 10 mM Tris. HCl and 0.1 mM EDTA, pH 8.0.
    • The products from the PCR were digested with PstI and BstEII and purified on a 1.5% LGT agarose gel in Tris acetate buffer using Geneclean®(Bio 101, LaJolla). The gel purified band was ligated into pSW2HPOLY (FIG. 19). (This vector is related to pSW2 except that the body of the VHLYS gene has been replaced by a polylinker.) The vector was first digested with BstEII and PstI and treated with calf-intestinal phosphatase. Aliquots of the reaction mix were used to transform [0197] E. coli BMH 71-18 to ampicillin resistance. Colonies were selected on ampicillin (100 μg/ml) rich plates containing glucose at 0.8% w/v.
    • Colonies resulting from transfection were picked in pools of five into two 96 well Corning microtitre plates, containing 200 μl 2 x TY medium and 100 μl TY medium, 100 μg/ml ampicillin and 1% glucose. The colonies were grown for 24 hours at 37°C and then cells were washed twice in 200 [0198] μl 50 mM NaCl, pelleting the cells in an IEC Centra-3 bench top centrifuge with microtitre plate head fitting. Plates were spun at 2,500 rpm for 10 min at room temperature. Cells were resuspended in 200 μl 2 x TY, 100 μg/ml ampicillin and 1 mM IPTG (Sigma) to induce expression, and grown for a further 24 hr.
    • Cells were spun down and the supernatants used in ELISA with lysozyme coated plates and anti-idiotypic sera (raised in rabbits against the Fv fragment of the D1.3 antibody). Bound anti-idiotypic serum was detected using horse radish peroxidase conjugated to anti-rabbit sera (ICN Immunochemicals). Seven of the wells gave a positive result in the ELISA. These pools were restreaked for single colonies which were picked, grown up, induced in microtitre plates and rescreened in the ELISA as above. Positive clones were grown up at the 50 ml scale and expression was induced. Culture supernatants were purified as in Example 5 on columns of lysozyme-Sepharose and eluates analysed on SDS-PAGE and staining with Page Blue 90 (BDH). On elution of the column with diethylamine, bands corresponding to the VHLYS mutant domains were identified, but none to the VKLYS domains. This suggested that although the mutant domains could bind to lysozyme, they could no longer associate with the VKYLS domains. [0199]
    • For seven clones giving a positive reaction in ELISA, plasmids were prepared and the VKLYS gene excised by cutting with EcoRI and religating. Thus the plasmids should only direct the expression of the VHLYS mutants. 1.5 ml cultures were grown and induced for expression as above. The cells were spun down and supernatant shown to bind lysozyme as above. (Alternatively the amplified mutant VKLYS genes could have been cloned directly into the pSWlHPOLY vector for expression of the mutant activities in the absence of VKLYS.) An ELISA method was devised in which the activities of bacterial supernatants for binding of lysozyme (or KLH) were compared. Firstly a vector was devised for tagging of the VH domains at its C-terminal region with a peptide from the c-myc protein which is recognized by a monoclonal antibody 9E10. The vector was derived from pSWl by a BstEII and SmaI double digest, and ligation of an oligonucleotide duplex made from 5' GTC ACC GTC TCC TCA GAA CAA AAA CTC ATC TCA GAA GAG GAT CTG AAT TAA TAA 3' and 5' TTA TTA ATT CAG ATC CTC TTC TGA GAT GAG TTT TTG TTC TGA GGA GAC G 3'. [0200]
    • The VHLYSMYC protein domain expressed after induction was shown to bind to lysozyme and to the 9E10 antibody by ELISA as follows: (1) Falcon (3912) flat bottomed wells were coated with 180 μl lysozyme (3 mg/ml) or KLH (50 μg/ml) per well in 50 mM NaHCO[0201] 3, pH 9.6, and left to stand at room temperature overnight; (2)The wells were washed with PBS and blocked for 2 hrs at 37°C with 200 μl 2% Sainsbury's instant dried skimmed milk powder in PBS per well; (3) The Blocking solution was discarded, and the walls washed out with PBS (3 washes) and 150 μl test solution (supernatant or purified tagged domain) pipetted into each well. The sample was incubated at 37°C for 2 hrs; (4) The test solution was discarded, and the wells washed out with PBS (3 washes). 100 μl of 4 μg/ml purified 9E10 antibody in 2% Sainsbury's instant dried skimmed milk powder in PBS was added, and incubated at 37°C for 2 hrs; (5) The 9E10 antibody was discarded, the wells washed with PBS (3 washes). 100 ml of 1/500 dilution of anti-mouse antibody (peroxidase conjugated anti-mouse Ig (Dakopats)) was added and incubated at 37°C for 2 hrs; (6) The second antibody was discarded and wells washed three times with PBS; and (7) 100 μl 2,2'azino-bis(3-ethylbenzthiazolinesulphonic acid) [Sigma] (0.55 mg/ml, with 1 μl 20% hydrogen peroxide: water per 10 ml) was added to each well and the color allowed to develop for up to 10 minutes at room temperature.
    • The reaction was stopped by adding 0.05% sodium azide in 50 mM citric acid, pH 4.3. ELISA plates were read in an Titertek Multiscan plate reader. [0202]
    • The activities of the mutant supernatants were compared with VHLYS supernatant by competition with the VHLYSMYC domain for binding to lysozyme. The results show that supernatant from clone VHLYSMUT59 is more effective than wild type VHLYS supernatant in competing for VHLYSMYC. Furthermore, Western blots of SDS-PAGE aliquots of supernatant from the VHLYS and VHLYSMUT59 domain (using anti-Fv antisera) indicated comparable amounts of the two samples. Thus assuming identical amounts of VHLYS and VHLYSMUT59, the affinity of the mutant appears to be greater than that of the VHLYS domain. [0203]
    • To check the affinity of the VHLYSMUT59 domain directly, the clone was grown at the 1 L scale and 200-300 μg purified on lysozyme-Sepharose as in Example 5. By fluorescence quench titration of samples of VHLYS and VHLYSMUT59, the number of binding sites for lysozyme were determined. The samples of VHLYS and VHLYSMUT59 were then compared in the competition ELISA with VHLYSMYC over two orders of magnitude. In the competition assay each microtitre well contained a constant amount of VHLYSMYC (approximately 0.6 μg VHLYSMYC). Varying amounts of VHLYS or VHLYSMUT59 (3.8 μM in lysozyme binding sites) were added (0.166 - 25 μl). The final volume and buffer concentration in all wells was constant. 9E10 (anti-myc) antibody was used to quantitate bound VHLYSMYC in each assay well. The % inhibition of VHLYSMYC binding was calculated for each addition of VHLYS or VHLYSMUT59, after subtraction of background binding. Assays were carried out in duplicate. The results indicate that VHLYSMUT59 has a higher affinity for lysozyme than VHLYS. [0204]
    • The VHLYSMUT59 gene was sequenced (after recloning into M13) and shown to be identical to the VHLYS gene except for the central residues of CDR3 (Arg-Asp-Tyr-Arg). These were replaced by Thr-Gln-Arg-Pro: (encoded by ACACAAAGGCCA). [0205]
    • A library of 2000 mutant VH clones was screened for lysozyme and also for KLH binding ([0206] toothpicking 5 colonies per well as described in Example 6). Nineteen supernatants were identified with lysozyme binding activities and four with KLH binding activities. This indicates that new specificites and improved affinities can be derived by making a random repertoire of CDR3.
    • [0207] EXAMPLE 8 Construction and expression of double domain for lysozyme binding The finding that single domains have excellent binding activities should allow the construction of strings of domains (concatamers). Thus, multiple specificities could be built into the same molecule, allowing binding to different epitopes spaced apart by the distance between domain heads. Flexible linker regions could be built to space out the domains. In principle such molecules could be devised to have exceptional specificity and affinity.
    • Two copies of the cloned heavy chain variable gene of the D1.3 antibody were linked by a nucleotide sequence encoding a flexible linker Gly-Gly-Gly-Ala-Pro-Ala-Ala-Ala-Pro-Ala-Gly-Gly-Gly- (by several steps of cutting, pasting and site directed mutagenesis) to yield the plasmid pSW3 (FIG. 20). The expression was driven by a lacZ promoter and the protein was secreted into the periplasm via a pelB leader sequence (as described in Example 5 for expression of pSW1 and pSW2). The protein could be purified to homogeneity on a lysozyme affinity column. On SDS polyacrylamide gels, it gave a band of the right size (molecular weight about 26,000). The protein also bound strongly to lysozyme as detected by ELISA (see Example 5) using anti-idiotypic antiserum directed against the Fv fragment of the D1.3 antibody to detect the protein. Thus, such constructs are readily made and secreted and at least one of the domains binds to lysozyme. [0208]
    • [0209] EXAMPLE 9 Introduction of cysteine residue at C-terminal end of VHLYS A cysteine residue was introduced at the C-terminus of the VHLYS domain in the vector pSW2. The cysteine was introduced by cleavage of the vector with the restriction enzymes BstI and SmaI (which excises the C-terminal portion of the J segment) and ligation of a short oligonucleotide duplex 5' GTC ACC GTC TCC TCA TGT TAA TAA 3' and 5' TTA TTA ACA TGA GGA GAC G 3'.
    • By purification on an affinity column of lysozyme Sepharose it was shown that the VHLYS-Cys domain was expressed in association with the VKLYS variable domain, but the overall yields were much lower than the wild type Fv fragment. Comparison of non-reducing and reducing SDS polyacrylamide gels of the purified Fv-Cys protein indicated that the two VH-Cys domains had become linked- through the introduced cysteine residue. [0210]
    • [0211] EXAMPLE 10 Linking of VH domain with enzyme Linking of enzyme activities to VH domains should be possible by either cloning the enzyme on either the N-terminal or the C-terminal side of the VH domain. Since both partners must be active, it may be necessary to design a suitable linker (see Example 8) between the two domains. For secretion of the VH-enzyme fusion, it would be preferable to utilize an enzyme which is usually secreted. In FIG. 21a-21c, there is shown the sequence of a fusion of a VH domain with alkaline phosphatase. The alkaline phosphatase gene was cloned from a plasmid carrying the E. coli alkaline phosphatase gene in a plasmid pEK48 [51] using the polymerase chain reaction. The gene was amplified with the primers 5'CAC CAC GGT CAC CGT CTC CTC ACG GAC ACC AGA AAT GCC TGT TCT G 3' and 5' GCG AAA ATT CAC TCC CGG GCG CGG TTT TAT TTC 3'.
    • The gene was introduced into the vector pSW1 by cutting at BstEII and SmaI. The construction (FIG. 21a-21c) was expressed in [0212] E. coli strain BMH71-18 as in Example 5 and screened for phosphatase activity using 1 mg/ml p-nitrophenylphosphate as substrate in 10 mM diethanolamine and 0.5 mM MgCl2, pH 9.5) and also on SDS polyacrylamide gels which had been Western blotted (detecting with anti-idiotypic antiserum). No evidence was found for the secretion of the linked VHLYS-alkaline phosphatase as detected by Western blots (see Example 5), or for secretion of phosphatase activity.
    • However when the construct was transfected into a bacterial strain BL21DE3 [52] which is deficient in proteases, a band of the correct size (as well as degraded products) was detected on the Western blots. Furthermore phosphatase activity could now be detected in the bacterial supernatant. Such activity is not present in supernatant from the strain which had not been transfected with the construct. [0213]
    • A variety of linker sequences could then be introduced at the BstEII site to improve the spacing between the two domains. [0214]
    • [0215] EXAMPLE 11 Coexpression of VH domains with VκrepertoireA repertoire of Vκ genes was derived by PCR using primers as described in Example 2 from DNA prepared from mouse spleen and also from mouse spleen mRNA using the primers VK3FOR and VK2BACK and a cycle of 94°C for 1 min, 60°C for 1 min, 72°C for 2 min. The PCR amplified DNA was fractionated on the agarose gel, the band excised and cloned into a vector which carries the VHLYS domain (from the D1.3 antibody), and a cloning site (SacI and XhoI) for cloning of the light chain variable domains with a myc tail (pSW1VHLYS-VKPOLYMYC, FIG. 22).
    • Clones were screened for lysozyme binding activities as described in Examples 5 and 7 via the myc tag on the light chain variable domain, as this should permit the following kinds of Vκdomains to be identified: (1) those which bind to lysozyme in the absence of the VHLYS domain; (2) those which associate with the heavy chain and make no contribution to binding of lysozyme; and (3) those which associate with the heavy chain and also contribute to binding of lysozyme (either helping or hindering). [0216]
    • This would not identify those Vκ domains which associated with the VHLYS domain and completely abolished its binding to lysozyme. [0217]
    • In a further experiment, the VHLYS domain was replaced by the heavy chain variable domain VH3 which had been isolated from the repertoire (see Example 6), and then the Vκ domains cloned into the vector. (Note that the VH3 domain has an internal SacI site and this was first removed to allow the cloning of the Vκ repertoire as SacI-XhoI fragments.) By screening the supernatant using the ELISA described in Example 6, bacterial supernatants will be identified which bind lysozyme. [0218]
    • [0219] EXAMPLE 12 High expression of VH domainsBy screening several clones from a VH library derived from a mouse immunized with lysozyme via a Western blot, using the 9E10 antibody directed against the peptide tag, one clone was noted with very high levels of expression of the domain (estimated as 25 - 50 mg/l). The clone was sequenced to determine the nature of the sequence. The sequence proved to be closely related to that of the VHLYS domain, except with a few amino acid changes (FIG. 23). The result was unexpected, and shows that a limited number of amino acid changes, perhaps even a single amino acid substitution, can cause greatly elevated levels of expression.
    • By making mutations of the high expressing domain at these residues, it was found that a single amino acid change in the VHLYS domain ([0220] Asn 35 to His) is sufficient to cause the domain to be expressed at high levels.
    • [0221] ConclusionIt can thus be seen that the present invention enables the cloning, amplification and expression of heavy and light chain variable domain encoding sequences in a much more simple manner than was previously possible. It also shows that isolated variable domains or such domains linked to effector molecules are unexpectedly useful.
    • It will be appreciated that the present invention has been described above by way of example only and that variations and modifications may be made by the skilled person without departing from the scope of the invention. [0222]
    • LIST OF REFERENCES [1] Inbar et al., PNAS-USA, 69, 2659-2662, 1972. [0223]
    • [2] Amit et al., Science, 233, 747, 1986. [0224]
    • [3] Satow et al., J. Mol. Biol., 190, 593, 1986. [0225]
    • [4] Colman et al., Nature, 326, 358, 1987. [0226]
    • [5] Sheriff et al., PNAS-USA, 84, 8075-8079, 1987. [0227]
    • [6] Padlan et al., PNAS-USA, 86, 5938-5942, 1989. [0228]
    • [7] Skerra and Plückthun, Science, 240, 1038-1041, 1988. [0229]
    • [8] Bird et al., Science, 242, 423-426, 1988. [0230]
    • [9] Huston et al., PNAS-USA, 85, 5879-5833, 1988. [0231]
    • [10] Fleischman, Arch. Biochem. Biophys. Suppl., 1, 174, 1966. [0232]
    • [11] Porter and Weir, J. Cell. Physiol. Suppl., 1, 51, 1967. [0233]
    • [12] Jaton et al., Biochemistry, 7, 4185, 1968. [0234]
    • [13] Rockey, J. Exp. Med., 125, 249, 1967. [0235]
    • [14] Stevenson, Biochem. J., 133, 827-836,1973. [0236]
    • [15] Edmundson et al., Biochemistry, 14, 3953, 1975. [0237]
    • [16] Rossman et al., Nature, 317, 145-153, 1985. [0238]
    • [17] Saiki et al., Science, 230, 1350-1354, 1985. [0239]
    • [18] Larrick et al., Biochem. Biophys. Res. Comm., 160, 1250, 1989. [0240]
    • [19] Orlandi et al., PNAS-USA, 86, 3833, 1989. [0241]
    • [20] Yon and Fried, Nuc. Acids Res., 17, 4895, 1989.[0242]
    • [21] Fields and Song, Nature, 340, 245-246, 1989. [0243]
    • [22] Baldwin and Schultz, Science, 245, 1104-1107, 1989. [0244]
    • [23] Menard et al., Cancer Res., 43, 1295-1300, 1983. [0245]
    • [24] Bosslet et al., Eur. J. Nuc. Med., 14, 523-528, 1988. [0246]
    • [25] Bosslet et al., Cancer Immunol. Immunother., 23, 185-191, 1986. [0247]
    • [26] Bosslet et al., Int. J. Cancer, 36, 75-84, 1985. [0248]
    • [27] [28] Bremer et al., J. Biol. Chem., 259, 14773-14777, 1984. [0249]
    • [29] Griffiths & Milstein, Hybridoma Technology in the Biosciences and Medicine, 103-115, 1985. [0250]
    • [30] Maniatis et al., Molecular Cloning: a Laboratory Manual, Cold Spring Harbour Laboratory, 1982. [0251]
    • [31] Jones et al., Nature, 321, 522-525, 1986. [0252]
    • [32] Zoller & Smith, Nuc. Acids Res., 10, 6457-6500, 1982. [0253]
    • [33] Carter et al., Nuc. Acids Res., 13, 4431-4443, 1985. [0254]
    • [34] Sanger et al., PNAS-USA, 74, 5463-5467, 1977. [0255]
    • [35] Yannisch-Perron et al., Gene, 33, 103-119, 1985. [0256]
    • [36] [37] Riechmann et al., Nature, 332, 323-327, 1988. [0257]
    • [38] Kearney et al., J. Immunol., 123, 1548-1550, 1979. [0258]
    • [39] Patter et al., PNAS-USA, 81, 7161-7163, 1984. [0259]
    • [40] Galfre & Milstein, Meth. Enzym., 73, 1-46, 1981. [0260]
    • [41] Laemmli, Nature, 227, 680-685, 1970. [0261]
    • [42] Better et al., Science, 240, 1041, 1988. [0262]
    • [43] Lei et al., J. Bacteriol., 169, 4379, 1987. [0263]
    • [44] Verhoeyen et al., Science, 239, 1534, 1988. [0264]
    • [45] Gronenborn, Mol. Gen. Genet, 148, 243, 1976. [0265]
    • [46] Dagert et al., Gene, 6, 23, 1974. [0266]
    • [47] Hanahan, J. Mol. Biol., 166, 557, 1983. [0267]
    • [48] Jones et al., Nature, 321, 522, 1986. [0268]
    • [49] Segal, Enzyme Kinetics, 73, Wiley, New York, 1975. [0269]
    • [50] Gutfreund, Enzymes, Physical Principles, Wiley Interscience, London, 1972. [0270]
    • [51] Chaidaroglou, Biochem., 27, 8338, 1988. [0271]
    • [52] Grodberg and Dunn, J. Bacteriol., 170, 1245-1253, 1988.[0272]

    Claims (119)

    What is Claimed is:
    1. An isolated polypeptide, comprising one or more of:
    a) a variable domain of an antibody heavy or light chain, said domain having specificity for an antigen; or
    b) a portion of a) having specificity for said antigen,
    wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof with an affinity better than 50 nM, and wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide.
    2. The isolated polypeptide of claim 1, comprising two or more variable domains or portions thereof.
    3. The isolated polypeptide of claim 1, wherein the antibody heavy or light chain or portion thereof is a human antibody heavy or light chain or portion thereof.
    4. The isolated polypeptide of claim 1, wherein the antibody variable domain or portion thereof is an antibody heavy chain variable domain or portion thereof, wherein said variable domain or portion comprises a residue that is more hydrophilic in comparison with a corresponding residue of a human antibody heavy chain variable domain that binds said antigen, and said corresponding residue is in a position normally at the heavy and light chain interface.
    5. The isolated polypeptide of claim 1, wherein said polypeptide is linked to a prosthetic group.
    6. The isolated polypeptide of claim 1, wherein said polypeptide comprises a moiety selected from the group consisting of an effector molecule and a label.
    7. The isolated polypeptide of claim 1, wherein said polypeptide comprises a moiety containing a site for binding to a serum component.
    8. The isolated polypeptide of claim 7, wherein the serum component is a component of complement.
    9. The isolated polypeptide of claim 1, wherein said polypeptide comprises a moiety containing a site for binding to a cell surface receptor.
    10. The isolated polypeptide of any one of claims 6, 7 or 9, comprising a linker between said variable domain or antigen-binding portion and said moiety.
    11. The isolated polypeptide of claim 2, wherein a first variable domain or portion thereof binds to a test antigen and a second variable domain or portion thereof binds to a reporter molecule.
    12. The isolated polypeptide of claim 2, wherein a first variable domain or portion thereof binds to a first epitope of an antigen, and a second variable domain or portion thereof binds to a second epitope of said antigen.
    13. The isolated polypeptide of claim 2, wherein a first variable domain or portion thereof binds to a first antigen, and a second variable domain or portion thereof binds to a second antigen.
    14. The isolated polypeptide of claim 3, wherein the variable domain or antigen-binding portion thereof comprises framework region 3 (FR3) of a VH gene of Figure 11.
    15. The isolated polypeptide of claim 3, wherein the variable domain or antigen-binding portion thereof comprises framework regions 1, 2 and 3 (FR1, FR2 and FR3) of a VH gene of Figure 12.
    16. A solid support comprising an isolated polypeptide of claim 1 attached thereto.
    17. An isolated polypeptide having specificity for an antigen, comprising a variable domain of an antibody heavy or light chain or portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in said polypeptide and the polypeptide binds said antigen with an affinity better than 50and wherein said variable domain or portion binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide.
    18. The isolated polypeptide of claim 17, wherein the antibody heavy or light chain or portion thereof is a human antibody heavy or light chain or portion thereof.
    19. The isolated polypeptide of claim 17, wherein the antigen is a protein.
    20. The isolated polypeptide of claim 17, wherein said polypeptide consists of an antibody variable domain or an antigen-binding portion thereof with a C-terminal cysteine residue.
    21. The isolated polypeptide of claim 17, wherein said polypeptide comprises an antibody heavy chain variable domain or an antigen-binding portion thereof.
    22. The isolated polypeptide of claim 21, wherein said polypeptide consists of an antibody heavy chain variable domain.
    23. The isolated polypeptide of claim 17, wherein said polypeptide comprises one or more heavy chain constant domains.
    24. The isolated polypeptide of claim 17, wherein the antibody variable domain or portion thereof is an antibody heavy chain variable domain or portion thereof, wherein said variable domain or portion comprises a residue that is more hydrophilic in comparison with a corresponding residue of a human antibody heavy chain variable domain that binds said antigen, and said corresponding residue is in a position normally at the heavy and light chain interface.
    25. The isolated polypeptide of claim 17, wherein said polypeptide comprises an antibody light chain variable domain or an antigen-binding portion thereof.
    26. The isolated polypeptide of claim 25, wherein said polypeptide consists of an antibody light chain variable domain.
    27. The isolated polypeptide of claim 25, wherein said polypeptide consists of a Vκ domain or an antigen-binding portion thereof.
    28. The isolated polypeptide of claim 25, wherein said polypeptide consists of an antibody light chain variable domain or antigen-binding portion thereof linked to a Cλ or CΚ domain.
    29. The isolated polypeptide of claim 17, wherein said polypeptide is linked to a prosthetic group.
    30. The isolated polypeptide of claim 17, wherein said polypeptide comprises a moiety selected from the group consisting of an effector molecule and a label.
    31. The isolated polypeptide of claim 17, wherein said polypeptide comprises a moiety containing a site for binding to a serum component.
    32. The isolated polypeptide of claim 31, wherein the serum component is a component of complement.
    33. The isolated polypeptide of claim 17, wherein said polypeptide comprises a moiety containing a site for binding to a cell surface receptor.
    34. The isolated polypeptide of any one of claims 30, 31 or 33, comprising a linker between said variable domain or antigen-binding portion and said moiety.
    35. The isolated polypeptide of claim 18, wherein the variable domain or antigen-binding portion thereof comprises framework region 3 (FR3) of a VH gene of Figure 11.
    36. The isolated polypeptide of claim 18, wherein the variable domain or antigen-binding portion thereof comprises framework regions 1, 2 and 3 (FR1, FR2 and FR3) of a VH gene of Figure 12.
    37. An isolated heavy chain variable domain that binds a human protein antigen with an affinity better than 50
    38. A solid support comprising an isolated polypeptide of claim 17 attached thereto.
    39. An isolated multimer comprising two or more polypeptides, wherein each of said polypeptides independently comprises one or more of:
    a) a variable domain of an antibody heavy or light chain, said domain having specificity for an antigen; or
    b) a portion of a) having specificity for said antigen,
    wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said multimer, and said multimer binds said antigen with an affinity better than 50 nM.
    40. An isolated multimer comprising two or more polypeptides, wherein each of said polypeptides independently comprises one or more of:
    a) a variable domain of an antibody heavy or light chain, said domain having specificity for an antigen; or
    b) a portion of a) having specificity for said antigen,
    wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof with an affinity better than 50 nM, and wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said multimer.
    41. The isolated multimer of claim 40, which is a dimer comprising two polypeptide chains.
    42. The isolated multimer of claim 40, wherein said first variable domain binds to a test antigen and said second variable domain binds to a reporter molecule.
    43. The isolated multimer of claim 40, wherein said first variable domain binds to a first epitope of an antigen, and said second variable domain binds to a second epitope of said antigen.
    44. The isolated multimer of claim 40, wherein said first variable domain binds to a first antigen, and said second variable domain binds to a second antigen.
    45. The isolated multimer of claim 40, wherein at least one of the polypeptides of said multimer is linked to a prosthetic group.
    46. The isolated multimer of claim 40, wherein at least one of the polypeptides of said multimer comprises a moiety selected from the group consisting of an effector molecule and a label.
    47. The isolated multimer of claim 40, wherein at least one of the polypeptides of said multimer comprises a moiety containing a site for binding to a serum component.
    48. The isolated multimer of claim 47, wherein the serum component is a component of complement.
    49. The isolated multimer of claim 40, wherein at least one of the polypeptides of said multimer comprises a moiety containing a site for binding to a cell surface receptor.
    50. The isolated multimer of any one of claims 46, 47 or 49, wherein at least one of the polypeptides of said multimer comprises a linker between said first or second variable domain or portion and said moiety.
    51. A solid support comprising an isolated multimer of claim 40 attached thereto.
    52. An isolated multimer comprising two or more polypeptides, each comprising a variable domain of an antibody heavy or light chain or antigen-binding portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in each polypeptide, wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said multimer, and wherein said multimer binds said antigen with an affinity better than 50 nM.
    53. An isolated multimer comprising two or more polypeptides, each comprising a variable domain of an antibody heavy or light chain or antigen-binding portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in each polypeptide, and at least one of said polypeptides binds antigen with an affinity better than 50and wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said multimer.
    54. The isolated multimer of claim 53, wherein each of said polypeptides binds antigen with an affinity better than 50
    55. The isolated multimer of claim 53, which is a dimer.
    56. The isolated multimer of claim 55, wherein each polypeptide of said dimer consists of an antibody heavy chain variable domain.
    57. The isolated multimer of claim 53, wherein each polypeptide consists of an antibody heavy chain variable domain.
    58. The isolated multimer of claim 53, wherein each polypeptide consists of an antibody lightvariable domain.
    59. A solid support comprising an isolated multimer of claim 53 attached thereto.
    60. A concatemer comprising two or more polypeptides linked to form a single concatemeric chain, each of said polypeptides comprising a variable domain of an antibody heavy or light chain or antigen-binding portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in each polypeptide, wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said concatemer, and said concatemer binds said antigen with an affinity better than 50 nM.
    61. A concatemer comprising two or more polypeptides linked to form a single concatemeric chain, each of said polypeptides comprising a variable domain of an antibody heavy or light chain or antigen-binding portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in each polypeptide, and at least one of said polypeptides binds antigen with an affinity better than 50and wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said concatemer.
    62. The concatemer of claim 61, wherein two or more of said polypeptides comprises a C-terminal cysteine.
    63. The concatemer of claim 61, wherein two or more of said polypeptides have specificity for different epitopes of the same antigen.
    64. The concatemer of claim 61, wherein two or more of said polypeptides have specificity for different antigens.
    65. The concatemer of claim 61, wherein two polypeptides are linked to form a single concatemeric chain.
    66. The concatemer of claim 61, wherein the variable domain or antigen-binding portion thereof of each of said polypeptides is an antibody heavy chain variable domain or antigen-binding portion thereof.
    67. The concatemer of claim 61, wherein at least one of said polypeptides consists of an antibody heavy chain variable domain or an antigen-binding portion thereof.
    68. The concatemer of claim 61, wherein at least one of said polypeptides consists of an antibody light chain variable domain or an antigen-binding portion thereof.
    69. The concatemer of claim 61, further comprising a linker between at least two of said polypeptides.
    70. The concatemer of claim 69, said linker having the sequence Gly Gly Gly Ala Pro Ala Ala Ala Pro Ala Gly Gly Gly.
    71. The concatemer of claim 69, wherein said linker comprises two cysteine residues.
    72. An isolated labeled polypeptide having specificity for an antigen, wherein the polypeptide comprises a variable domain of an antibody heavy or light chain or portion thereof, wherein (i) a single antibody variable domain or antigen-binding portion thereof is present in said polypeptide, (ii) the polypeptide binds said antigen with an affinity better than 50(iii) said variable domain or portion binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide, and (iv) said polypeptide is labeled.
    73. The isolated labeled polypeptide of claim 72, wherein said polypeptide is labeled with a label selected from the group consisting of a radio-isotope, a heavy metal atom, a fluorescent molecule, a colored molecule, a protein, a peptide tag, a toxin, an enzyme, and a binding partner.
    74. The isolated labeled polypeptide of claim 72, wherein the antibody heavy or light chain or portion thereof is a human antibody heavy or light chain or portion thereof.
    75. The isolated labeled polypeptide of claim 72, wherein said polypeptide consists of an antibody heavy chain variable domain.
    76. The isolated labeled polypeptide of claim 72, wherein said polypeptide consists of an antibody light chain variable domain.
    77. A method of selecting or identifying a polypeptide having specificity for a desired antigen, wherein said polypeptide binds said antigen of interest with an affinity better than 50comprising:
    a)screening a library of diverse polypeptides for binding to an antigen of interest, wherein the polypeptides each comprise a variable domain of an antibody heavy or light chain or portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in each said polypeptide, and wherein said variable domain or portion binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide; and
    b)identifying a polypeptide which binds said antigen of interest with an affinity better than 50
    78. The method of claim 77, further comprising isolating said polypeptide which binds said antigen of interest with an affinity better than 50
    79. An isolated polypeptide, comprising one or more of:
    a)a variable domain of an antibody heavy or light chain, said domain having specificity for an antigen; or
    b)a portion of a) having specificity for said antigen,
    wherein each of said variable domains or portions i) binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide, and ii)a CDR with one to four mutations relative to a parental mammalian antibody heavy or light chain variable domain or portion thereof, and
    wherein said polypeptide can compete with said parental domain for binding to antigen.
    80. The isolated polypeptide of claim 79, comprising two or more variable domains or portions thereof.
    81. The isolated polypeptide of claim 79, wherein the polypeptide binds said antigen with an affinity better than 50
    82. The isolated polypeptide of claim 79, wherein said CDR is a third CDR (CDR3).
    83. The isolated polypeptide of claim 82, wherein said CDR3 is a heavy chain CDR3.
    84. The isolated polypeptide of claim 79, wherein said polypeptide has improved binding affinity for antigen relative to its parental mammalian antibody heavy or light chain variable domain.
    85. The isolated polypeptide of claim 79, wherein said polypeptide has increased expression relative to a control polypeptide comprising its parental mammalian antibody heavy or light chain variable domain.
    86. The isolated polypeptide of claim 85, wherein the variable domain is a heavy chain variable domain containing a mutation at heavy chain position 35 from asparagine to histidine.
    87. The isolated polypeptide of claim 79, wherein the antibody variable domain or portion thereof is an antibody heavy chain variable domain or portion thereof in which a hydrophobic residue which would normally be at the interface of heavy and light chain variable domains has been mutated to a more hydrophilic residue to improve solubility.
    88. An isolated polypeptide having specificity for an antigen, comprising an antibody heavy or light chain variable domain or portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in said polypeptide, and said variable domain or portion binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide, and wherein said domain or portion comprises a CDR with one to four mutations relative to a parental mammalian antibody heavy or light chain variable domain or portion thereof and said polypeptide can compete with said parental domain for binding to antigen.
    89. The isolated polypeptide of claim 88, wherein the polypeptide binds said antigen with an affinity better than 50
    90. The isolated polypeptide of claim 88, wherein said CDR is a third CDR (CDR3).
    91. The isolated polypeptide of claim 90, wherein said CDR3 is a heavy chain CDR3.
    92. The isolated polypeptide of claim 88, wherein said polypeptide consists of an antibody heavy chain variable domain.
    93. The isolated polypeptide of claim 88, wherein said polypeptide consists of an antibody light chain variable domain.
    94. An isolated polypeptide, comprising one or more of:
    a) a variable domain of an antibody heavy or light chain, said domain having specificity for an antigen; or
    b) a portion of a) having specificity for said antigen,
    wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide, and wherein when each of said variable domains or portions is tagged with a C-terminal myc peptide tag, antigen binding is detectable in an ELISA comprising the steps:
    i)coating a well of an ELISA plate with said antigen;
    ii)washing with phosphate buffered saline (PBS), blocking for 2 hrs at 37"C with 200μl instant dried skimmed milk powder in PBS, discarding the blocking solution, and washing three times with PBS;
    iii)adding 150 μl of a test solution comprising said polypeptide tagged with a C-terminal myc peptide tag (EQKLISEEDLN) to the well, incubating at 37"C for 2 hrs, discarding the test solution, and washing three times with PBS;
    iv)adding as first antibody 100 μl of a solution of 4 μg/ml purified murine 9E10 antibody in 2% instant dried skimmed milk powder in PBS, incubating at 37"C for 2 hrs, discarding the first antibody solution, and washing three times with PBS;
    v)adding as second antibody 100 μl of a solution of a 1/500 dilution of peroxidase conjugated anti-mouse immunoglobulin, incubating at 37"C for 2 hrs, discarding the second antibody solution, and washing three times with PBS;
    vi)adding 100 μl of 2,2'azino-bis(3-ethylbenzthiazolinesulphonic acid) solution (0.55 mg/ml solution in water containing 1 μl of 20% hydrogen peroxide per 10 ml), and allowing the color to develop for 10 minutes at room temperature; and
    vii)adding 0.05% sodium azide in 50 mM citric acid, pH 4.3 to stop the reaction, and determining binding in a plate reader.
    95. An isolated multimer comprising two or more polypeptides, wherein each of said polypeptides independently comprises one or more of:
    a) a variable domain of an antibody heavy or light chain, said domain having specificity for an antigen; or
    b) a portion of a) having specificity for said antigen,
    wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said multimer, and wherein when each of said variable domains or portions is tagged with a C-terminal myc peptide tag, antigen binding is detectable in an ELISA comprising the steps:
    i)coating a well of an ELISA plate with said antigen;
    ii)washing with phosphate buffered saline (PBS), blocking for 2 hrs at 37"C with 200μl instant dried skimmed milk powder in PBS, discarding the blocking solution, and washing three times with PBS;
    iii)adding 150 μl of a test solution comprising said polypeptide tagged with a C-terminal myc peptide tag (EQKLISEEDLN) to the well, incubating at 37"C for 2 hrs, discarding the test solution, and washing three times with PBS;
    iv)adding as first antibody 100 μl of a solution of 4 μg/ml purified murine 9E10 antibody in 2% instant dried skimmed milk powder in PBS, incubating at 37"C for 2 hrs, discarding the first antibody solution, and washing three times with PBS;
    v)adding as second antibody 100 μl of a solution of a 1/500 dilution of peroxidase conjugated anti-mouse immunoglobulin, incubating at 37"C for 2 hrs, discarding the second antibody solution, and washing three times with PBS;
    vi)adding 100 μl of 2,2'azino-bis(3-ethylbenzthiazolinesulphonic acid) solution (0.55 mg/ml solution in water containing 1 μl of 20% hydrogen peroxide per 10 ml), and allowing the color to develop for 10 minutes at room temperature; and
    vii)adding 0.05% sodium azide in 50 mM citric acid, pH 4.3 to stop the reaction, and determining binding in a plate reader.
    96. A method of detecting or identifying a polypeptide having specificity for an antigen, wherein said polypeptide binds said antigen with an affinity better than 50the polypeptide comprising a variable domain of an antibody heavy or light chain, wherein a single antibody variable domain is present in said polypeptide, and said variable domain binds said antigen as a single antibody variable domain in said polypeptide, the method comprising:
    a)providing a nucleic acid sample comprising a repertoire of target sequences, wherein the target sequences each encode a variable domain of an antibody heavy or light chain;
    b)conducting an extension reaction using forward and back primers with the sample repertoire of step a) as template,
    wherein the forward primer binds a sequence at or adjacent to the 3" end of the sense strand of the target sequences, and the back primer binds a sequence at or adjacent to the 3" end of the antisense strand of the target sequences, and producing a repertoire of nucleic acids each encoding a polypeptide comprising a single variable domain of an antibody heavy or light chain; and
    c)selecting a polypeptide that binds said antigen with an affinity better than 50
    97. The method of claim 96, wherein step c) comprises selecting from said repertoire a nucleic acid which encodes a polypeptide that binds said antigen with an affinity better than 50
    98. The method of claim 96, wherein the antibody heavy or light chain is a human antibody heavy or light chain.
    99. The method of claim 96, wherein the nucleic acid sample contains mRNA.
    100. The method of claim 96, wherein said nucleic acid sample in step a) is from mammalian lymphocytes.
    101. The method of claim 100, wherein the mammalian lymphocytes a) are peripheral blood lymphocytes or b) are isolated from spleen.
    102. A method of detecting or identifying a polypeptide having specificity for an antigen, the polypeptide comprising a variable domain of an antibody heavy or light chain, wherein a single antibody variable domain is present in said polypeptide, and wherein said variable domain binds said antigen as a single antibody variable domain in said polypeptide, the method comprising:
    a)providing a nucleic acid sample comprising a repertoire of target sequences, wherein the target sequences each encode a variable domain of an antibody heavy or light chain;
    b)conducting an extension reaction using forward and back primers with the sample repertoire of step a) as template,
    wherein the forward primer binds a sequence at or adjacent to the 3" end of the sense strand of the target sequences, and the back primer binds a sequence at or adjacent to the 3" end of the antisense strand of the target sequences, and producing a repertoire of nucleic acids each encoding a polypeptide comprising a single variable domain of a human antibody heavy or light chain; and
    c)selecting a polypeptide that binds said antigen, wherein when said polypeptide is tagged with a C-terminal myc peptide tag, antigen binding is detectable in an ELISA comprising the steps:
    i)coating a well of an ELISA plate with said antigen;
    ii)washing with phosphate buffered saline (PBS), blocking for 2 hrs at 37"C with 200μl instant dried skimmed milk powder in PBS, discarding the blocking solution, and washing three times with PBS;
    iii)adding 150 μl of a test solution comprising said polypeptide tagged with a C-terminal myc peptide tag (EQKLISEEDLN) to the well, incubating at 37"C for 2 hrs, discarding the test solution, and washing three times with PBS;
    iv)adding as first antibody 100 μl of a solution of 4 μg/ml purified murine 9E10 antibody in 2% instant dried skimmed milk powder in PBS, incubating at 37"C for 2 hrs, discarding the first antibody solution, and washing three times with PBS;
    v)adding as second antibody 100 μl of a solution of a 1/500 dilution of peroxidase conjugated anti-mouse immunoglobulin, incubating at 37"C for 2 hrs, discarding the second antibody solution, and washing three times with PBS;
    vi)adding 100 μl of 2,2'azino-bis(3-ethylbenzthiazolinesulphonic acid) solution (0.55 mg/ml solution in water containing 1 μl of 20% hydrogen peroxide per 10 ml), and allowing the color to develop for 10 minutes at room temperature; and
    vii)adding 0.05% sodium azide in 50 mM citric acid, pH 4.3 to stop the reaction, and determining binding in a plate reader.
    103. The method of claim 102, wherein step c) comprises selecting from said repertoire a nucleic acid which encodes a polypeptide that binds said antigen.
    104. An isolated nucleic acid encoding a polypeptide, comprising one or more of:
    a) a variable domain of an antibody heavy or light chain, said domain having specificity for an antigen; or
    b) a portion of a) having specificity for said antigen,
    wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof with an affinity better than 50 nM, and wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide.
    105. The nucleic acid of claim 104, which comprises a sequence encoding a prokaryotic signal sequence.
    106. The nucleic acid of claim 105, wherein the signal sequence is joined to the N-terminus of the variable domain or portion thereof in the encoded polypeptide.
    107. The nucleic acid of claim 105, wherein the signal sequence is a pelB signal sequence.
    108. A host cell comprising the nucleic acid of any one of claims 104 - 107.
    109. A method of producing a polypeptide having specificity for an antigen, comprising one or more of:
    a) a variable domain of an antibody heavy or light chain, said domain having specificity for an antigen; or
    b) a portion of a) having specificity for said antigen,
    wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof with an affinity better than 50 nM, and wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide, comprising expressing the polypeptide in a host cell of claim 147.
    110. The method of claim 109, wherein the host cell is a bacterial cell and the polypeptide is exported into the periplasm.
    111. The method of claim 110, further comprising isolating said polypeptide.
    112. An isolated nucleic acid encoding a polypeptide having specificity for an antigen, comprising a variable domain of an antibody heavy or light chain or portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in said polypeptide and the polypeptide binds said antigen with an affinity better than 50and wherein said variable domain or portion binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide.
    113. The nucleic acid of claim 112, which comprises a sequence encoding a prokaryotic signal sequence.
    114. The nucleic acid of claim 113, wherein the signal sequence is joined to the N-terminus of the variable domain or portion thereof in the encoded polypeptide.
    115. The nucleic acid of claim 113, wherein the signal sequence is a pelB signal sequence.
    116. A host cell comprising the nucleic acid of any one of claims 112 - 115.
    117. A method of producing a polypeptide having specificity for an antigen, comprising a variable domain of an antibody heavy or light chain or portion thereof, wherein a single antibody variable domain or antigen-binding portion thereof is present in said polypeptide and the polypeptide binds said antigen with an affinity better than 50and wherein each of said variable domains or portions binds said antigen as a single antibody variable domain or antigen-binding portion thereof in said polypeptide, comprising expressing the polypeptide in a host cell of claim 116.
    118. The method of claim 117, wherein the host cell is a bacterial cell and the polypeptide is exported into the periplasm.
    119. The method of claim 118, further comprising isolating said polypeptide.
    US10/290,233 1988-11-11 2002-11-08 Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors Abandoned US20040110941A2 (en)

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    US10/290,233 US20040110941A2 (en) 1988-11-11 2002-11-08 Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors
    US12/127,237 US20080299618A1 (en) 1988-11-11 2008-05-27 Single domain ligands, receptors comprising said ligands, methods for their production and use of said ligands and receptors

    Applications Claiming Priority (23)

    Application Number Priority Date Filing Date Title
    GB8826444.5 1988-11-11
    GB888826444A GB8826444D0 (en) 1988-11-11 1988-11-11 Cloning immunoglobulin variable domains for expression by polymerase chain reaction
    GB8906034.7 1989-03-16
    GB898906034A GB8906034D0 (en) 1989-03-16 1989-03-16 Recombinant dna method
    GB8909217.5 1989-04-22
    GB898909217A GB8909217D0 (en) 1989-04-22 1989-04-22 Antibody binding
    GB898911047A GB8911047D0 (en) 1989-05-15 1989-05-15 Antibody binding
    GB8911047.2 1989-05-15
    GB898912652A GB8912652D0 (en) 1989-06-02 1989-06-02 Antibody binding
    GB8912652.8 1989-06-02
    GB8913900.0 1989-06-16
    GB898913900A GB8913900D0 (en) 1989-06-16 1989-06-16 Antibody binding
    GB8918593.3 1989-08-15
    GB898918543A GB8918543D0 (en) 1989-08-15 1989-08-15 Antibody binding
    GB8918543.3 1989-08-15
    PCT/GB1989/001344 WO1990005144A1 (en) 1988-11-11 1989-11-13 Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors
    WOPCT/GB89/01344 1989-11-13
    US07/580,674 US5066942A (en) 1990-06-01 1990-09-11 Antitheft device for articles
    US79680591A 1991-11-25 1991-11-25
    US33204694A 1994-11-01 1994-11-01
    US08/470,031 US6248516B1 (en) 1988-11-11 1995-06-06 Single domain ligands, receptors comprising said ligands methods for their production, and use of said ligands and receptors
    US09/722,364 US6545142B1 (en) 1988-11-11 2000-11-28 Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors
    US10/290,233 US20040110941A2 (en) 1988-11-11 2002-11-08 Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors

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    US10/290,233 Abandoned US20040110941A2 (en) 1988-11-11 2002-11-08 Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors
    US10/290,252 Expired - Fee Related US7306907B2 (en) 1988-11-11 2002-11-08 Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors
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    Cited By (71)

    * Cited by examiner, † Cited by third party
    Publication number Priority date Publication date Assignee Title
    US20030232333A1 (en) * 2000-04-17 2003-12-18 Dyax Corp. Novel methods of constructing librabries comprising displayed and/or expressed members of a diverse family of peptides, polypeptides or proteins and the novel librabries
    US20040253638A1 (en) * 1992-08-21 2004-12-16 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US20060166252A1 (en) * 2000-04-17 2006-07-27 Ladner Robert C Novel methods of constructing libraries of genetic packages that collectively display the members of a diverse family of peptides, polypeptides or proteins
    US20060246515A1 (en) * 2002-08-12 2006-11-02 Li Zhu High throughput generation and affinity maturation of humanized antibody
    US20060257937A1 (en) * 2000-12-18 2006-11-16 Dyax Corp., A Delaware Corporation Focused libraries of genetic packages
    WO2007027714A2 (en) 2005-08-31 2007-03-08 Schering Corporation Engineered anti-il-23 antibodies
    WO2007141280A2 (en) 2006-06-06 2007-12-13 Oxford Genome Sciences (Uk) Ltd Proteins
    WO2008030611A2 (en) 2006-09-05 2008-03-13 Medarex, Inc. Antibodies to bone morphogenic proteins and receptors therefor and methods for their use
    WO2008054603A2 (en) 2006-10-02 2008-05-08 Amgen Inc. Il-17 receptor a antigen binding proteins
    WO2008070569A2 (en) 2006-12-01 2008-06-12 Medarex, Inc. Human antibodies that bind cd22 and uses thereof
    WO2008074004A2 (en) 2006-12-14 2008-06-19 Medarex, Inc. Human antibodies that bind cd70 and uses thereof
    WO2008076321A1 (en) 2006-12-14 2008-06-26 Schering Corporation Engineered anti-tslp antibody
    WO2008106134A2 (en) 2007-02-28 2008-09-04 Schering Corporation Engineered anti-il-23r antibodies
    WO2009054863A2 (en) 2006-12-13 2009-04-30 Medarex, Inc. Human antibodies that bind cd19 and uses thereof
    US20090181855A1 (en) * 2007-09-14 2009-07-16 Adimab, Inc. Rationally Designed, Synthetic Antibody Libraries and Uses Therefor
    WO2010011944A2 (en) 2008-07-25 2010-01-28 Wagner Richard W Protein screeing methods
    US20100056386A1 (en) * 2007-09-14 2010-03-04 Adimab, Inc. Rationally Designed, Synthetic Antibody Libraries and Uses Therefor
    US20100104508A1 (en) * 2006-10-02 2010-04-29 Medarex, Inc. Human antibodies that bind cxcr4 and uses thereof
    WO2010085590A1 (en) 2009-01-23 2010-07-29 Biosynexus Incorporated Opsonic and protective antibodies specific for lipoteichoic acid gram positive bacteria
    WO2010084408A2 (en) 2009-01-21 2010-07-29 Oxford Biotherapeutics Ltd. Pta089 protein
    US20100226920A1 (en) * 2006-03-27 2010-09-09 Ablynx N.V. Medical delivery device for therapeutic proteins based on single domain antibodies
    WO2010102175A1 (en) 2009-03-05 2010-09-10 Medarex, Inc. Fully human antibodies specific to cadm1
    US20110082054A1 (en) * 2009-09-14 2011-04-07 Dyax Corp. Libraries of genetic packages comprising novel hc cdr3 designs
    WO2011046958A1 (en) 2009-10-12 2011-04-21 Amgen Inc. Use of il-17 receptor a antigen binding proteins
    WO2011047083A1 (en) 2009-10-13 2011-04-21 Oxford Biotherapeutics Ltd. Antibodies against epha10
    WO2011054007A1 (en) 2009-11-02 2011-05-05 Oxford Biotherapeutics Ltd. Ror1 as therapeutic and diagnostic target
    WO2011056772A1 (en) 2009-11-04 2011-05-12 Schering Corporation Engineered anti-tslp antibody
    WO2011054893A2 (en) 2009-11-05 2011-05-12 Novartis Ag Biomarkers predictive of progression of fibrosis
    US20110118147A1 (en) * 2008-03-13 2011-05-19 Ladner Robert C Libraries of genetic packages comprising novel hc cdr3 designs
    US20110172125A1 (en) * 2008-04-24 2011-07-14 Dyax Corp. Libraries of genetic packages comprising novel hc cdr1, cdr2, and cdr3 and novel lc cdr1, cdr2, and cdr3 designs
    WO2011098449A1 (en) 2010-02-10 2011-08-18 Novartis Ag Methods and compounds for muscle growth
    EP2426145A1 (en) 2007-02-23 2012-03-07 Schering Corporation Engineered anti-IL-23p19 antibodies
    EP2426144A1 (en) 2007-02-23 2012-03-07 Schering Corporation Engineered anti-IL-23p19 antibodies
    EP2441775A1 (en) 2007-02-26 2012-04-18 Oxford Biotherapeutics Ltd. Protein
    EP2447719A1 (en) 2007-02-26 2012-05-02 Oxford Biotherapeutics Ltd. Proteins
    EP2500030A2 (en) 2005-11-04 2012-09-19 Genentech, Inc. Use of complement pathway inhibitors to treat ocular diseases
    WO2012166906A1 (en) 2011-05-31 2012-12-06 Massachusetts Institute Of Technology Cell-directed synthesis of multifunctional nanopatterns and nanomaterials
    WO2013001369A2 (en) 2011-06-28 2013-01-03 Oxford Biotherapeutics Ltd. Therapeutic and diagnostic target
    WO2013003625A2 (en) 2011-06-28 2013-01-03 Oxford Biotherapeutics Ltd. Antibodies
    WO2013016220A1 (en) 2011-07-22 2013-01-31 Amgen Inc. Il-17 receptor a is required for il-17c biology
    WO2013043933A2 (en) 2011-09-22 2013-03-28 Amgen Inc. Cd27l antigen binding proteins
    WO2014020331A1 (en) 2012-08-01 2014-02-06 Oxford Biotherapeutics Ltd. Therapeutic and diagnostic target
    WO2014089335A2 (en) 2012-12-07 2014-06-12 Amgen Inc. Bcma antigen binding proteins
    WO2014114801A1 (en) 2013-01-25 2014-07-31 Amgen Inc. Antibodies targeting cdh19 for melanoma
    WO2014133855A1 (en) 2013-02-28 2014-09-04 Caprion Proteomics Inc. Tuberculosis biomarkers and uses thereof
    US8940871B2 (en) 2006-03-20 2015-01-27 The Regents Of The University Of California Engineered anti-prostate stem cell antigen (PSCA) antibodies for cancer targeting
    US8940298B2 (en) 2007-09-04 2015-01-27 The Regents Of The University Of California High affinity anti-prostate stem cell antigen (PSCA) antibodies for cancer targeting and detection
    WO2015015401A2 (en) 2013-08-02 2015-02-05 Pfizer Inc. Anti-cxcr4 antibodies and antibody-drug conjugates
    WO2015127134A2 (en) 2014-02-20 2015-08-27 Allergan, Inc. Complement component c5 antibodies
    WO2015130826A1 (en) 2014-02-27 2015-09-03 Allergan, Inc. COMPLEMENT FACTOR Bb ANTIBODIES
    EP3009454A2 (en) 2009-04-20 2016-04-20 Oxford Bio Therapeutics Limited Antibodies specific to cadherin-17
    EP3023438A1 (en) 2009-09-03 2016-05-25 Merck Sharp & Dohme Corp. Anti-gitr antibodies
    US9354228B2 (en) 2010-07-16 2016-05-31 Adimab, Llc Antibody libraries
    EP3192807A1 (en) 2007-11-27 2017-07-19 The University Of British Columbia 14-3-3 eta antibodies and uses thereof for the diagnosis and treatment of arthritis
    WO2018020000A1 (en) 2016-07-29 2018-02-01 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies targeting tumor associated macrophages and uses thereof
    WO2018158398A1 (en) 2017-03-02 2018-09-07 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies having specificity to nectin-4 and uses thereof
    WO2019020480A1 (en) 2017-07-24 2019-01-31 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies and peptides to treat hcmv related diseases
    EP3456743A1 (en) 2013-05-30 2019-03-20 Kiniksa Pharmaceuticals, Ltd. Oncostatin m receptor antigen binding proteins
    WO2020053122A1 (en) 2018-09-10 2020-03-19 INSERM (Institut National de la Santé et de la Recherche Médicale) Combination of her2/neu antibody with heme for treating cancer
    EP3693395A1 (en) 2012-05-18 2020-08-12 Amgen Inc. St2 antigen binding proteins
    WO2020193520A1 (en) 2019-03-25 2020-10-01 INSERM (Institut National de la Santé et de la Recherche Médicale) Treatment of taupathy disorders by targeting new tau species
    EP3736293A1 (en) 2013-02-12 2020-11-11 Boehringer Ingelheim International Gmbh Therapeutic and diagnostic target for cancer comprising dll3 binding reagents
    WO2021058729A1 (en) 2019-09-27 2021-04-01 INSERM (Institut National de la Santé et de la Recherche Médicale) Anti-müllerian inhibiting substance type i receptor antibodies and uses thereof
    WO2021058763A1 (en) 2019-09-27 2021-04-01 INSERM (Institut National de la Santé et de la Recherche Médicale) Anti-müllerian inhibiting substance antibodies and uses thereof
    WO2021116119A1 (en) 2019-12-09 2021-06-17 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies having specificity to her4 and uses thereof
    WO2021160133A1 (en) 2020-02-13 2021-08-19 湖南华康恒健生物技术有限公司 Anti-bcma antibody, pharmaceutical composition of same, and applications thereof
    WO2021228956A1 (en) 2020-05-12 2021-11-18 INSERM (Institut National de la Santé et de la Recherche Médicale) New method to treat cutaneous t-cell lymphomas and tfh derived lymphomas
    WO2022042659A1 (en) 2020-08-26 2022-03-03 湖南华康恒健生物技术有限公司 Anti-ox40 antibody, and pharmaceutical composition and application thereof
    WO2023175171A1 (en) 2022-03-18 2023-09-21 Inserm (Institut National De La Sante Et De La Recherche Medicale) Bk polyomavirus antibodies and uses thereof
    WO2024052503A1 (en) 2022-09-08 2024-03-14 Institut National de la Santé et de la Recherche Médicale Antibodies having specificity to ltbp2 and uses thereof
    WO2024056668A1 (en) 2022-09-12 2024-03-21 Institut National de la Santé et de la Recherche Médicale New anti-itgb8 antibodies and its uses thereof

    Families Citing this family (1538)

    * Cited by examiner, † Cited by third party
    Publication number Priority date Publication date Assignee Title
    US5229272A (en) * 1989-04-25 1993-07-20 Igen, Inc. Catalytic antibody components
    AU634186B2 (en) * 1988-11-11 1993-02-18 Medical Research Council Single domain ligands, receptors comprising said ligands, methods for their production, and use of said ligands and receptors
    US5530101A (en) 1988-12-28 1996-06-25 Protein Design Labs, Inc. Humanized immunoglobulins
    US5196510A (en) * 1988-12-29 1993-03-23 Cytogen Corporation Molecular recognition units
    EP0376851A3 (en) * 1988-12-29 1991-06-26 Cytogen Corporation Molecular recognition units
    US5116964A (en) * 1989-02-23 1992-05-26 Genentech, Inc. Hybrid immunoglobulins
    US6406697B1 (en) 1989-02-23 2002-06-18 Genentech, Inc. Hybrid immunoglobulins
    US5225538A (en) * 1989-02-23 1993-07-06 Genentech, Inc. Lymphocyte homing receptor/immunoglobulin fusion proteins
    DE3909799A1 (en) 1989-03-24 1990-09-27 Behringwerke Ag MONOCLONAL ANTIBODIES (MAK) AGAINST TUMOR ASSOCIATED ANTIGENS, THEIR PRODUCTION AND USE
    US5236836A (en) * 1989-04-25 1993-08-17 Igen, Inc. Autoantibodies which enhance the rate of a chemical reaction
    US5658753A (en) * 1989-04-25 1997-08-19 Paul; Sudhir Catalytic antibody components
    US5602015A (en) * 1989-04-25 1997-02-11 Igen, Inc. Autoantibodies which enhance the rate of a chemical reaction
    US5599538A (en) * 1989-04-25 1997-02-04 Igen, Inc. Autoantibodies which enhance the rate of a chemical reaction
    US6048717A (en) * 1989-04-25 2000-04-11 Igen International, Inc. Inhibitors of catalytic antibodies
    US5318897A (en) * 1989-04-25 1994-06-07 Igen, Inc. Monoclonal antibody and antibody components elicited to a polypeptide antigen ground state
    US5194585A (en) * 1989-04-25 1993-03-16 Igen, Inc. Inhibitors of catalytic antibodies
    US6291160B1 (en) * 1989-05-16 2001-09-18 Scripps Research Institute Method for producing polymers having a preselected activity
    US6680192B1 (en) 1989-05-16 2004-01-20 Scripps Research Institute Method for producing polymers having a preselected activity
    US6969586B1 (en) 1989-05-16 2005-11-29 Scripps Research Institute Method for tapping the immunological repertoire
    US6291158B1 (en) * 1989-05-16 2001-09-18 Scripps Research Institute Method for tapping the immunological repertoire
    US6291161B1 (en) * 1989-05-16 2001-09-18 Scripps Research Institute Method for tapping the immunological repertiore
    CA2016841C (en) * 1989-05-16 1999-09-21 William D. Huse A method for producing polymers having a preselected activity
    US6291159B1 (en) 1989-05-16 2001-09-18 Scripps Research Institute Method for producing polymers having a preselected activity
    US5231015A (en) * 1989-10-18 1993-07-27 Eastman Kodak Company Methods of extracting nucleic acids and pcr amplification without using a proteolytic enzyme
    US6274324B1 (en) 1989-12-01 2001-08-14 Unilever Patent Holdings B.V. Specific binding reagent comprising a variable domain protein linked to a support or tracer
    GB8928501D0 (en) * 1989-12-18 1990-02-21 Unilever Plc Reagents
    ES2225816T5 (en) 1990-02-01 2014-08-21 Siemens Healthcare Diagnostics Products Gmbh Production and use of human antibody gene banks ("human antibody libraries")
    GB9021671D0 (en) * 1990-10-05 1990-11-21 Unilever Plc Delivery of agents
    US5427908A (en) * 1990-05-01 1995-06-27 Affymax Technologies N.V. Recombinant library screening methods
    US5723286A (en) * 1990-06-20 1998-03-03 Affymax Technologies N.V. Peptide library and screening systems
    GB9206318D0 (en) * 1992-03-24 1992-05-06 Cambridge Antibody Tech Binding substances
    US7063943B1 (en) 1990-07-10 2006-06-20 Cambridge Antibody Technology Methods for producing members of specific binding pairs
    GB9015198D0 (en) * 1990-07-10 1990-08-29 Brien Caroline J O Binding substance
    US6172197B1 (en) 1991-07-10 2001-01-09 Medical Research Council Methods for producing members of specific binding pairs
    US6916605B1 (en) 1990-07-10 2005-07-12 Medical Research Council Methods for producing members of specific binding pairs
    GB9016299D0 (en) * 1990-07-25 1990-09-12 Brien Caroline J O Binding substances
    DE4033120A1 (en) * 1990-10-18 1992-04-23 Boehringer Mannheim Gmbh Genomic DNA fragment encoding antibody variable region prodn. - by attaching primers to hybridoma DNA then subjecting to polymerase chain reaction, for constructing genes encoding chimeric antibodies
    US5571894A (en) * 1991-02-05 1996-11-05 Ciba-Geigy Corporation Recombinant antibodies specific for a growth factor receptor
    AU1025692A (en) * 1991-02-06 1992-08-13 Ciba-Geigy Ag Novel chimeric antiidiotypic monoclonal antibodies
    MX9203138A (en) * 1991-03-12 1992-09-01 Biogen Inc DOMAIN OF LINK CD2-ANTIGEN 3 (LFA-3) ASSOCIATED WITH FUNCTION LYMPHOSITES.
    CA2081028C (en) * 1991-03-12 1999-12-14 Barbara P. Wallner Cd2 binding domain of lymphocyte function associated antigen 3
    EP0580737B1 (en) * 1991-04-10 2004-06-16 The Scripps Research Institute Heterodimeric receptor libraries using phagemids
    US5871907A (en) * 1991-05-15 1999-02-16 Medical Research Council Methods for producing members of specific binding pairs
    US5858657A (en) * 1992-05-15 1999-01-12 Medical Research Council Methods for producing members of specific binding pairs
    US6225447B1 (en) 1991-05-15 2001-05-01 Cambridge Antibody Technology Ltd. Methods for producing members of specific binding pairs
    US6492160B1 (en) 1991-05-15 2002-12-10 Cambridge Antibody Technology Limited Methods for producing members of specific binding pairs
    US5962255A (en) * 1992-03-24 1999-10-05 Cambridge Antibody Technology Limited Methods for producing recombinant vectors
    US6800738B1 (en) 1991-06-14 2004-10-05 Genentech, Inc. Method for making humanized antibodies
    JP4124480B2 (en) 1991-06-14 2008-07-23 ジェネンテック・インコーポレーテッド Immunoglobulin variants
    WO1994004679A1 (en) * 1991-06-14 1994-03-03 Genentech, Inc. Method for making humanized antibodies
    US5939531A (en) * 1991-07-15 1999-08-17 Novartis Corp. Recombinant antibodies specific for a growth factor receptor
    NL9101290A (en) * 1991-07-23 1993-02-16 Stichting Rega V Z W RECOMBINANT DNA MOLECULA FOR THE EXPRESSION OF AN FV FRAGMENT OF AN ANTIBODY.
    US6764681B2 (en) 1991-10-07 2004-07-20 Biogen, Inc. Method of prophylaxis or treatment of antigen presenting cell driven skin conditions using inhibitors of the CD2/LFA-3 interaction
    US5270170A (en) * 1991-10-16 1993-12-14 Affymax Technologies N.V. Peptide library and screening method
    US5733731A (en) * 1991-10-16 1998-03-31 Affymax Technologies N.V. Peptide library and screening method
    ES2227512T3 (en) * 1991-12-02 2005-04-01 Medical Research Council PRODUCTION OF ANTIBODIES AGAINST SELF-ANTIGENS FROM REPERTORIES OF ANTIBODY SEGMENTS FIXED IN A PHOTO.
    AU665221B2 (en) * 1991-12-02 1995-12-21 Cambridge Antibody Technology Limited Production of anti-self antibodies from antibody segment repertoires and displayed on phage
    DE4142077A1 (en) * 1991-12-19 1993-06-24 Boehringer Mannheim Gmbh METHOD FOR EXPRESSING RECOMBINANT ANTIKOERPERS
    US5824307A (en) 1991-12-23 1998-10-20 Medimmune, Inc. Human-murine chimeric antibodies against respiratory syncytial virus
    US6399368B1 (en) 1992-01-17 2002-06-04 Board Of Regents, The University Of Texas System Secretion of T cell receptor fragments from recombinant Escherichia coli cells
    CZ291039B6 (en) 1992-02-06 2002-12-11 Schering Corporation Monoclonal antibody, hybridoma, polypeptide and process for preparing thereof, isolated DNA, recombinant vector, host cell, humanized antibody and pharmaceutical composition
    US5733743A (en) * 1992-03-24 1998-03-31 Cambridge Antibody Technology Limited Methods for producing members of specific binding pairs
    WO1993022332A2 (en) * 1992-04-24 1993-11-11 Board Of Regents, The University Of Texas System Recombinant production of immunoglobulin-like domains in prokaryotic cells
    GB9216983D0 (en) * 1992-08-11 1992-09-23 Unilever Plc Polypeptide production
    DE4233152A1 (en) * 1992-10-02 1994-04-07 Behringwerke Ag Antibody-enzyme conjugates for prodrug activation
    GB9225453D0 (en) 1992-12-04 1993-01-27 Medical Res Council Binding proteins
    PT1231268E (en) * 1994-01-31 2005-11-30 Univ Boston BANKS OF POLYCLONE ANTIBODIES
    US6010861A (en) * 1994-08-03 2000-01-04 Dgi Biotechnologies, Llc Target specific screens and their use for discovering small organic molecular pharmacophores
    US6056957A (en) * 1994-08-04 2000-05-02 Schering Corporation Humanized monoclonal antibodies against human interleukin-5
    WO1997008320A1 (en) * 1995-08-18 1997-03-06 Morphosys Gesellschaft Für Proteinoptimierung Mbh Protein/(poly)peptide libraries
    US6706484B1 (en) 1995-08-18 2004-03-16 Morphosys Ag Protein/(poly)peptide libraries
    US7368111B2 (en) 1995-10-06 2008-05-06 Cambridge Antibody Technology Limited Human antibodies specific for TGFβ2
    US6136311A (en) 1996-05-06 2000-10-24 Cornell Research Foundation, Inc. Treatment and diagnosis of cancer
    EP0898618B1 (en) * 1996-05-10 2007-10-31 Novozymes A/S Method of providing novel dna sequences
    ES2305012T3 (en) 1996-08-19 2008-11-01 Morphosys Ip Gmbh VECTOR / DNA SEQUENCES OF HUMAN COMBINATORY ANTIBODIES BANKS.
    GB9701425D0 (en) 1997-01-24 1997-03-12 Bioinvent Int Ab A method for in vitro molecular evolution of protein function
    CN1203178C (en) 1997-10-27 2005-05-25 尤尼利弗公司 Multivalent antigen-binding proteins
    JP2002502977A (en) 1998-02-04 2002-01-29 インビトロジェン コーポレイション Microarrays and their uses
    EP1078051B1 (en) 1998-05-13 2007-12-12 Domantis Limited Phage-display system for the selection of correctly folded proteins
    US6914128B1 (en) 1999-03-25 2005-07-05 Abbott Gmbh & Co. Kg Human antibodies that bind human IL-12 and methods for producing
    US6492497B1 (en) 1999-04-30 2002-12-10 Cambridge Antibody Technology Limited Specific binding members for TGFbeta1
    US7534605B2 (en) 1999-06-08 2009-05-19 Yissum Research Development Company Of The Hebrew University Of Jerusalem CD44 polypeptides, polynucleotides encoding same, antibodies directed thereagainst and method of using same for diagnosing and treating inflammatory diseases
    US7297478B1 (en) 2000-09-22 2007-11-20 Large Scale Biology Corporation Creation of variable length and sequence linker regions for dual-domain or multi-domain molecules
    US6656467B2 (en) 2000-01-27 2003-12-02 Medimmune, Inc. Ultra high affinity neutralizing antibodies
    EP1264885A4 (en) 2000-02-22 2007-02-21 Med & Biological Lab Co Ltd Antibody library
    DK1259547T3 (en) 2000-03-01 2012-10-15 Medimmune Inc HIGH POTENTIAL, RECOMBINANT ANTIBODIES AND PROCEDURE FOR PRODUCING THEM
    EP1176200A3 (en) 2000-06-20 2005-01-12 Switch Biotech Aktiengesellschaft Use of polyeptides or their encoding nucleic acids for the diagnosis or treatment of skin diseases or wound healing and their use in indentifying pharmacologically acitve substances
    KR20080074231A (en) 2000-06-29 2008-08-12 아보트 러보러터리즈 Dual specificity antibodies and methods of making and using
    US7288390B2 (en) 2000-08-07 2007-10-30 Centocor, Inc. Anti-dual integrin antibodies, compositions, methods and uses
    US6902734B2 (en) 2000-08-07 2005-06-07 Centocor, Inc. Anti-IL-12 antibodies and compositions thereof
    UA81743C2 (en) 2000-08-07 2008-02-11 Центокор, Инк. HUMAN MONOCLONAL ANTIBODY WHICH SPECIFICALLY BINDS TUMOR NECROSIS FACTOR ALFA (TNFα), PHARMACEUTICAL MIXTURE CONTAINING THEREOF, AND METHOD FOR TREATING ARTHRITIS
    US20050196755A1 (en) * 2000-11-17 2005-09-08 Maurice Zauderer In vitro methods of producing and identifying immunoglobulin molecules in eukaryotic cells
    DE60126130T2 (en) 2000-11-17 2007-10-18 The University Of Rochester IN-VITRO PROCESS FOR THE MANUFACTURE AND IDENTIFICATION OF IMMUNOGLOBULIN MOLECULES IN EUKARYOTIC CELLS
    US7179900B2 (en) 2000-11-28 2007-02-20 Medimmune, Inc. Methods of administering/dosing anti-RSV antibodies for prophylaxis and treatment
    EP1366191A2 (en) 2000-12-11 2003-12-03 Alexion Pharmaceuticals, Inc. Nested oligonucleotides containing hairpin for nucleic acid amplification
    US6958213B2 (en) 2000-12-12 2005-10-25 Alligator Bioscience Ab Method for in vitro molecular evolution of protein function
    ES2649037T3 (en) 2000-12-12 2018-01-09 Medimmune, Llc Molecules with prolonged half-lives, compositions and uses thereof
    US7658921B2 (en) 2000-12-12 2010-02-09 Medimmune, Llc Molecules with extended half-lives, compositions and uses thereof
    US20020086292A1 (en) 2000-12-22 2002-07-04 Shigeaki Harayama Synthesis of hybrid polynucleotide molecules using single-stranded polynucleotide molecules
    AU2002231736A1 (en) 2000-12-22 2002-07-08 Max-Planck-Gesellschaft Zur Forderung Der Wissenschaften E.V. Use of repulsive guidance molecule (rgm) and its modulators
    AU2002338446A1 (en) * 2001-01-23 2002-11-05 University Of Rochester Medical Center Methods of producing or identifying intrabodies in eukaryotic cells
    PL373835A1 (en) 2001-01-31 2005-09-19 Biogen Idec Inc. Use of cd23 antagonists for the treatment of neoplastic disorders
    GB0110029D0 (en) 2001-04-24 2001-06-13 Grosveld Frank Transgenic animal
    US6972324B2 (en) 2001-05-18 2005-12-06 Boehringer Ingelheim Pharmaceuticals, Inc. Antibodies specific for CD44v6
    GB0115841D0 (en) * 2001-06-28 2001-08-22 Medical Res Council Ligand
    WO2004003019A2 (en) 2002-06-28 2004-01-08 Domantis Limited Immunoglobin single variant antigen-binding domains and dual-specific constructs
    EP1399484B1 (en) * 2001-06-28 2010-08-11 Domantis Limited Dual-specific ligand and its use
    US20060073141A1 (en) * 2001-06-28 2006-04-06 Domantis Limited Compositions and methods for treating inflammatory disorders
    AU2002320352A1 (en) 2001-07-24 2003-02-17 Biogen Idec Ma Inc. Methods for treating or preventing sclerotic disorders using cd2-binding agents
    US6833441B2 (en) 2001-08-01 2004-12-21 Abmaxis, Inc. Compositions and methods for generating chimeric heteromultimers
    PT1419179E (en) 2001-08-10 2010-03-16 Univ Aberdeen Antigen binding domains from fish
    WO2003018749A2 (en) * 2001-08-22 2003-03-06 Shengfeng Li Compositions and methods for generating antigen-binding units
    US20040005709A1 (en) * 2001-10-24 2004-01-08 Hoogenboom Henricus Renerus Jacobus Mattheus Hybridization control of sequence variation
    GB0126378D0 (en) 2001-11-02 2002-01-02 Oxford Biomedica Ltd Antigen
    US7175983B2 (en) 2001-11-02 2007-02-13 Abmaxis, Inc. Adapter-directed display systems
    CA2471116A1 (en) * 2001-12-21 2003-07-03 Serge Muyldermans Method for cloning of variable domain sequences
    EP2075256A2 (en) 2002-01-14 2009-07-01 William Herman Multispecific binding molecules
    SI3031910T1 (en) 2002-02-21 2018-05-31 Institute Of Virology Slovak Academy Of Sciences Mn/ca ix-specific monoclonal antibodies generated from mn/ca ix-deficient mice and methods of use
    CA2481074A1 (en) * 2002-04-05 2003-10-23 Amgen Inc. Human anti-opgl neutralizing antibodies as selective opgl pathway inhibitors
    US7135310B2 (en) 2002-04-24 2006-11-14 The Regents Of The University Of California Method to amplify variable sequences without imposing primer sequences
    HUE048922T2 (en) 2002-05-22 2020-09-28 Novartis Ag Immunoglobulin frameworks which demonstrate enhanced stability in the intracellular environment and methods of identifying same
    EP2305710A3 (en) 2002-06-03 2013-05-29 Genentech, Inc. Synthetic antibody phage libraries
    JP4753578B2 (en) 2002-06-03 2011-08-24 ジェネンテック, インコーポレイテッド Synthetic antibody phage library
    US7132100B2 (en) 2002-06-14 2006-11-07 Medimmune, Inc. Stabilized liquid anti-RSV antibody formulations
    US7425618B2 (en) 2002-06-14 2008-09-16 Medimmune, Inc. Stabilized anti-respiratory syncytial virus (RSV) antibody formulations
    GB0213745D0 (en) 2002-06-14 2002-07-24 Univ Edinburgh Enzyme
    US20060002935A1 (en) 2002-06-28 2006-01-05 Domantis Limited Tumor Necrosis Factor Receptor 1 antagonists and methods of use therefor
    US9028822B2 (en) 2002-06-28 2015-05-12 Domantis Limited Antagonists against TNFR1 and methods of use therefor
    US9321832B2 (en) 2002-06-28 2016-04-26 Domantis Limited Ligand
    US7696320B2 (en) 2004-08-24 2010-04-13 Domantis Limited Ligands that have binding specificity for VEGF and/or EGFR and methods of use therefor
    AU2003251238A1 (en) 2002-08-07 2004-02-25 Umc Utrecht Holding B.V. Modulation of platelet adhesion based on the surface exposed beta-switch loop of platelet glycoprotein ib-alpha
    DK2213685T3 (en) 2002-09-06 2014-03-03 Medarex Llc Therapeutic anti-IL-1R1 monoclonal antibody
    AU2003299132A1 (en) 2002-10-07 2004-04-23 Genome Research Limited P53 binding polypeptide
    WO2004034988A2 (en) * 2002-10-16 2004-04-29 Amgen Inc. Human anti-ifn-ϝ neutralizing antibodies as selective ifn-ϝ pathway inhibitors
    US9701754B1 (en) 2002-10-23 2017-07-11 City Of Hope Covalent disulfide-linked diabodies and uses thereof
    WO2004041865A2 (en) * 2002-11-08 2004-05-21 Ablynx N.V. Stabilized single domain antibodies
    US9320792B2 (en) 2002-11-08 2016-04-26 Ablynx N.V. Pulmonary administration of immunoglobulin single variable domains and constructs thereof
    US20060034845A1 (en) 2002-11-08 2006-02-16 Karen Silence Single domain antibodies directed against tumor necrosis factor alpha and uses therefor
    JP2006523090A (en) * 2002-12-27 2006-10-12 ドマンティス リミテッド Bispecific single domain antibody specific for ligand and for ligand receptor
    GB0230203D0 (en) * 2002-12-27 2003-02-05 Domantis Ltd Fc fusion
    GB0230201D0 (en) * 2002-12-27 2003-02-05 Domantis Ltd Retargeting
    CN101412759A (en) 2003-01-10 2009-04-22 埃博灵克斯股份有限公司 Therapeutic polypeptides, homologues thereof, fragments thereof and for use in modulating platelet-mediated aggregation
    ES2567198T3 (en) * 2003-01-24 2016-04-20 Applied Molecular Evolution, Inc. Antagonists of human IL-1 beta
    DE10303974A1 (en) 2003-01-31 2004-08-05 Abbott Gmbh & Co. Kg Amyloid β (1-42) oligomers, process for their preparation and their use
    RS54160B1 (en) 2003-03-19 2015-12-31 Biogen Idec Ma Inc. Nogo receptor binding protein
    TWI353991B (en) 2003-05-06 2011-12-11 Syntonix Pharmaceuticals Inc Immunoglobulin chimeric monomer-dimer hybrids
    US9708410B2 (en) 2003-05-30 2017-07-18 Janssen Biotech, Inc. Anti-tissue factor antibodies and compositions
    EP1498133A1 (en) 2003-07-18 2005-01-19 Aventis Pharma Deutschland GmbH Use of a pak inhibitor for the treatment of a joint disease
    US7758859B2 (en) 2003-08-01 2010-07-20 Genentech, Inc. Anti-VEGF antibodies
    US20050106667A1 (en) 2003-08-01 2005-05-19 Genentech, Inc Binding polypeptides with restricted diversity sequences
    KR20060069825A (en) * 2003-08-01 2006-06-22 제넨테크, 인크. Antibody cdr polypeptide sequences with restricted diversity
    US20120202710A1 (en) * 2003-09-09 2012-08-09 Integrigen, Inc. Methods and compositions for generation of germline human antibody genes
    ES2339710T5 (en) 2003-09-23 2017-10-05 University Of North Carolina At Chapel Hill Cells that coexpress vitamin K reductase and vitamin K dependent protein and use them to improve the productivity of said vitamin K dependent protein
    EP1673450B1 (en) 2003-10-14 2010-04-28 Baxter International Inc. Vitamin k epoxide recycling polypeptide vkorc1, a therapeutic target of coumarin and their derivatives
    EP1697415A1 (en) 2003-11-12 2006-09-06 Biogen Idec MA Inc. NEONATAL Fc RECEPTOR (FcRn)-BINDING POLYPEPTIDE VARIANTS, DIMERIC Fc BINDING PROTEINS AND METHODS RELATED THERETO
    JP4949038B2 (en) 2003-12-01 2012-06-06 ダコ デンマーク アクティーゼルスカブ Methods and compositions for immunohistochemical detection
    GB0328690D0 (en) 2003-12-10 2004-01-14 Ludwig Inst Cancer Res Tumour suppressor protein
    SG10201900535UA (en) 2003-12-23 2019-02-27 Genentech Inc Novel anti-il 13 antibodies and uses thereof
    CA2553692C (en) * 2004-01-20 2014-10-07 Kalobios, Inc. Antibody specificity transfer using minimal essential binding determinants
    GB0406215D0 (en) 2004-03-19 2004-04-21 Procure Therapeutics Ltd Prostate stem cell
    RU2429245C2 (en) 2004-03-30 2011-09-20 Глаксо Груп Лимитед Immunoglobulins
    US7785903B2 (en) 2004-04-09 2010-08-31 Genentech, Inc. Variable domain library and uses
    US8318905B2 (en) 2004-04-23 2012-11-27 Richard Kroczek Antibodies for depletion of ICOS-positive cells in vivo
    EP1750747A1 (en) 2004-05-07 2007-02-14 Astellas US LLC Soluble lfa-3 polypeptide for treating viral disorders
    KR20120133403A (en) 2004-06-01 2012-12-10 도만티스 리미티드 Bispecific fusion antibodies with enhanced serum half-life
    US7977071B2 (en) 2004-06-02 2011-07-12 Adalta Pty Ltd. Binding moieties based on shark ignar domains
    CA2572193A1 (en) 2004-06-24 2006-01-05 Biogen Idec Ma Inc. Treatment of conditions involving oligodendrocytes with sp35 based agents
    TWI307630B (en) 2004-07-01 2009-03-21 Glaxo Group Ltd Immunoglobulins
    GB0414886D0 (en) 2004-07-02 2004-08-04 Neutec Pharma Plc Treatment of bacterial infections
    KR101319848B1 (en) 2004-07-20 2013-10-18 심포젠 에이/에스 A procedure for structural characterization of a recombinant polyclonal protein or a polyclonal cell line
    AU2005263331B8 (en) 2004-07-20 2011-06-16 Symphogen A/S Anti-Rhesus D recombinant polyclonal antibody and methods of manufacture
    SI2311874T1 (en) 2004-07-22 2017-12-29 Erasmus University Medical Center Rotterdam Department of Cell Biology and Genetics Binding molecules
    GB0416487D0 (en) 2004-07-23 2004-08-25 Isis Innovation Modified virus
    US7846438B2 (en) 2004-08-03 2010-12-07 Biogen Idec Ma Inc. Methods of promoting neurite outgrowth with soluble TAJ polypeptides
    US7563443B2 (en) 2004-09-17 2009-07-21 Domantis Limited Monovalent anti-CD40L antibody polypeptides and compositions thereof
    WO2006055778A2 (en) 2004-11-16 2006-05-26 Kalobios, Inc. Immunoglobulin variable region cassette exchange
    GB0425739D0 (en) * 2004-11-23 2004-12-22 Procure Therapeutics Ltd Humanised baculovirus 2
    GB0521621D0 (en) 2005-10-24 2005-11-30 Domantis Ltd Tumor necrosis factor receptor 1 antagonists for treating respiratory diseases
    FR2879605B1 (en) 2004-12-16 2008-10-17 Centre Nat Rech Scient Cnrse PRODUCTION OF ANTIBODY FORMATS AND IMMUNOLOGICAL APPLICATIONS OF THESE FORMATS
    EP1997890A1 (en) 2004-12-30 2008-12-03 Agency for Science, Technology and Research Chinese hamster apoptosis-related genes
    ES2408704T3 (en) 2005-01-05 2013-06-21 Biogen Idec Ma Inc. Crypto binding molecules
    CA2593328C (en) 2005-01-14 2018-02-06 Ablynx N.V. Methods and assays for distinguishing between different forms of diseases and disorders characterized by thrombocytopenia and/or by spontaneous interaction between von willebrand factor (vwf) and platelets
    CA2600209A1 (en) 2005-03-11 2006-09-14 Sanofi-Aventis Use of mgc4504
    US20090325226A1 (en) 2005-03-15 2009-12-31 Stafford Darrel W Methods and Compositions for Producing Active Vitamin K-Dependent Proteins
    CA2601400A1 (en) 2005-03-19 2006-09-28 Medical Research Council Improvements in or relating to treatment and prevention of viral infections
    ES2432091T5 (en) 2005-03-25 2022-03-18 Gitr Inc GITR binding molecules and uses thereof
    EP1882044A1 (en) 2005-05-11 2008-01-30 sanofi-aventis Use of a gip promoter polymorphism
    EP1888640B1 (en) 2005-05-18 2012-03-14 Ablynx N.V. Improved nanobodies against tumor necrosis factor-alpha
    PA8675801A1 (en) 2005-05-19 2006-12-07 Centocor Inc ANTI-MCP-1 ANTIBODIES, COMPOSITIONS, METHODS AND USES
    PL3415535T3 (en) 2005-05-20 2021-06-14 Ablynx N.V. Improved nanobodies tm for the treatment of aggregation-mediated disorders
    ES2547463T3 (en) 2005-06-17 2015-10-06 Merck Sharp & Dohme Corp. ILT3 binding molecules and uses thereof
    CN103172737A (en) 2005-06-30 2013-06-26 Abbvie公司 IL-12/P40 binding proteins
    EP2238986A3 (en) 2005-07-08 2010-11-03 Biogen Idec MA Inc. Sp35 antibodies and uses thereof
    AU2006283532B2 (en) 2005-08-19 2012-04-26 Abbvie Inc. Dual variable domain immunoglobin and uses thereof
    EP2500353A3 (en) 2005-08-19 2012-10-10 Abbott Laboratories Dual variable domain immunoglobulin and uses thereof
    US7612181B2 (en) 2005-08-19 2009-11-03 Abbott Laboratories Dual variable domain immunoglobulin and uses thereof
    WO2007039256A2 (en) 2005-09-30 2007-04-12 Abbott Gmbh & Co. Kg Binding domains of proteins of the repulsive guidance molecule (rgm) protein family and functional fragments thereof, and their use
    EP1937161B1 (en) 2005-10-03 2016-08-24 Smith and Nephew, Inc. Locking instrument assembly
    DE102005048898A1 (en) 2005-10-12 2007-04-19 Sanofi-Aventis Deutschland Gmbh EGLN2 variants and their use in the prevention or treatment of thromboembolic disorders and coronary heart disease
    GB0521139D0 (en) 2005-10-18 2005-11-23 Univ Sheffield Therapeutic agent
    MX2008005405A (en) * 2005-10-28 2008-09-11 Florida Internat University Bo Horse: human chimeric antibodies.
    NZ568705A (en) 2005-11-04 2012-07-27 Biogen Idec Inc Methods for promoting neurite outgrowth and survival of dopaminergic neurons
    WO2007056441A2 (en) 2005-11-07 2007-05-18 Genentech, Inc. Binding polypeptides with diversified and consensus vh/vl hypervariable sequences
    UA96139C2 (en) 2005-11-08 2011-10-10 Дженентек, Інк. Anti-neuropilin-1 (nrp1) antibody
    JP2009516513A (en) 2005-11-21 2009-04-23 ラボラトワール セローノ ソシエテ アノニム Composition and production method of hybrid antigen binding molecule and use thereof
    CN101506236B (en) 2005-11-30 2012-12-12 雅培制药有限公司 Monoclonal antibodies against amyloid beta protein and uses thereof
    BRPI0619249A2 (en) 2005-11-30 2011-09-20 Abbott Lab anti-globulin-ß antibodies, antigen-binding fractions thereof, corresponding hybridomas, nucleic acids, vectors, host cells, methods of making said antibodies, compositions comprising said antibodies, uses of said antibodies and methods of using said antibodies
    EP1957536A2 (en) * 2005-12-01 2008-08-20 Domantis Limited Noncompetitive domain antibody formats that bind interleukin 1 receptor type 1
    WO2007064919A2 (en) * 2005-12-02 2007-06-07 Genentech, Inc. Binding polypeptides with restricted diversity sequences
    ES2388932T3 (en) 2005-12-02 2012-10-19 Genentech, Inc. Binding polypeptides and uses thereof
    NZ598421A (en) 2005-12-02 2013-11-29 Biogen Idec Inc Treatment of Conditions Involving Demyelination
    JP2009518314A (en) 2005-12-02 2009-05-07 ジェネンテック・インコーポレーテッド Compositions and methods for the treatment of diseases and disorders associated with cytokine signaling comprising antibodies that bind IL-22 and antibodies that bind IL-22R
    US8669345B2 (en) 2006-01-27 2014-03-11 Biogen Idec Ma Inc. Nogo receptor antagonists
    CN101400703B (en) 2006-02-01 2013-05-08 赛法隆澳大利亚控股有限公司 Domain antibody construct
    WO2007100711A2 (en) 2006-02-24 2007-09-07 Investigen, Inc. Methods and compositions for detecting polynucleotides
    AU2007249408A1 (en) * 2006-05-09 2007-11-22 Genentech, Inc. Binding polypeptides with optimized scaffolds
    WO2007140371A2 (en) 2006-05-30 2007-12-06 Genentech, Inc. Antibodies and immunoconjugates and uses therefor
    US7777008B2 (en) 2006-06-19 2010-08-17 Tolerx, Inc. ILT3 binding molecules and uses therefor
    US8874380B2 (en) 2010-12-09 2014-10-28 Rutgers, The State University Of New Jersey Method of overcoming therapeutic limitations of nonuniform distribution of radiopharmaceuticals and chemotherapy drugs
    WO2008019061A2 (en) * 2006-08-03 2008-02-14 Vaccinex, Inc. Anti-il-6 monoclonal antibodies and uses thereof
    US10118970B2 (en) 2006-08-30 2018-11-06 Genentech, Inc. Multispecific antibodies
    UA115964C2 (en) 2006-09-08 2018-01-25 Еббві Айрленд Анлімітед Компані INTERLAYKIN-13-Binding Protein
    CA2662236A1 (en) 2006-09-12 2008-03-20 Genentech, Inc. Methods and compositions for the diagnosis and treatment of cancer
    GB0620705D0 (en) 2006-10-18 2006-11-29 Opsona Therapeutics Compounds for the modulation of toll-like receptor activity and assay methods for the identification of said compounds
    EP2061814B1 (en) 2006-10-27 2012-06-06 Genentech, Inc. Antibodies and immunoconjugates and uses therefor
    DK2102239T3 (en) 2006-11-30 2012-05-29 Res Dev Foundation IMPROVED IMMUNOGLOBULIN LIBRARIES
    US8455626B2 (en) 2006-11-30 2013-06-04 Abbott Laboratories Aβ conformer selective anti-aβ globulomer monoclonal antibodies
    CL2007003661A1 (en) 2006-12-18 2008-07-18 Genentech Inc VARIABLE AND LIGHT VARIABLE HEAVY CHAIN REGIONS; NUCLEIC ACIDS THAT CODE THEM; METHOD OF PRODUCTION; ANTI-NOTCH3 ANTIBODIES THAT UNDERSTAND THEM; AND USE OF ANTIBODIES TO TREAT DISEASES RELATED TO THE RECEIVER NOTCH3.
    EP2557090A3 (en) 2006-12-19 2013-05-29 Ablynx N.V. Amino acid sequences directed against GPCRs and polypeptides comprising the same for the treatment of GPCR-related diseases and disorders
    WO2008074840A2 (en) 2006-12-19 2008-06-26 Ablynx N.V. Amino acid sequences directed against a metalloproteinase from the adam family and polypeptides comprising the same for the treatment of adam-related diseases and disorders
    US9512236B2 (en) 2006-12-19 2016-12-06 Ablynx N.V. Amino acid sequences directed against GPCRS and polypeptides comprising the same for the treatment of GPCR-related diseases and disorders
    AU2008205244B2 (en) 2007-01-09 2013-02-07 Biogen Ma Inc. Sp35 antibodies and uses thereof
    US8128926B2 (en) 2007-01-09 2012-03-06 Biogen Idec Ma Inc. Sp35 antibodies and uses thereof
    US7776331B1 (en) 2007-01-16 2010-08-17 Abbott Laboratories Methods of treating plaque psoriasis
    WO2008092041A2 (en) 2007-01-24 2008-07-31 Carnegie Mellon University Optical biosensors
    WO2008103702A2 (en) 2007-02-23 2008-08-28 Investigen, Inc. Methods and compositions for rapid light-activated isolation and detection of analytes
    EP2486928A1 (en) 2007-02-27 2012-08-15 Abbott GmbH & Co. KG Method for the treatment of amyloidoses
    WO2008121324A2 (en) 2007-03-30 2008-10-09 Abbott Laboratories Recombinant expression vector elements (reves) for enhancing expression of recombinant proteins in host cells
    US9969797B2 (en) * 2008-04-23 2018-05-15 Covalent Bioscience Incorporated Immunoglobulins directed to bacterial, viral and endogenous polypeptides
    WO2008132516A1 (en) 2007-04-26 2008-11-06 Opsona Therapeutics Limited Toll-like receptor binding epitope and compositions for binding thereto
    US20130195881A1 (en) 2007-04-27 2013-08-01 Sanjaya Singh Potent, stable and non-immunosuppressive anti-cd4 antibodies
    DK2155789T3 (en) * 2007-05-01 2013-10-21 Res Dev Foundation Immunoglobulin Fc libraries
    MX2009012282A (en) 2007-05-17 2009-11-25 Genentech Inc Crystal structures of neuropilin fragments and neuropilin-antibody complexes.
    EP1997830A1 (en) 2007-06-01 2008-12-03 AIMM Therapeutics B.V. RSV specific binding molecules and means for producing them
    MX2009012968A (en) * 2007-06-06 2010-04-01 Domantis Ltd Polypeptides, antibody variable domains and antagonists.
    MX2009013137A (en) 2007-06-06 2010-04-30 Domantis Ltd Methods for selecting protease resistant polypeptides.
    GB0724331D0 (en) 2007-12-13 2008-01-23 Domantis Ltd Compositions for pulmonary delivery
    CA2691075C (en) 2007-06-15 2017-04-11 Daniela Gast Treatment of tumors using specific anti-l1 antibody
    US8263072B2 (en) 2007-06-22 2012-09-11 Genera Istrazivanja, d.o.o. ADAMTS4 as a blood biomarker and therapeutic target for chronic renal failure
    CA2691940C (en) 2007-07-03 2018-03-06 Joost Alexander Kolkman Methods for providing improved immunoglobulin sequences
    ES2591281T3 (en) 2007-07-12 2016-11-25 Gitr, Inc. Combination therapies that employ GITR binding molecules
    EP2023144A1 (en) 2007-08-01 2009-02-11 Sanofi-Aventis Novel AS160-like protein, test systems, methods and uses involving it for the identification of diabetes type 2 therapeutics
    EP2170366B1 (en) 2007-08-03 2013-11-06 Opsona Therapeutics Limited Use of tlr-2 antagonists for treatment of reperfusion injury and tissue damage
    SI2195023T1 (en) 2007-08-29 2018-07-31 Sanofi Humanized anti-cxcr5 antibodies, derivatives thereof and their uses
    CN101836117B (en) 2007-09-18 2014-07-23 丹麦达科有限公司 A rapid and sensitive method for detection of biological targets
    SG10201605394SA (en) 2007-09-26 2016-08-30 Chugai Pharmaceutical Co Ltd Modified Antibody Constant Region
    EP2535349A1 (en) 2007-09-26 2012-12-19 UCB Pharma S.A. Dual specificity antibody fusions
    EP2050764A1 (en) 2007-10-15 2009-04-22 sanofi-aventis Novel polyvalent bispecific antibody format and uses thereof
    US20090202475A1 (en) 2007-11-07 2009-08-13 Genentech, Inc. Compositions and methods for treatment of microbial disorders
    US7892760B2 (en) 2007-11-19 2011-02-22 Celera Corporation Lung cancer markers, and uses thereof
    JP5745272B2 (en) 2007-11-19 2015-07-08 ジェネンテック, インコーポレイテッド Compositions and methods for inhibiting tumor progression
    WO2009068630A1 (en) 2007-11-27 2009-06-04 Ablynx N.V. Immunoglobulin constructs
    AR069501A1 (en) 2007-11-30 2010-01-27 Genentech Inc ANTI-VEGF ANTIBODIES (VASCULAR ENDOTELIAL GROWTH FACTOR)
    WO2009079212A2 (en) 2007-12-03 2009-06-25 Carnegie Mellon University Linked peptide fluorogenic biosensors
    PT2594590E (en) 2007-12-14 2015-01-14 Bristol Myers Squibb Co Method of producing binding molecules for the human ox40 receptor
    US8574577B2 (en) 2008-01-03 2013-11-05 The Scripps Research Institute VEGF antibodies comprising modular recognition domains
    US8454960B2 (en) 2008-01-03 2013-06-04 The Scripps Research Institute Multispecific antibody targeting and multivalency through modular recognition domains
    SG10201605629VA (en) 2008-01-03 2016-08-30 Scripps Research Inst Antibody targeting through a modular recognition domain
    US8557242B2 (en) 2008-01-03 2013-10-15 The Scripps Research Institute ERBB2 antibodies comprising modular recognition domains
    US8557243B2 (en) 2008-01-03 2013-10-15 The Scripps Research Institute EFGR antibodies comprising modular recognition domains
    US8962803B2 (en) 2008-02-29 2015-02-24 AbbVie Deutschland GmbH & Co. KG Antibodies against the RGM A protein and uses thereof
    EP2098536A1 (en) 2008-03-05 2009-09-09 4-Antibody AG Isolation and identification of antigen- or ligand-specific binding proteins
    US20110091462A1 (en) 2008-03-05 2011-04-21 Ablynx N.V. Novel antigen binding dimer-complexes, methods of making and uses thereof
    RU2497545C2 (en) 2008-03-18 2013-11-10 Эбботт Лэборетриз Method of treating psoriasis (versions)
    EP2105742A1 (en) 2008-03-26 2009-09-30 Sanofi-Aventis Use of cathepsin C
    AU2009228158B2 (en) 2008-03-27 2014-02-27 Zymogenetics, Inc. Compositions and methods for inhibiting PDGFRbeta and VEGF-A
    AU2009231733B2 (en) * 2008-03-31 2015-12-24 Genentech, Inc. Compositions and methods for treating and diagnosing asthma
    WO2009124931A2 (en) 2008-04-07 2009-10-15 Ablynx Nv Amino acid sequences directed against the notch pathways and uses thereof
    AU2008201871A1 (en) * 2008-04-16 2009-11-26 Deutsches Krebsforschungszentrum Stiftung Des Oeffentlichen Rechts Inhibition of angiogenesis and tumor metastasis
    CA2722466A1 (en) 2008-04-29 2009-11-05 Tariq Ghayur Dual variable domain immunoglobulins and uses thereof
    EP2116618A1 (en) 2008-05-09 2009-11-11 Agency for Science, Technology And Research Diagnosis and treatment of Kawasaki disease
    KR101649189B1 (en) 2008-05-09 2016-08-18 애브비 인코포레이티드 Antibodies to receptor of advanced glycation end products (RAGE) and uses thereof
    US9212226B2 (en) 2008-05-16 2015-12-15 Ablynx N.V. Amino acid sequences directed against CXCR4 and other GPCRs and compounds comprising the same
    AU2009256250B2 (en) 2008-06-03 2013-05-30 Abbvie Inc. Dual variable domain immunoglobulins and uses thereof
    CA2725666A1 (en) 2008-06-03 2009-12-10 Abbott Laboratories Dual variable domain immunoglobulins and uses thereof
    DK2285408T3 (en) 2008-06-05 2019-02-04 Ablynx Nv AMINO ACID SEQUENCES AGAINST COATING PROTEINS IN A VIRUS AND POLYPEPTIDES INCLUDING THESE FOR TREATMENT OF VIRUSAL DISEASES
    WO2009155484A2 (en) 2008-06-20 2009-12-23 Wyeth Compositions and methods of use of orf1358 from beta-hemolytic streptococcal strains
    NZ590074A (en) 2008-07-08 2012-12-21 Abbott Lab Prostaglandin e2 dual variable domain immunoglobulins and uses thereof
    RU2559525C2 (en) 2008-07-08 2015-08-10 Эббви Инк Proteins binding prostaglandin e2 and using them
    AU2009269099B2 (en) 2008-07-09 2016-03-10 Biogen Ma Inc. Compositions comprising antibodies to LINGO or fragments thereof
    EP2331107A4 (en) 2008-08-08 2011-08-24 Agency Science Tech & Res Vhz for diagnosis and treatment of cancers
    US8795981B2 (en) 2008-08-08 2014-08-05 Molecular Devices, Llc Cell detection
    NZ590816A (en) 2008-08-14 2013-02-22 Cephalon Australia Pty Ltd Anti-il-12/il-23 antibodies
    JP5796831B2 (en) 2008-09-03 2015-10-21 ジェネンテック, インコーポレイテッド Multispecific antibody
    MX2011002478A (en) 2008-09-07 2011-04-05 Glyconex Inc Anti-extended type i glycosphingolipid antibody, derivatives thereof and use.
    US9075065B2 (en) 2008-09-12 2015-07-07 Dako Denmark A/S Prostate cancer biomarker
    US8417011B2 (en) 2008-09-18 2013-04-09 Molecular Devices (New Milton) Ltd. Colony detection
    CA2744523A1 (en) * 2008-09-22 2010-03-25 Calmune Corporation Methods and vectors for display of molecules and displayed molecules and collections
    US20100081575A1 (en) * 2008-09-22 2010-04-01 Robert Anthony Williamson Methods for creating diversity in libraries and libraries, display vectors and methods, and displayed molecules
    CA2738605A1 (en) 2008-09-24 2010-04-01 Luke Anthony O'neill Composition and method for treatment of preterm labor
    DK2334705T3 (en) 2008-09-26 2017-03-27 Ucb Biopharma Sprl BIOLOGICAL PRODUCTS
    EP2352764B1 (en) 2008-10-14 2018-03-28 Ablynx N.V. AMINO ACID SEQUENCES TARGETING HUMAN CD4 and CXCR4, CCR5, TLR4, ALPHAV INTEGRIN, BETA3-INTEGRIN,BETA1-INTEGRIN, HUMAN ALPHA2-INTEGRIN, CD81, SR-BI, CLAUDIN-1, CLAUDIN-6 AND/OR CLAUDIN-9, RESPECTIVELY, AND NEUTRALIZING VIRAL ENTRY
    WO2010056550A1 (en) 2008-10-29 2010-05-20 Wyeth Llc Methods for purification of single domain antigen binding molecules
    CN102271707B (en) 2008-10-29 2015-04-08 阿布林克斯公司 Formulations of single domain antigen binding molecules
    JP2012508017A (en) 2008-11-07 2012-04-05 ファブラス エルエルシー Anti-DLL4 antibody and use thereof
    JP5823871B2 (en) 2008-12-10 2015-11-25 アブリンクス エン.ヴェー. Amino acid sequences directed against the Angiopoietin / Tie system for the treatment of diseases and disorders associated with angiogenesis and polypeptides comprising the same
    US8775090B2 (en) 2008-12-12 2014-07-08 Medimmune, Llc Crystals and structure of a human IgG Fc variant with enhanced FcRn binding
    US9260508B2 (en) 2008-12-19 2016-02-16 Ablynx N.V. Method for generation of immunoglobulin sequences
    AR074777A1 (en) 2008-12-19 2011-02-09 Glaxo Group Ltd PROTEINS OF UNION TO ANTIGEN
    CN102341411A (en) 2008-12-31 2012-02-01 比奥根艾迪克Ma公司 Anti-lymphotoxin antibodies
    TW201031421A (en) 2009-01-29 2010-09-01 Abbott Lab IL-1 binding proteins
    EP2219029A1 (en) 2009-01-30 2010-08-18 Sanofi-Aventis Test systems, methods and uses involving AS160 protein
    EP2398504B1 (en) 2009-02-17 2018-11-28 Cornell Research Foundation, Inc. Methods and kits for diagnosis of cancer and prediction of therapeutic value
    US8435735B2 (en) 2009-02-19 2013-05-07 Dako Denmark A/S Methods and compounds for detection of molecular targets
    US8030026B2 (en) 2009-02-24 2011-10-04 Abbott Laboratories Antibodies to troponin I and methods of use thereof
    WO2010100135A1 (en) 2009-03-05 2010-09-10 Ablynx N.V. Novel antigen binding dimer-complexes, methods of making/avoiding and uses thereof
    NZ594514A (en) 2009-03-05 2013-06-28 Abbott Lab Interleukin-17 BINDING PROTEINS
    WO2010100437A2 (en) 2009-03-05 2010-09-10 University Of Sheffield Production of protein
    US8283162B2 (en) 2009-03-10 2012-10-09 Abbott Laboratories Antibodies relating to PIVKAII and uses thereof
    SI3260136T1 (en) 2009-03-17 2021-05-31 Theraclone Sciences, Inc. Human immunodeficiency virus (hiv) -neutralizing antibodies
    GB0905023D0 (en) 2009-03-24 2009-05-06 Univ Erasmus Medical Ct Binding molecules
    KR101456326B1 (en) 2009-04-07 2014-11-12 로슈 글리카트 아게 Trivalent, bispecific antibodies
    US8748581B2 (en) 2009-04-10 2014-06-10 Ablynx N.V. Anti-IL-6R polypeptides and pharmaceutical compositions thereof
    CN102459340A (en) * 2009-04-23 2012-05-16 特罗科隆科学有限公司 Granulocyte-macrophage colony-stimulating factor (gm-csf) neutralizing antibodies
    PT2424889E (en) 2009-04-30 2015-11-12 Ablynx Nv Method for the production of domain antibodies
    WO2010135558A1 (en) * 2009-05-20 2010-11-25 Novimmune S.A. Systhetic polypeptide libraries and methods for generating naturally diversified polypeptide variants
    CN102449149B (en) 2009-05-29 2014-04-23 莫佛塞斯公司 A collection and methods for its use
    SG176095A1 (en) 2009-06-05 2011-12-29 Ablynx Nv Monovalent, bivalent and trivalent anti human respiratory syncytial virus (hrsv) nanobody constructs for the prevention and/or treatment of respiratory tract infections
    US9676845B2 (en) 2009-06-16 2017-06-13 Hoffmann-La Roche, Inc. Bispecific antigen binding proteins
    EP2448972A4 (en) * 2009-06-30 2012-11-28 Res Dev Foundation Immunoglobulin fc polypeptides
    JP2012531212A (en) 2009-07-03 2012-12-10 アビペップ ピーティーワイ リミテッド Immunoconjugate and method for producing the same
    IE20090514A1 (en) 2009-07-06 2011-02-16 Opsona Therapeutics Ltd Humanised antibodies and uses therof
    WO2011003622A1 (en) 2009-07-10 2011-01-13 Ablynx N.V. Method for the production of variable domains
    AR077595A1 (en) 2009-07-27 2011-09-07 Genentech Inc COMBINATION TREATMENTS
    TWI465250B (en) 2009-08-29 2014-12-21 Abbvie Inc Therapeutic dll4 binding proteins
    JP5715137B2 (en) 2009-08-31 2015-05-07 アボット・ラボラトリーズAbbott Laboratories Biomarkers and their use for prediction of major adverse cardiac events
    EP2293072A1 (en) 2009-08-31 2011-03-09 Sanofi-Aventis Use of cathepsin H
    IN2012DN02737A (en) 2009-09-01 2015-09-11 Abbott Lab
    US9321823B2 (en) 2009-09-02 2016-04-26 Genentech, Inc. Mutant smoothened and methods of using the same
    EP2473527B1 (en) 2009-09-03 2016-11-30 Ablynx N.V. Stable formulations of polypeptides and uses thereof
    SG179135A1 (en) 2009-09-14 2012-05-30 Abbott Lab Methods for treating psoriasis
    CN104945509A (en) 2009-09-16 2015-09-30 弗·哈夫曼-拉罗切有限公司 Coiled coil and/or tether containing protein complexes and uses thereof
    US20110189183A1 (en) 2009-09-18 2011-08-04 Robert Anthony Williamson Antibodies against candida, collections thereof and methods of use
    GB201005063D0 (en) 2010-03-25 2010-05-12 Ucb Pharma Sa Biological products
    US8568726B2 (en) 2009-10-06 2013-10-29 Medimmune Limited RSV specific binding molecule
    US8518405B2 (en) 2009-10-08 2013-08-27 The University Of North Carolina At Charlotte Tumor specific antibodies and uses therefor
    KR20140015139A (en) 2009-10-15 2014-02-06 애브비 인코포레이티드 Dual variable domain immunoglobulins and uses thereof
    EP2488186B1 (en) 2009-10-16 2017-05-24 National University of Singapore Anti-neoplastic uses of artemin antagonists
    WO2011047680A1 (en) 2009-10-20 2011-04-28 Dako Denmark A/S Immunochemical detection of single target entities
    UY32979A (en) 2009-10-28 2011-02-28 Abbott Lab IMMUNOGLOBULINS WITH DUAL VARIABLE DOMAIN AND USES OF THE SAME
    JO3437B1 (en) 2009-10-30 2019-10-20 Esai R & D Man Co Ltd Improved anti human Fraktalkine antibodies and uses thereof
    US8420083B2 (en) 2009-10-31 2013-04-16 Abbvie Inc. Antibodies to receptor for advanced glycation end products (RAGE) and uses thereof
    US20110165648A1 (en) 2009-11-04 2011-07-07 Menno Van Lookeren Campagne Co-crystal structure of factor D and anti-factor D antibody
    EP2496600A1 (en) 2009-11-04 2012-09-12 Fabrus LLC Methods for affinity maturation-based antibody optimization
    WO2011058087A1 (en) 2009-11-11 2011-05-19 Gentian As Immunoassay for assessing related analytes of different origin
    EP2507262A1 (en) 2009-11-30 2012-10-10 Ablynx N.V. Improved amino acid sequences directed against human respiratory syncytial virus (hrsv) and polypeptides comprising the same for the prevention and/or treatment of respiratory tract infections
    EP3511023A1 (en) 2009-12-02 2019-07-17 Imaginab, Inc. J591 minibodies and cys-diabodies for targeting human prostate specific membrane antigen (psma) and methods for their use
    CN102656190A (en) 2009-12-08 2012-09-05 雅培股份有限两合公司 Monoclonal antibodies against the RGM A protein for use in the treatment of retinal nerve fiber layer degeneration
    ES2565208T3 (en) 2009-12-11 2016-04-01 F. Hoffmann-La Roche Ag Anti-VEGF-C antibodies and methods of use thereof
    EP2513145B1 (en) 2009-12-14 2018-01-24 Ablynx N.V. Single variable domain antibodies against ox40l, constructs and therapeutic use
    CN107095846A (en) 2009-12-21 2017-08-29 霍夫曼-拉罗奇有限公司 Antibody formulations
    MX2012007379A (en) 2009-12-23 2012-08-31 Genentech Inc Anti-bv8 antibodies and uses thereof.
    SG181814A1 (en) 2009-12-23 2012-07-30 Avipep Pty Ltd Immuno-conjugates and methods for producing them 2
    WO2011083140A1 (en) 2010-01-08 2011-07-14 Ablynx Nv Immunoglobulin single variable domain directed against human cxcr4
    AR079944A1 (en) 2010-01-20 2012-02-29 Boehringer Ingelheim Int NEUTRALIZING ANTIBODY OF THE ACTIVITY OF AN ANTICOAGULANT
    KR20130028055A (en) 2010-01-28 2013-03-18 글락소 그룹 리미티드 Cd127 binding proteins
    EP2354159A1 (en) 2010-02-05 2011-08-10 RWTH Aachen CCL17 inhibitors for use in T helper cell-driven diseases
    US9120855B2 (en) 2010-02-10 2015-09-01 Novartis Ag Biologic compounds directed against death receptor 5
    CN105380904A (en) 2010-02-11 2016-03-09 埃博灵克斯股份有限公司 Methods and compositions for the preparation of aerosols
    US9556249B2 (en) 2010-02-18 2017-01-31 Genentech, Inc. Neuregulin antagonists and use thereof in treating cancer
    EP2542582A4 (en) 2010-03-02 2013-12-04 Abbvie Inc Therapeutic dll4 binding proteins
    UA108227C2 (en) 2010-03-03 2015-04-10 ANTIGENCY PROTEIN
    GB201003701D0 (en) 2010-03-05 2010-04-21 Cilian Ag System for the expression of a protein
    AU2011227335B2 (en) 2010-03-17 2014-11-06 Abbott Research B.V. Anti-nerve growth factor (NGF) antibody compositions
    BR112012022044A2 (en) 2010-03-24 2020-08-25 Genentech Inc ''antibody, immunoconjugate, pharmaceutical formulation, antibody use, treatment method, isolated bispecific antibody and host cell''.
    US8937164B2 (en) 2010-03-26 2015-01-20 Ablynx N.V. Biological materials related to CXCR7
    TW201138821A (en) 2010-03-26 2011-11-16 Roche Glycart Ag Bispecific antibodies
    MX360403B (en) 2010-04-15 2018-10-31 Abbvie Inc Amyloid-beta binding proteins.
    EP4234698A3 (en) 2010-05-06 2023-11-08 Novartis AG Compositions and methods of use for therapeutic low density lipoprotein-related protein 6 (lrp6) antibodies
    BR112012028326A2 (en) 2010-05-06 2017-03-21 Novartis Ag isolated multivalent antibody, isolated biparatopic antibodies, nucleic acid, vector, pharmaceutical composition, method of obtaining said antibodies and use thereof
    EP2571532B1 (en) 2010-05-14 2017-05-03 Abbvie Inc. Il-1 binding proteins
    EP3546483A1 (en) 2010-05-20 2019-10-02 Ablynx N.V. Biological materials related to her3
    EP2577309B1 (en) 2010-05-25 2016-11-23 Carnegie Mellon University Targeted probes of cellular physiology
    WO2011147834A1 (en) 2010-05-26 2011-12-01 Roche Glycart Ag Antibodies against cd19 and uses thereof
    AR081556A1 (en) 2010-06-03 2012-10-03 Glaxo Group Ltd HUMANIZED ANTIGEN UNION PROTEINS
    KR20130098165A (en) 2010-06-03 2013-09-04 제넨테크, 인크. Immuno-pet imaging of antibodies and immunoconjugates and uses therefor
    WO2011161545A2 (en) 2010-06-04 2011-12-29 The Netherlands Cancer Institute Non-hydrolyzable protein conjugates, methods and compositions related thereto
    WO2011158019A1 (en) 2010-06-16 2011-12-22 Adjuvantix Limited Polypeptide vaccine
    MX336001B (en) 2010-06-18 2016-01-07 Genentech Inc Anti-axl antibodies and methods of use.
    WO2011161119A1 (en) 2010-06-22 2011-12-29 F. Hoffmann-La Roche Ag Antibodies against insulin-like growth factor i receptor and uses thereof
    WO2011161189A1 (en) 2010-06-24 2011-12-29 F. Hoffmann-La Roche Ag Anti-hepsin antibodies and methods of use
    WO2011161263A1 (en) 2010-06-25 2011-12-29 Ablynx Nv Pharmaceutical compositions for cutaneous administration
    WO2012006500A2 (en) 2010-07-08 2012-01-12 Abbott Laboratories Monoclonal antibodies against hepatitis c virus core protein
    UY33492A (en) 2010-07-09 2012-01-31 Abbott Lab IMMUNOGLOBULINS WITH DUAL VARIABLE DOMAIN AND USES OF THE SAME
    SG186983A1 (en) 2010-07-09 2013-02-28 Genentech Inc Anti-neuropilin antibodies and methods of use
    EP2591006B1 (en) 2010-07-09 2019-04-24 Bioverativ Therapeutics Inc. Processable single chain molecules and polypeptides made using same
    US20120100166A1 (en) 2010-07-15 2012-04-26 Zyngenia, Inc. Ang-2 Binding Complexes and Uses Thereof
    MX341309B (en) 2010-07-20 2016-08-12 Cephalon Australia Pty Ltd Anti-il-23 heterodimer specific antibodies.
    WO2012010582A1 (en) 2010-07-21 2012-01-26 Roche Glycart Ag Anti-cxcr5 antibodies and methods of use
    US9120862B2 (en) 2010-07-26 2015-09-01 Abbott Laboratories Antibodies relating to PIVKA-II and uses thereof
    CA2806855A1 (en) 2010-08-03 2012-02-09 F. Hoffmann - La Roche Ag Chronic lymphocytic leukemia (cll) biomarkers
    CA2807014A1 (en) 2010-08-03 2012-02-09 Abbvie Inc. Dual variable domain immunoglobulins and uses thereof
    JP2013541937A (en) 2010-08-05 2013-11-21 エフ.ホフマン−ラ ロシュ アーゲー Anti-MHC antibody-antiviral cytokine fusion protein
    HUE036077T2 (en) 2010-08-13 2018-06-28 Roche Glycart Ag Anti-fap antibodies and methods of use
    WO2012020096A1 (en) 2010-08-13 2012-02-16 Medimmune Limited Monomeric polypeptides comprising variant fc regions and methods of use
    BR112013002444A2 (en) 2010-08-13 2016-05-24 Roche Glycart Ag isolated antibody, polynucleotide and polypeptide, composition, vector, host cell, antibody conjugate, pharmaceutical formulation, use of the antibody, methods of producing an antibody, treating an individual, inducing cell lysis of a tumor cell and diagnosing a disease in an individual
    JP6147665B2 (en) 2010-08-14 2017-06-14 アッヴィ・インコーポレイテッド Amyloid beta-binding protein
    WO2012022734A2 (en) 2010-08-16 2012-02-23 Medimmune Limited Anti-icam-1 antibodies and methods of use
    RS63063B1 (en) 2010-08-19 2022-04-29 Zoetis Belgium S A Anti-ngf antibodies and their use
    EA036314B1 (en) 2010-08-20 2020-10-26 Новартис Аг Antibodies for epidermal growth factor receptor 3 (her3)
    CN103068846B9 (en) 2010-08-24 2016-09-28 弗·哈夫曼-拉罗切有限公司 Bispecific antibodies comprising disulfide-stabilized Fv fragments
    TW201215405A (en) 2010-08-25 2012-04-16 Hoffmann La Roche Antibodies against IL-18R1 and uses thereof
    TW201211252A (en) 2010-08-26 2012-03-16 Abbott Lab Dual variable domain immunoglobulins and uses thereof
    EP3556396B1 (en) 2010-08-31 2022-04-20 Theraclone Sciences, Inc. Human immunodeficiency virus (hiv)-neutralizing antibodies
    US20120089541A1 (en) 2010-08-31 2012-04-12 Genentech, Inc. Biomarkers and methods of treatment
    JP6121904B2 (en) 2010-09-08 2017-04-26 ハロザイム インコーポレイテッド Methods for evaluating and identifying or developing conditionally active therapeutic proteins
    SG10201506906VA (en) 2010-09-09 2015-10-29 Pfizer 4-1bb binding molecules
    WO2012038744A2 (en) 2010-09-22 2012-03-29 Genome Research Limited Detecting mutations
    US8497138B2 (en) 2010-09-30 2013-07-30 Genetix Limited Method for cell selection
    GB201016494D0 (en) 2010-09-30 2010-11-17 Queen Mary Innovation Ltd Polypeptide
    EP2625197B1 (en) 2010-10-05 2016-06-29 Genentech, Inc. Mutant smoothened and methods of using the same
    NO2632946T3 (en) 2010-10-29 2018-05-05
    JP6167040B2 (en) 2010-11-05 2017-07-19 ザイムワークス,インコーポレイテッド Design of stable heterodimeric antibodies with mutations in the Fc domain
    EP2638068B1 (en) 2010-11-08 2018-12-26 Novartis AG Cxcr2 binding polypeptides
    US10180426B2 (en) 2010-11-08 2019-01-15 Dako Denmark A/S Quantification of single target molecules in histological samples
    AR083819A1 (en) 2010-11-10 2013-03-27 Genentech Inc AN ANTIBODY THAT JOINS BACE1 (ENZYME 1 OF DISSOLATION OF PROTEIN PRECURSORY OF THE SITE AMILOID), METHODS AND COMPOSITIONS FOR IMMUNOTHERAPY FOR NEURAL DISEASE
    JP6253986B2 (en) 2010-11-19 2017-12-27 モルフォシス・アーゲー Collection and its usage
    WO2012076010A1 (en) 2010-12-06 2012-06-14 Dako Denmark A/S Combined histological stain
    BR112013013460A8 (en) 2010-12-16 2019-02-12 Genentech Inc methods for identifying an asthma patient, method for monitoring an asthma patient, use of a total periostin detection kit, total periostin measurement kit, use of an anti-il-13 antibody, use of a therapeutically amount lebrikizumab therapy, use of a th2 pathway inhibitor, adverse event evaluation method, anti-periostin antibody, and total periostin test
    TW201238974A (en) 2010-12-17 2012-10-01 Sanofi Sa MiRNAs in joint disease
    TW201238973A (en) 2010-12-17 2012-10-01 Sanofi Sa MiRNAs in joint disease
    TW201239097A (en) 2010-12-17 2012-10-01 Sanofi Sa MiRNAs in joint disease
    TW201241179A (en) 2010-12-17 2012-10-16 Sanofi Sa MiRNAs in joint disease
    CN107098972A (en) 2010-12-20 2017-08-29 霍夫曼-拉罗奇有限公司 Anti-mesothelin antibodies and immunoconjugates
    US9631002B2 (en) 2010-12-21 2017-04-25 The University Of North Carolina At Chapel Hill Methods and compositions for producing active vitamin K-dependent proteins
    RU2627171C2 (en) 2010-12-21 2017-08-03 Эббви Инк. Il-1 alpha and beta bispecific immunoglobulins with double variable domains and their application
    TW201307388A (en) 2010-12-21 2013-02-16 Abbott Lab IL-1 binding proteins
    EA201390929A1 (en) 2010-12-22 2013-12-30 Дженентек, Инк. ANTIBODIES TO PCSK9 AND METHODS OF THEIR APPLICATION
    WO2012085069A2 (en) 2010-12-23 2012-06-28 Roche Diagnostics Gmbh Detection of a polypeptide dimer by a bivalent binding agent
    CN103384825B (en) 2010-12-23 2017-05-24 霍夫曼-拉罗奇有限公司 Detection of a posttranslationally modified polypeptide by a bi-valent binding agent
    EP2655413B1 (en) 2010-12-23 2019-01-16 F.Hoffmann-La Roche Ag Polypeptide-polynucleotide-complex and its use in targeted effector moiety delivery
    CN103384681B (en) 2010-12-23 2018-05-18 霍夫曼-拉罗奇有限公司 Bonding agent
    EP2471554A1 (en) 2010-12-28 2012-07-04 Hexal AG Pharmaceutical formulation comprising a biopharmaceutical drug
    JP2014504503A (en) 2010-12-28 2014-02-24 ゾーマ テクノロジー リミテッド Cell surface display using PDZ domains
    AU2012214643B2 (en) 2011-02-07 2016-12-15 Research Development Foundation Engineered immunoglobulin Fc polypeptides
    CN103476433A (en) 2011-02-10 2013-12-25 罗切格利卡特公司 Improved immunotherapy
    CA2827170A1 (en) 2011-02-11 2012-08-16 David M. Hilbert Monovalent and multivalent multispecific complexes and uses thereof
    EP2681239B8 (en) 2011-02-28 2015-09-09 F. Hoffmann-La Roche AG Antigen binding proteins
    EP2681240B1 (en) 2011-02-28 2017-08-16 F. Hoffmann-La Roche AG Monovalent antigen binding proteins
    EP2686016B1 (en) 2011-03-14 2019-05-01 Cellmid Limited Antibody recognizing n-domain of midkine
    PL3235508T3 (en) 2011-03-16 2021-07-12 Sanofi Compositions comprising a dual v region antibody-like protein
    PT2691415T (en) 2011-03-28 2018-10-19 Ablynx Nv Method for producing solid formulations comprising immunoglobulin single variable domains
    EP2691418A1 (en) 2011-03-28 2014-02-05 Ablynx N.V. Bispecific anti-cxcr7 immunoglobulin single variable domains
    EP3590965A1 (en) 2011-03-29 2020-01-08 Roche Glycart AG Antibody fc variants
    AP2013007046A0 (en) 2011-03-30 2013-08-31 Boehringer Ingelheim Int Anticoagulant antidotes
    MX342240B (en) 2011-04-07 2016-09-21 Genentech Inc Anti-fgfr4 antibodies and methods of use.
    EP2511293A1 (en) 2011-04-13 2012-10-17 LEK Pharmaceuticals d.d. A method for controlling the main complex N-glycan structures and the acidic variants and variability in bioprocesses producing recombinant proteins
    EP2699691B1 (en) 2011-04-19 2017-10-18 Dako Denmark A/S New method for enzyme-mediated signal amplification
    CA2828662A1 (en) 2011-04-20 2012-10-26 Roche Glycart Ag Method and constructs for the ph dependent passage of the blood-brain-barrier
    JP6038121B2 (en) 2011-04-21 2016-12-07 ガーバン インスティテュート オブ メディカル リサーチ Modified variable domain molecules and methods for their production and use B
    EP2518157A1 (en) 2011-04-26 2012-10-31 Sanofi Test Systems and methods for identifying a compound altering cellular DDR activity
    WO2012149197A2 (en) 2011-04-27 2012-11-01 Abbott Laboratories Methods for controlling the galactosylation profile of recombinantly-expressed proteins
    EA201892619A1 (en) 2011-04-29 2019-04-30 Роше Гликарт Аг IMMUNOCONJUGATES CONTAINING INTERLEUKIN-2 MUTANT POLYPETIPS
    UA117218C2 (en) 2011-05-05 2018-07-10 Мерк Патент Гмбх Amino acid sequences directed against il-17a, il-17f and/or il17-a/f and polypeptides comprising the same
    GB201114858D0 (en) 2011-08-29 2011-10-12 Nvip Pty Ltd Anti-nerve growth factor antibodies and methods of using the same
    HRP20211869T1 (en) 2011-05-06 2022-03-04 Zoetis Services Llc Anti-nerve growth factor antibodies and methods of preparing and using the same
    CA2835094C (en) 2011-05-06 2020-12-22 David Gearing Anti-nerve growth factor antibodies and methods of preparing and using the same
    KR101783929B1 (en) 2011-05-06 2017-10-11 넥스베트 오스트레일리아 피티와이 리미티드 Anti-nerve growth factor antibodies and methods of preparing and using the same
    ES2704007T3 (en) 2011-05-06 2019-03-13 Nexvet Australia Pty Ltd Anti-nerve growth factor antibodies and procedures for preparing and using them
    EP2707382B1 (en) 2011-05-09 2019-07-17 Ablynx NV Method for the production of immunoglobulin single variable domains
    JP5987053B2 (en) 2011-05-12 2016-09-06 ジェネンテック, インコーポレイテッド Multiple reaction monitoring LC-MS / MS method for detecting therapeutic antibodies in animal samples using framework signature peptides
    AR090017A1 (en) 2011-05-16 2014-10-15 Genentech Inc FGFR1 AGONISTS AND THEIR METHODS OF USE
    MX358099B (en) 2011-05-17 2018-08-06 Univ Rockefeller Human immunodeficiency virus neutralizing antibodies adn methods of use thereof.
    CN103857699B (en) 2011-05-24 2016-08-31 泽恩格尼亚股份有限公司 Multivalence and unit price polyspecific complex and application thereof
    CN108329391A (en) 2011-05-27 2018-07-27 埃博灵克斯股份有限公司 Inhibit bone absorption using RANKL binding peptides
    DK2718320T3 (en) 2011-06-10 2018-03-26 Medimmune Ltd ANTI-PSEUDOMONAS-PSL BINDING MOLECULES AND APPLICATIONS THEREOF
    WO2012171057A1 (en) 2011-06-13 2012-12-20 Csl Limited Antibodies against g-csfr and uses thereof
    CN103596984B (en) 2011-06-15 2016-04-13 霍夫曼-拉罗奇有限公司 The antibody of Anti-human EPO receptor and using method
    EP2537532A1 (en) 2011-06-22 2012-12-26 J. Stefan Institute Cathepsin-binding compounds bound to a nanodevice and their diagnostic and therapeutic use
    EP4350345A2 (en) 2011-06-23 2024-04-10 Ablynx N.V. Techniques for predicting, detecting and reducing aspecific protein interference in assays involving immunoglobin single variable domains
    EP2944654A1 (en) 2011-06-23 2015-11-18 Ablynx N.V. Techniques for predicting, detecting and reducing aspecific protein interference in assays involving immunoglobin single variable domains
    US20180009888A9 (en) 2011-06-23 2018-01-11 Ablynx N.V. Techniques for predicting, detecting and reducing aspecific protein interference in assays involving immunoglobulin single variable domains
    JP2014525736A (en) 2011-06-23 2014-10-02 アブリンクス エン.ヴェー. Immunoglobulin single variable domain for IgE
    US20130004484A1 (en) 2011-06-30 2013-01-03 Genentech, Inc. Anti-c-met antibody formulations
    SG10201505454SA (en) 2011-07-13 2015-09-29 Abbvie Inc Methods and compositions for treating asthma using anti-il-13 antibodies
    US9738707B2 (en) 2011-07-15 2017-08-22 Biogen Ma Inc. Heterodimeric Fc regions, binding molecules comprising same, and methods relating thereto
    KR20140057326A (en) 2011-08-17 2014-05-12 제넨테크, 인크. Neuregulin antibodies and uses thereof
    US20130078250A1 (en) 2011-08-23 2013-03-28 Oliver Ast Bispecific t cell activating antigen binding molecules
    HUE038225T2 (en) 2011-08-23 2018-10-29 Roche Glycart Ag Bispecific t cell activating antigen binding molecules
    US20130058937A1 (en) 2011-08-23 2013-03-07 Johannes Auer Bispecific antigen binding molecules
    CA2844141A1 (en) 2011-08-23 2013-02-28 Roche Glycart Ag Anti-mcsp antibodies
    RU2605390C2 (en) 2011-08-23 2016-12-20 Рош Гликарт Аг Bispecific antibodies specific for t-cell activating antigens and a tumor antigen and methods of use
    US8822651B2 (en) 2011-08-30 2014-09-02 Theraclone Sciences, Inc. Human rhinovirus (HRV) antibodies
    EP2751139A1 (en) 2011-08-30 2014-07-09 NVIP Pty Ltd Caninised tumour necrosis factor antibodies and methods of using the same
    US9447192B2 (en) 2011-09-09 2016-09-20 Medimmune Limited Anti-Siglec-15 antibodies and uses thereof
    EP2756005B1 (en) 2011-09-14 2016-03-02 Abeterno Technologies Limited Intracellular cell selection
    MX2014003094A (en) 2011-09-15 2014-04-25 Genentech Inc Methods of promoting differentiation.
    AU2012311234B2 (en) 2011-09-19 2017-09-28 Axon Neuroscience Se Protein-based therapy and diagnosis of tau-mediated pathology in Alzheimer's disease
    GB201116116D0 (en) 2011-09-19 2011-11-02 Univ York Cell differentiation
    SG11201400724SA (en) 2011-09-19 2014-04-28 Genentech Inc Combination treatments comprising c-met antagonists and b-raf antagonists
    EP2747782B1 (en) 2011-09-23 2018-01-17 Ablynx NV Prolonged inhibition of interleukin-6 mediated signaling
    GB201116702D0 (en) 2011-09-28 2011-11-09 Procure Therapeutics Ltd Cell surface markers
    WO2013044298A1 (en) 2011-09-30 2013-04-04 Cephalon Australia Pty Ltd Antibodies against tl1a and uses thereof
    MX2014004074A (en) 2011-10-05 2014-06-05 Genentech Inc Methods of treating liver conditions using notch2 antagonists.
    US9575073B2 (en) 2011-10-10 2017-02-21 Rutgers, The State University Of New Jersey Detection of high-risk intraductal papillary mucinous neoplasm and pancreatic adenocarcinoma
    BR112014008862A2 (en) 2011-10-14 2018-08-07 Genentech Inc isolated antibody that binds to htra1, isolated nucleic acid, host cell, immunoconjugate, pharmaceutical formulation, methods and uses
    CA2850836A1 (en) 2011-10-15 2013-04-18 Genentech, Inc. Methods of using scd1 antagonists
    WO2013059531A1 (en) 2011-10-20 2013-04-25 Genentech, Inc. Anti-gcgr antibodies and uses thereof
    RU2014120981A (en) 2011-10-24 2015-12-10 Эббви Инк. IMMUNE BINDING AGENTS AGAINST SCLEROSTINE
    KR20140084253A (en) 2011-10-24 2014-07-04 애브비 인코포레이티드 Immunobinders directed against tnf
    MX2014004980A (en) 2011-10-24 2014-09-11 Abbvie Inc Bispecific immunobinders directed against tnf and il-17.
    GB201118359D0 (en) 2011-10-25 2011-12-07 Univ Sheffield Pulmonary hypertension
    WO2013063001A1 (en) 2011-10-28 2013-05-02 Genentech, Inc. Therapeutic combinations and methods of treating melanoma
    JP2015504413A (en) 2011-10-28 2015-02-12 パトリス リミテッド PAT-LM1 epitope and methods for using the same
    KR102037541B1 (en) 2011-10-28 2019-10-29 테바 파마슈티컬즈 오스트레일리아 피티와이 엘티디 Polypeptide constructs and uses thereof
    GB201118840D0 (en) 2011-11-01 2011-12-14 Univ Sheffield Pulmonary hypertension II
    EP3252075A1 (en) 2011-11-04 2017-12-06 Novartis AG Low density lipoprotein-related protein 6 (lrp6) - half life extender constructs
    PL2773671T3 (en) 2011-11-04 2022-01-24 Zymeworks Inc. Stable heterodimeric antibody design with mutations in the fc domain
    CA2856216C (en) 2011-11-11 2021-01-12 Ucb Pharma S.A. Albumin binding antibodies and binding fragments thereof
    RU2014124842A (en) 2011-11-21 2015-12-27 Дженентек, Инк. CLEANING ANTI-C-MET ANTIBODIES
    CA2854042A1 (en) 2011-11-29 2013-06-06 Genentech, Inc. Compositions and methods for prostate cancer analysis
    WO2013080050A2 (en) 2011-11-30 2013-06-06 Universitaetsklinikum Erlangen Methods and compositions for determining responsiveness to treatment with a tnf-alpha inhibitor
    WO2013084148A2 (en) 2011-12-05 2013-06-13 Novartis Ag Antibodies for epidermal growth factor receptor 3 (her3) directed to domain ii of her3
    EA036739B1 (en) 2011-12-05 2020-12-15 Новартис Аг Antibodies for epidermal growth factor receptor 3 (her3)
    WO2013083497A1 (en) 2011-12-06 2013-06-13 F. Hoffmann-La Roche Ag Antibody formulation
    MX355624B (en) 2011-12-22 2018-04-25 Hoffmann La Roche Expression vector element combinations, novel production cell generation methods and their use for the recombinant production of polypeptides.
    SI2794878T1 (en) 2011-12-22 2020-07-31 F. Hoffmann-La Roche Ag Expression vector organization, novel production cell generation methods and their use for the recombinant production of polypeptides
    AR089434A1 (en) 2011-12-23 2014-08-20 Genentech Inc PROCEDURE TO PREPARE FORMULATIONS WITH HIGH CONCENTRATION OF PROTEINS
    UY34558A (en) 2011-12-30 2013-07-31 Abbvie Inc DUAL SPECIFIC UNION PROTEINS DIRECTED AGAINST IL-13 AND / OR IL-17
    CN104411717A (en) 2012-01-09 2015-03-11 斯克利普斯研究所 Humanized antibodies with ultralong CDR3S
    AU2013208003B2 (en) 2012-01-09 2017-12-14 The Scripps Research Institute Ultralong complementarity determining regions and uses thereof
    PL2802606T3 (en) 2012-01-10 2018-09-28 Biogen Ma Inc. Enhancement of transport of therapeutic molecules across the blood brain barrier
    NZ626520A (en) 2012-01-18 2016-09-30 Genentech Inc Anti-lrp5 antibodies and methods of use
    RU2014133547A (en) 2012-01-18 2016-03-10 Дженентек, Инк. WAYS OF APPLICATION OF FGF19 MODULATORS
    IL305223A (en) 2012-01-27 2023-10-01 Abbvie Inc Composition and method for diagnosis and treatment of diseases associated with neurite degeneration
    WO2013113641A1 (en) 2012-01-31 2013-08-08 Roche Glycart Ag Use of nkp46 as a predictive biomarker for cancer treatment with adcc- enhanced antibodies
    BR112014019579A2 (en) 2012-02-10 2019-10-15 Genentech, Inc SINGLE CHAIN ANTIBODY, POLYNUCLEOTIDE, VECTOR, HOST CELL, METHOD OF PRODUCTION OF A SINGLE CHAIN ANTIBODY, HETEROMULTYMER AND METHOD OF PRODUCTION
    AU2013216753B2 (en) 2012-02-11 2017-09-21 Genentech, Inc. R-spondin translocations and methods using the same
    CA3159061A1 (en) 2012-02-15 2013-08-22 F. Hoffmann-La Roche Ag Fc-receptor based affinity chromatography
    GB201203071D0 (en) 2012-02-22 2012-04-04 Ucb Pharma Sa Biological products
    GB201203587D0 (en) 2012-03-01 2012-04-11 Univ Warwick Modified bacterial cell
    BR112014018374A8 (en) 2012-03-02 2017-07-11 Roche Glycart Ag METHOD FOR PREDICTING THE RESPONSE OF A PATIENT WITH CANCER, KIT, ANTIBODY, METHOD FOR THE TREATMENT OF CANCER AND PHARMACEUTICAL COMPOSITION
    US9592289B2 (en) 2012-03-26 2017-03-14 Sanofi Stable IgG4 based binding agent formulations
    EP2831115A1 (en) 2012-03-27 2015-02-04 F. Hoffmann-La Roche AG Diagnosis and treatments relating to her3 inhibitors
    ES2678211T3 (en) 2012-03-27 2018-08-09 Ventana Medical Systems, Inc. Signaling conjugates and use procedures
    AR090549A1 (en) 2012-03-30 2014-11-19 Genentech Inc ANTI-LGR5 AND IMMUNOCATE PLAYERS
    WO2013158273A1 (en) 2012-04-20 2013-10-24 Abbvie Inc. Methods to modulate c-terminal lysine variant distribution
    US9334319B2 (en) 2012-04-20 2016-05-10 Abbvie Inc. Low acidic species compositions
    US9067990B2 (en) 2013-03-14 2015-06-30 Abbvie, Inc. Protein purification using displacement chromatography
    MX2014012889A (en) 2012-05-01 2014-11-14 Genentech Inc Anti-pmel17 antibodies and immunoconjugates.
    US9328174B2 (en) 2012-05-09 2016-05-03 Novartis Ag Chemokine receptor binding polypeptides
    JP6351572B2 (en) 2012-05-10 2018-07-04 ザイムワークス,インコーポレイテッド Heteromultimeric constructs of immunoglobulin heavy chains with mutations in the Fc domain
    WO2013170191A1 (en) 2012-05-11 2013-11-14 Genentech, Inc. Methods of using antagonists of nad biosynthesis from nicotinamide
    JP2015518829A (en) 2012-05-14 2015-07-06 バイオジェン・エムエイ・インコーポレイテッドBiogen MA Inc. LINGO-2 antagonist for treatment of conditions involving motor neurons
    EP2666786A1 (en) 2012-05-21 2013-11-27 PAION Deutschland GmbH Immunotherapy for intracranial hemorrhage
    CA2870876C (en) 2012-05-23 2019-10-01 Genentech, Inc. Selection method for therapeutic agents
    WO2013176754A1 (en) 2012-05-24 2013-11-28 Abbvie Inc. Novel purification of antibodies using hydrophobic interaction chromatography
    JP5868549B2 (en) 2012-05-24 2016-02-24 マウントゲイト グループ リミテッド Compositions and methods for the prevention and treatment of rabies infections
    CA2875096A1 (en) 2012-06-15 2013-12-19 Genentech, Inc. Anti-pcsk9 antibodies, formulations, dosing, and methods of use
    US9499634B2 (en) 2012-06-25 2016-11-22 Zymeworks Inc. Process and methods for efficient manufacturing of highly pure asymmetric antibodies in mammalian cells
    WO2014001325A1 (en) 2012-06-27 2014-01-03 F. Hoffmann-La Roche Ag Method for making antibody fc-region conjugates comprising at least one binding entity that specifically binds to a target and uses thereof
    RU2639287C2 (en) 2012-06-27 2017-12-20 Ф. Хоффманн-Ля Рош Аг Method for selection and obtaining of highly selective and multispecific targeting groups with specified properties, including at least two different binding groups, and their applications
    WO2014001326A1 (en) 2012-06-27 2014-01-03 F. Hoffmann-La Roche Ag Method for the selection and production of tailor-made, selective and multi-specific therapeutic molecules comprising at least two different targeting entities and uses thereof
    CN104428006B (en) 2012-07-04 2017-09-08 弗·哈夫曼-拉罗切有限公司 The antigen-antibody conjugate of covalent attachment
    CN104411725B (en) 2012-07-04 2018-09-28 弗·哈夫曼-拉罗切有限公司 Anti-biotin antibodies and application method
    EP3138578B1 (en) 2012-07-04 2022-01-12 F. Hoffmann-La Roche AG Anti-theophylline antibodies and methods of use
    SI2870247T1 (en) 2012-07-05 2019-10-30 Hoffmann La Roche Expression and secretion system
    SG11201500096YA (en) 2012-07-09 2015-02-27 Genentech Inc Immunoconjugates comprising anti - cd79b antibodies
    IN2014DN10652A (en) 2012-07-09 2015-09-11 Genentech Inc
    BR112015000441A2 (en) 2012-07-09 2017-12-19 Genentech Inc Immunoconjugates, Pharmaceutical Formulation and Treatment Method and Method for Inhibiting Proliferation of a CD22 Positive Cell
    AR091701A1 (en) 2012-07-09 2015-02-25 Genentech Inc ANTI-CD22 ANTIBODIES AND IMMUNOCATE PLAYERS
    UY34905A (en) 2012-07-12 2014-01-31 Abbvie Inc IL-1 UNION PROTEINS
    JP6154900B2 (en) 2012-07-13 2017-06-28 ロシュ グリクアート アクチェンゲゼルシャフト Bispecific anti-VEGF / anti-ANG-2 antibodies and their use in the treatment of ocular vascular diseases
    CN112587658A (en) 2012-07-18 2021-04-02 博笛生物科技有限公司 Targeted immunotherapy for cancer
    MX365382B (en) 2012-08-07 2019-05-31 Roche Glycart Ag Composition comprising two antibodies engineered to have reduced and increased effector function.
    WO2014023673A1 (en) 2012-08-08 2014-02-13 Roche Glycart Ag Interleukin-10 fusion proteins and uses thereof
    MX2015001678A (en) 2012-08-09 2015-08-14 Roche Glycart Ag Asgpr antibodies and uses thereof.
    US9512214B2 (en) 2012-09-02 2016-12-06 Abbvie, Inc. Methods to control protein heterogeneity
    KR20150043523A (en) 2012-09-02 2015-04-22 애브비 인코포레이티드 Methods to control protein heterogeneity
    KR20150064068A (en) 2012-10-08 2015-06-10 로슈 글리카트 아게 FC-FREE ANTIBODIES COMPRISING TWO Fab-FRAGMENTS AND METHODS OF USE
    IL301018A (en) 2012-10-18 2023-05-01 Univ Rockefeller Broadly-neutralizing anti-hiv antibodies
    US9688741B2 (en) 2012-10-23 2017-06-27 Elastagen Pty Ltd Elastic hydrogel
    AU2013337775B2 (en) 2012-11-01 2017-03-30 Abbvie Inc. Anti-VEGF/DLL4 dual variable domain immunoglobulins and uses thereof
    WO2014071358A2 (en) 2012-11-05 2014-05-08 Foundation Medicine, Inc. Novel ntrk1 fusion molecules and uses thereof
    CN104755500B (en) 2012-11-08 2020-10-02 霍夫曼-拉罗奇有限公司 HER3 antigen binding proteins that bind to the HER3 beta-hairpin
    ES2701746T3 (en) 2012-11-13 2019-02-25 Hoffmann La Roche Anti-hemagglutinin antibodies and methods of use
    US9914785B2 (en) 2012-11-28 2018-03-13 Zymeworks Inc. Engineered immunoglobulin heavy chain-light chain pairs and uses thereof
    CN105246520B (en) 2012-12-10 2017-11-21 埃拉斯塔根私人有限公司 Scalable three dimensional elasticity construct manufacture
    US9550986B2 (en) 2012-12-21 2017-01-24 Abbvie Inc. High-throughput antibody humanization
    EP2938637A2 (en) 2012-12-28 2015-11-04 AbbVie Inc. Multivalent binding protein compositions
    EP2945652B1 (en) 2013-01-18 2021-07-07 Foundation Medicine, Inc. Methods of treating cholangiocarcinoma
    EP2948177A1 (en) 2013-01-22 2015-12-02 AbbVie Inc. Methods for optimizing domain stability of binding proteins
    WO2014116749A1 (en) 2013-01-23 2014-07-31 Genentech, Inc. Anti-hcv antibodies and methods of using thereof
    WO2014116846A2 (en) 2013-01-23 2014-07-31 Abbvie, Inc. Methods and compositions for modulating an immune response
    WO2014114595A1 (en) 2013-01-23 2014-07-31 Roche Glycart Ag Predictive biomarker for cancer treatment with adcc-enhanced antibodies
    KR102204127B1 (en) 2013-02-01 2021-01-20 키라 바이오테크 피티와이 리미티드 Anti-cd83 antibodies and use thereof
    SG11201505762XA (en) 2013-02-07 2015-08-28 Csl Ltd Il-11r binding proteins and uses thereof
    US20140228875A1 (en) 2013-02-08 2014-08-14 Nidus Medical, Llc Surgical device with integrated visualization and cauterization
    JP2016509045A (en) 2013-02-22 2016-03-24 エフ・ホフマン−ラ・ロシュ・アクチェンゲゼルシャフト How to treat cancer and prevent drug resistance
    RU2015140921A (en) 2013-02-26 2017-04-03 Роше Гликарт Аг ANTIBODIES TO MCSP
    DK2961771T3 (en) 2013-02-26 2020-03-02 Roche Glycart Ag Bispecific, T cell-activating, antigen-binding molecules specific for CD3 and CEA
    RU2015140917A (en) 2013-02-26 2017-04-03 Роше Гликарт Аг BSPECIFIC ANTI-BINDING MOLECULES ACTIVATING T-CELLS
    EP3444278A1 (en) 2013-02-26 2019-02-20 Roche Glycart AG Bispecific t cell activating antigen binding molecules
    US9925240B2 (en) 2013-03-06 2018-03-27 Genentech, Inc. Methods of treating and preventing cancer drug resistance
    SG11201507230PA (en) 2013-03-12 2015-10-29 Abbvie Inc Human antibodies that bind human tnf-alpha and methods of preparing the same
    US10653779B2 (en) 2013-03-13 2020-05-19 Genentech, Inc. Formulations with reduced oxidation
    BR112015022210A8 (en) 2013-03-13 2018-01-23 Genentech Inc antibody formulations
    US20140314778A1 (en) 2013-03-13 2014-10-23 Genentech, Inc. Formulations with reduced oxidation
    ES2843786T3 (en) 2013-03-13 2021-07-20 Seagen Inc Activated Carbon Filtration for Benzodiazepine ADC Purification
    MX370416B (en) 2013-03-13 2019-12-10 Genentech Inc Formulations with reduced oxidation.
    JP6389236B2 (en) 2013-03-13 2018-09-12 ジェネンテック, インコーポレイテッド Redox preparation
    WO2014159579A1 (en) 2013-03-14 2014-10-02 Abbvie Inc. MUTATED ANTI-TNFα ANTIBODIES AND METHODS OF THEIR USE
    KR20150127199A (en) 2013-03-14 2015-11-16 제넨테크, 인크. Anti-b7-h4 antibodies and immunoconjugates
    SG11201507477XA (en) 2013-03-14 2015-10-29 Genentech Inc Combinations of a mek inhibitor compound with an her3/egfr inhibitor compound and methods of use
    CN105246916A (en) 2013-03-14 2016-01-13 诺华股份有限公司 Antibodies against notch 3
    CN105307683A (en) 2013-03-14 2016-02-03 基因泰克公司 Methods of treating cancer and preventing cancer drug resistance
    US9562099B2 (en) 2013-03-14 2017-02-07 Genentech, Inc. Anti-B7-H4 antibodies and immunoconjugates
    EP3916103A1 (en) 2013-03-14 2021-12-01 Abbott Laboratories Hcv core lipid binding domain monoclonal antibodies
    US9017687B1 (en) 2013-10-18 2015-04-28 Abbvie, Inc. Low acidic species compositions and methods for producing and using the same using displacement chromatography
    BR112015023355A8 (en) 2013-03-14 2018-01-30 Abbott Lab hcv ns3 recombinant antigens and mutants thereof for enhanced antibody detection.
    CA2906421C (en) 2013-03-14 2022-08-16 George J. Dawson Hcv antigen-antibody combination assay and methods and compositions for use therein
    WO2014151878A2 (en) 2013-03-14 2014-09-25 Abbvie Inc. Methods for modulating protein glycosylation profiles of recombinant protein therapeutics using monosaccharides and oligosacharides
    WO2014144850A1 (en) 2013-03-15 2014-09-18 Genentech, Inc. Methods of treating cancer and preventing cancer drug resistance
    RU2701378C2 (en) 2013-03-15 2019-09-26 Дженентек, Инк. Biomarkers and methods of treating associated with pd-1 and pd-l1 conditions
    US10993420B2 (en) 2013-03-15 2021-05-04 Erasmus University Medical Center Production of heavy chain only antibodies in transgenic mammals
    RU2015144020A (en) 2013-03-15 2017-04-21 Дженентек, Инк. ENVIRONMENTS FOR CULTIVATION OF CELLS AND METHODS FOR PRODUCING ANTIBODIES
    CA2907181C (en) 2013-03-15 2023-10-17 Viktor Roschke Multivalent and monovalent multispecific complexes and their uses
    AU2014236769B2 (en) 2013-03-15 2018-09-27 Amgen Inc. Heterodimeric bispecific antibodies
    AU2014228172B2 (en) 2013-03-15 2018-12-06 Abbvie Deutschland Gmbh & Co.Kg Anti-EGFR antibody drug conjugate formulations
    CN105324396A (en) 2013-03-15 2016-02-10 艾伯维公司 Dual specific binding proteins directed against il-1 beta and il-17
    AU2014240012A1 (en) 2013-03-15 2015-09-24 Abbvie Inc. Antibody drug conjugate (ADC) purification
    CA2903852A1 (en) 2013-03-15 2014-09-18 Genentech, Inc. Anti-crth2 antibodies and methods of use
    KR102235452B1 (en) 2013-03-15 2021-04-02 제넨테크, 인크. Cell culture compositions with antioxidants and methods for polypeptide production
    BR112015020290A2 (en) 2013-03-15 2017-10-10 Genentech Inc methods for treating cancer, for preventing cancer, for inhibiting proliferation, for treating a mammal therapeutically, for treating a dysfunction, for reducing spp1 protein levels, for treating a cancer therapeutically, for treating an individual, and for inhibiting cell proliferation, article, antibodies and uses
    US9598485B2 (en) 2013-03-15 2017-03-21 Ac Immune S.A. Anti-tau antibodies and methods of use
    US20140302037A1 (en) 2013-03-15 2014-10-09 Amgen Inc. BISPECIFIC-Fc MOLECULES
    GB201306589D0 (en) 2013-04-11 2013-05-29 Abeterno Ltd Live cell imaging
    US11117975B2 (en) 2013-04-29 2021-09-14 Teva Pharmaceuticals Australia Pty Ltd Anti-CD38 antibodies and fusions to attenuated interferon alpha-2B
    PT2992100T (en) 2013-04-29 2019-12-16 Agrosavfe Nv Agrochemical compositions comprising antibodies binding to sphingolipids
    EA033115B1 (en) 2013-04-29 2019-08-30 Тева Фармасьютикалз Острэйлиа Пти Лтд. Anti-cd38 antibodies and fusion proteins with attenuated interferon alpha-2b
    WO2014189973A2 (en) 2013-05-20 2014-11-27 Genentech, Inc. Anti-transferrin receptor antibodies and methods of use
    EP3022221B1 (en) 2013-07-18 2021-09-15 Taurus Biosciences, LLC Humanized antibodies with ultralong complementarity determining regions
    US20160168231A1 (en) 2013-07-18 2016-06-16 Fabrus, Inc. Antibodies with ultralong complementarity determining regions
    CU24312B1 (en) 2013-07-23 2018-02-08 Biocon Ltd METHODS TO CONTROL FUCOSILATION LEVELS IN PROTEINS
    BR112016003082A8 (en) 2013-08-13 2020-01-28 Elastagen Pty Ltd use of tropoelastine in the production of a medicine to heal a wound or to improve the reepithelization of a wound
    EP3046940B1 (en) 2013-09-17 2019-07-03 F.Hoffmann-La Roche Ag Methods of using anti-lgr5 antibodies
    MY175472A (en) 2013-09-27 2020-06-29 Genentech Inc Anti-pdl1 antibody formulations
    WO2015050959A1 (en) 2013-10-01 2015-04-09 Yale University Anti-kit antibodies and methods of use thereof
    SG11201602522VA (en) 2013-10-02 2016-04-28 Medimmune Llc Neutralizing anti-influenza a antibodies and uses thereof
    US9598667B2 (en) 2013-10-04 2017-03-21 Abbvie Inc. Use of metal ions for modulation of protein glycosylation profiles of recombinant proteins
    WO2015052230A1 (en) 2013-10-11 2015-04-16 F. Hoffmann-La Roche Ag Multispecific domain exchanged common variable light chain antibodies
    RU2016117978A (en) 2013-10-11 2017-11-17 Дженентек, Инк. NSP4 INHIBITORS AND WAYS OF THEIR APPLICATION
    US9085618B2 (en) 2013-10-18 2015-07-21 Abbvie, Inc. Low acidic species compositions and methods for producing and using the same
    RU2016114074A (en) 2013-10-18 2017-11-23 Дженентек, Инк. ANTI-RSPO ANTIBODIES AND METHODS OF APPLICATION
    US8946395B1 (en) 2013-10-18 2015-02-03 Abbvie Inc. Purification of proteins using hydrophobic interaction chromatography
    US9181337B2 (en) 2013-10-18 2015-11-10 Abbvie, Inc. Modulated lysine variant species compositions and methods for producing and using the same
    WO2015061441A1 (en) 2013-10-23 2015-04-30 Genentech, Inc. Methods of diagnosing and treating eosinophilic disorders
    EP3069137A1 (en) 2013-11-05 2016-09-21 Novartis Ag Organic compounds
    WO2015073884A2 (en) 2013-11-15 2015-05-21 Abbvie, Inc. Glycoengineered binding protein compositions
    CN111499743B (en) 2013-11-21 2024-01-12 豪夫迈·罗氏有限公司 Anti-alpha-synuclein antibodies and methods of use
    JP6817064B2 (en) 2013-11-27 2021-01-20 ザイムワークス,インコーポレイテッド Bispecific antigen-binding construct targeting HER2
    ES2711882T3 (en) 2013-11-28 2019-05-08 B Creative Sweden Ab Method of treatment of diabetic nephropathy
    WO2015084883A2 (en) 2013-12-02 2015-06-11 Abbvie, Inc. Compositions and methods for treating osteoarthritis
    US9309314B2 (en) 2013-12-03 2016-04-12 Agency For Science, Technology And Research (A*Star) Polypeptides, nucleic acids and uses thereof
    SG11201604632PA (en) 2013-12-09 2016-07-28 Allakos Inc Anti-siglec-8 antibodies and methods of use thereof
    AU2014362238A1 (en) 2013-12-13 2016-06-09 Genentech, Inc. Anti-CD33 antibodies and immunoconjugates
    EP2883883A1 (en) 2013-12-16 2015-06-17 Cardio3 Biosciences S.A. Therapeutic targets and agents useful in treating ischemia reperfusion injury
    BR112016013741A2 (en) 2013-12-17 2017-10-03 Genentech Inc USES OF PD-1 AXIS LEADING ANTAGONISTS AND AN ANTI-CD20 ANTIBODY, AND KITS COMPRISING THEM
    AU2014364606A1 (en) 2013-12-17 2016-07-07 Genentech, Inc. Combination therapy comprising OX40 binding agonists and PD-1 axis binding antagonists
    PL3192812T3 (en) 2013-12-17 2020-10-19 Genentech, Inc. Anti-cd3 antibodies and methods of use
    KR20240017102A (en) 2013-12-17 2024-02-06 제넨테크, 인크. Methods of treating cancers using pd-1 axis binding antagonists and taxanes
    ES2851386T3 (en) 2013-12-18 2021-09-06 Csl Ltd Wound treatment method
    SI3083680T1 (en) 2013-12-20 2020-06-30 F. Hoffmann-La Roche Ag Humanized anti-tau(ps422) antibodies and methods of use
    TWI728373B (en) 2013-12-23 2021-05-21 美商建南德克公司 Antibodies and methods of use
    CA2930046A1 (en) 2014-01-03 2015-07-09 F. Hoffmann-La Roche Ag Covalently linked polypeptide toxin-antibody conjugates
    WO2015101587A1 (en) 2014-01-03 2015-07-09 F. Hoffmann-La Roche Ag Covalently linked helicar-anti-helicar antibody conjugates and uses thereof
    US10561737B2 (en) 2014-01-03 2020-02-18 Hoffmann-La Roche Inc. Bispecific anti-hapten/anti-blood brain barrier receptor antibodies, complexes thereof and their use as blood brain barrier shuttles
    BR112016015589A2 (en) 2014-01-06 2017-10-31 Hoffmann La Roche monovalent transit modules for the blood-brain barrier
    CA2936377A1 (en) 2014-01-10 2015-07-16 Shanghai Birdie Biotech, Inc. Compounds and compositions for treating egfr expressing tumors
    AU2015209154A1 (en) 2014-01-24 2017-02-16 Genentech, Inc. Methods of using anti-STEAP1 antibodies and immunoconjugates
    CA2937539A1 (en) 2014-02-04 2015-08-13 Genentech, Inc. Mutant smoothened and methods of using the same
    MX2016010237A (en) 2014-02-08 2017-04-27 Genentech Inc Methods of treating alzheimer's disease.
    RU2724190C2 (en) 2014-02-08 2020-06-23 Дженентек, Инк. Methods of treating alzheimer's disease
    CR20160362A (en) 2014-02-12 2016-09-20 Genentech Inc ANTI-JAGGED1 ANTIBODIES AND METHODS OF USE
    KR20160124165A (en) 2014-02-21 2016-10-26 제넨테크, 인크. Anti-il-13/il-17 bispecific antibodies and uses thereof
    EP3110446B1 (en) 2014-02-28 2021-12-01 Allakos Inc. Methods and compositions for treating siglec-8 associated diseases
    CA2941687A1 (en) 2014-03-14 2015-09-17 Genentech, Inc. Methods and compositions for secretion of heterologous polypeptides
    AR099812A1 (en) 2014-03-21 2016-08-17 Abbvie Inc ANTI-EGFR ANTIBODY AND DRUG ANTIBODIES AND CONJUGATES
    WO2015140591A1 (en) 2014-03-21 2015-09-24 Nordlandssykehuset Hf Anti-cd14 antibodies and uses thereof
    RU2016141385A (en) 2014-03-24 2018-04-28 Дженентек, Инк. CANCER TREATMENT WITH C-MET ANTAGONISTS AND THEIR CORRELATION WITH HGF EXPRESSION
    SG11201607969XA (en) 2014-03-31 2016-10-28 Genentech Inc Anti-ox40 antibodies and methods of use
    CN106132439A (en) 2014-03-31 2016-11-16 豪夫迈·罗氏有限公司 Comprise antiangiogenic agent and OX40 combines the combination treatment of agonist
    EP3808778A1 (en) 2014-04-18 2021-04-21 Acceleron Pharma Inc. Methods for increasing red blood cell levels and treating sickle-cell disease
    WO2015164615A1 (en) 2014-04-24 2015-10-29 University Of Oslo Anti-gluten antibodies and uses thereof
    UA119352C2 (en) 2014-05-01 2019-06-10 Тева Фармасьютикалз Острейліа Пті Лтд Combination of lenalidomide or pomalidomide and cd38 antibody-attenuated interferon-alpha constructs, and the use thereof
    RU2744836C2 (en) 2014-05-08 2021-03-16 Новодиакс, Инк. Direct immunohistochemical analysis
    CN106413750B (en) 2014-05-16 2022-04-29 免疫医疗有限责任公司 Molecules with altered neonatal Fc receptor binding with enhanced therapeutic and diagnostic properties
    CA2946662A1 (en) 2014-05-22 2015-11-26 Genentech, Inc. Anti-gpc3 antibodies and immunoconjugates
    WO2015179835A2 (en) 2014-05-23 2015-11-26 Genentech, Inc. Mit biomarkers and methods using the same
    WO2015191615A2 (en) 2014-06-09 2015-12-17 Biomed Valley Discoveries, Inc. Combination therapies using agents that target tumor-associated stroma or tumor cells and alkylating agents
    WO2015191617A2 (en) 2014-06-09 2015-12-17 Biomed Valley Discoveries, Inc. Combination therapies using anti-metabolites and agents that target tumor-associated stroma or tumor cells
    WO2015191590A2 (en) 2014-06-09 2015-12-17 Biomed Valley Discoveries, Inc. Combination therapies targeting tumor-associated stroma or tumor cells and microtubules
    US11034757B2 (en) 2014-06-09 2021-06-15 Biomed Valley Discoveries, Inc. Combination therapies using agents that target tumor-associated stroma or tumor cells and tumor vasculature
    US10758614B2 (en) 2014-06-09 2020-09-01 The United States Of America, As Represented By The Secretary, Department Of Health And Human Services National Institutes Of Health Combination therapies targeting tumor-associated stroma or tumor cells and topoisomerase
    WO2015191610A2 (en) 2014-06-09 2015-12-17 Biomed Valley Discoveries, Inc. Combination therapies using agents that target tumor-associated stroma or tumor cells and other pathways
    WO2015191596A1 (en) 2014-06-09 2015-12-17 Biomed Valley Discoveries, Inc. Combination therapies using platinum agents and agents that target tumor-associated stroma or tumor cells
    CN106459202A (en) 2014-06-11 2017-02-22 豪夫迈·罗氏有限公司 Anti-lgR5 antibodies and uses thereof
    CA2951926C (en) 2014-06-13 2023-01-10 Acceleron Pharma, Inc. Methods and compositions for treating ulcers
    CN107073121A (en) 2014-06-13 2017-08-18 基因泰克公司 Treatment and the method for prevention cancer drug resistance
    NL2013007B1 (en) 2014-06-16 2016-07-05 Ablynx Nv Methods of treating TTP with immunoglobulin single variable domains and uses thereof.
    NL2013661B1 (en) 2014-10-21 2016-10-05 Ablynx Nv KV1.3 Binding immunoglobulins.
    AR100978A1 (en) 2014-06-26 2016-11-16 Hoffmann La Roche ANTI-Tau HUMANIZED ANTIBODY BRAIN LAUNCHERS (pS422) AND USES OF THE SAME
    BR112016029935A2 (en) 2014-06-26 2017-10-31 Hoffmann La Roche anti-brdu antibodies, complex, pharmaceutical formulation and antibody use?
    EP3680336A1 (en) 2014-07-03 2020-07-15 F. Hoffmann-La Roche AG Polypeptide expression systems
    KR102462743B1 (en) 2014-07-09 2022-11-02 버디 바이오파마슈티칼즈, 인크. Anti-pd-l1 combinations for treating tumors
    CN105233291A (en) 2014-07-09 2016-01-13 博笛生物科技有限公司 Combined therapy composition and combined therapy method for treating cancers
    US20160009805A1 (en) 2014-07-11 2016-01-14 Genentech, Inc. Anti-pd-l1 antibodies and diagnostic uses thereof
    CA2952315A1 (en) 2014-07-11 2016-01-14 Genentech, Inc. Notch pathway inhibition
    JP6671363B2 (en) 2014-07-15 2020-03-25 イッサム リサーチ ディヴェロップメント カンパニー オブ ザ ヘブリュー ユニバーシティー オブ エルサレム リミティッド Isolated polypeptide of CD44 and uses thereof
    WO2016020309A1 (en) 2014-08-04 2016-02-11 F. Hoffmann-La Roche Ag Bispecific t cell activating antigen binding molecules
    RU2764074C2 (en) 2014-08-28 2022-01-13 Байоатла, Ллк Conditionally active chimeric antigen receptors for modified t-cells
    CN112587672A (en) 2014-09-01 2021-04-02 博笛生物科技有限公司 anti-PD-L1 conjugates for the treatment of tumors
    CN106804108B (en) 2014-09-12 2021-08-10 基因泰克公司 anti-B7-H4 antibodies and immunoconjugates
    DK3191135T3 (en) 2014-09-12 2020-10-12 Genentech Inc Anti-HER2 antibodies and immunoconjugates
    MA40579A (en) 2014-09-12 2016-03-17 Genentech Inc Anti-cll-1 antibodies and immunoconjugates
    CN106794247B (en) 2014-09-15 2022-12-02 豪夫迈·罗氏有限公司 Antibody formulations
    JP6730261B2 (en) 2014-09-17 2020-07-29 ジェネンテック, インコーポレイテッド Immune complex containing anti-HER2 antibody
    EP3689910A3 (en) 2014-09-23 2020-12-02 F. Hoffmann-La Roche AG Method of using anti-cd79b immunoconjugates
    RU2017115670A (en) 2014-10-10 2018-11-15 Аблинкс Н.В. RSV INFECTION TREATMENT
    EP3204095B8 (en) 2014-10-10 2019-07-10 Ablynx N.V. Inhalation device for use in aerosol therapy of respiratory diseases
    WO2016059602A2 (en) 2014-10-16 2016-04-21 Glaxo Group Limited Methods of treating cancer and related compositions
    JP2017536102A (en) 2014-10-16 2017-12-07 ジェネンテック, インコーポレイテッド Anti-alpha-synuclein antibodies and methods of use
    US10584175B2 (en) 2014-10-23 2020-03-10 La Trobe University FN14-binding proteins and uses thereof
    NZ731491A (en) 2014-10-23 2021-12-24 Kira Biotech Pty Ltd Cd83 binding proteins and uses thereof
    IL251822B2 (en) 2014-10-29 2023-03-01 Teva Pharmaceuticals Australia Pty Ltd Interferon alpha2b variants
    JP6691113B2 (en) 2014-10-29 2020-04-28 シアトル ジェネティックス, インコーポレイテッド Dosage and administration of non-fucosylated anti-CD40 antibody
    US20160160290A1 (en) 2014-11-03 2016-06-09 Genentech, Inc. Methods and biomarkers for predicting efficacy and evaluation of an ox40 agonist treatment
    JP6702991B2 (en) 2014-11-03 2020-06-03 ジェネンテック, インコーポレイテッド Assays for detecting T cell immune subsets and methods of use thereof
    US10066002B2 (en) 2014-11-05 2018-09-04 Genentech, Inc. Methods of producing two chain proteins in bacteria
    JP7089877B2 (en) 2014-11-05 2022-06-23 バイオタリス・エン・フェー Transgenic plants containing polynucleotides encoding variable domains of heavy chain antibodies
    AU2015342961B2 (en) 2014-11-05 2021-08-12 Genentech, Inc. Methods of producing two chain proteins in bacteria
    RU2017119428A (en) 2014-11-06 2018-12-06 Дженентек, Инк. COMBINED THERAPY, INCLUDING THE USE OF OX40-CONNECTING AGONISTS AND TIGIT INHIBITORS
    WO2016073157A1 (en) 2014-11-06 2016-05-12 Genentech, Inc. Anti-ang2 antibodies and methods of use thereof
    EP3218403B1 (en) 2014-11-10 2020-05-13 F.Hoffmann-La Roche Ag Anti-interleukin-33 antibodies and uses thereof
    WO2016077369A1 (en) 2014-11-10 2016-05-19 Genentech, Inc. Animal model for nephropathy and agents for treating the same
    MY191428A (en) 2014-11-14 2022-06-27 Hoffmann La Roche Antigen binding molecules comprising a tnf family ligand trimer
    SG10201807625PA (en) 2014-11-17 2018-10-30 Genentech Inc Combination therapy comprising ox40 binding agonists and pd-1 axis binding antagonists
    US10434177B2 (en) 2014-11-17 2019-10-08 Carnegie Mellon University Activatable two-component photosensitizers
    JP6779876B2 (en) 2014-11-19 2020-11-04 ジェネンテック, インコーポレイテッド Anti-transferrin receptor antibody and how to use it
    JP6993228B2 (en) 2014-11-19 2022-03-03 ジェネンテック, インコーポレイテッド Anti-transferrin receptor / anti-BACE1 multispecific antibody and usage
    CN107108745B (en) 2014-11-19 2021-01-12 基因泰克公司 Antibodies against BACE1 and their use for immunotherapy of neurological diseases
    RS61134B1 (en) 2014-11-20 2020-12-31 Hoffmann La Roche Combination therapy of t cell activating bispecific antigen binding molecules cd3 and folate receptor 1 (folr1) and pd-1 axis binding antagonists
    MX2017006626A (en) 2014-11-20 2017-08-21 Hoffmann La Roche Common light chains and methods of use.
    ES2764111T3 (en) 2014-12-03 2020-06-02 Hoffmann La Roche Multispecific antibodies
    MA41119A (en) 2014-12-03 2017-10-10 Acceleron Pharma Inc METHODS OF TREATMENT OF MYELODYSPLASIC SYNDROMES AND SIDEROBLASTIC ANEMIA
    SG11201704449VA (en) 2014-12-05 2017-06-29 Genentech Inc ANTI-CD79b ANTIBODIES AND METHODS OF USE
    WO2016094566A2 (en) 2014-12-10 2016-06-16 Genentech, Inc. Blood brain barrier receptor antibodies and methods of use
    US10093733B2 (en) 2014-12-11 2018-10-09 Abbvie Inc. LRP-8 binding dual variable domain immunoglobulin proteins
    PT3233910T (en) 2014-12-19 2020-03-17 Ablynx Nv Cysteine linked nanobody dimers
    SG11201607165YA (en) 2014-12-19 2016-09-29 Chugai Pharmaceutical Co Ltd Anti-c5 antibodies and methods of use
    US10940212B2 (en) 2014-12-19 2021-03-09 Monash University IL-21 agonist antibodies and methods of treatment using same
    CA2973266A1 (en) 2015-01-08 2016-07-14 Biogen Ma Inc. Lingo-1 antagonists and uses for treatment of demyelinating disorders
    CN107427574B (en) 2015-01-09 2022-02-08 阿达尔塔有限公司 CXCR4 binding molecules
    CN107428823B (en) 2015-01-22 2021-10-26 中外制药株式会社 Combinations and methods of use of two or more anti-C5 antibodies
    US11304676B2 (en) 2015-01-23 2022-04-19 The University Of North Carolina At Chapel Hill Apparatuses, systems, and methods for preclinical ultrasound imaging of subjects
    US10544210B2 (en) 2015-02-03 2020-01-28 Inserm (Institut National De La Sante Et De La Recherche Medicale) Anti-Rho GTPase conformational single domain antibodies and uses thereof
    CA2975875A1 (en) 2015-02-04 2016-08-11 Genentech, Inc. Mutant smoothened and methods of using the same
    TW202248212A (en) 2015-02-05 2022-12-16 日商中外製藥股份有限公司 Antibodies comprising an ion concentration dependent antigen-binding domain, fc region variants, il-8-binding antibodies, and uses therof
    JP6724023B2 (en) 2015-02-09 2020-07-15 リサーチ ディベロップメント ファウンデーション Engineered immunoglobulin FC polypeptides showing improved complement activation
    US20170151281A1 (en) 2015-02-19 2017-06-01 Batu Biologics, Inc. Chimeric antigen receptor dendritic cell (car-dc) for treatment of cancer
    WO2016135041A1 (en) 2015-02-26 2016-09-01 INSERM (Institut National de la Santé et de la Recherche Médicale) Fusion proteins and antibodies comprising thereof for promoting apoptosis
    WO2016149276A1 (en) 2015-03-16 2016-09-22 Genentech, Inc. Methods of detecting and quantifying il-13 and uses in diagnosing and treating th2-associated diseases
    WO2016146833A1 (en) 2015-03-19 2016-09-22 F. Hoffmann-La Roche Ag Biomarkers for nad(+)-diphthamide adp ribosyltransferase resistance
    ES2863564T3 (en) 2015-04-06 2021-10-11 Acceleron Pharma Inc ALK7 heteromultimers: ActRIIB and uses thereof
    MA41919A (en) 2015-04-06 2018-02-13 Acceleron Pharma Inc ALK4 HETEROMULTIMERS: ACTRIIB AND THEIR USES
    CN107709364A (en) 2015-04-07 2018-02-16 豪夫迈·罗氏有限公司 Antigen binding complex and application method with agonist activity
    ES2899227T3 (en) 2015-04-07 2022-03-10 Alector Llc Anti-sortilin antibodies and methods of using them
    JP6815331B2 (en) 2015-04-21 2021-01-20 ジェネンテック, インコーポレイテッド Compositions and Methods for Prostate Cancer Analysis
    PL3286315T3 (en) 2015-04-24 2021-11-02 F. Hoffmann-La Roche Ag Methods of identifying bacteria comprising binding polypeptides
    JP2018515082A (en) 2015-04-30 2018-06-14 プレジデント アンド フェローズ オブ ハーバード カレッジ Anti-AP2 antibody and antigen binding agent for treating metabolic disorders
    JP2018520642A (en) 2015-05-01 2018-08-02 ジェネンテック, インコーポレイテッド Mask anti-CD3 antibody and method of use thereof
    CN107592812A (en) 2015-05-11 2018-01-16 豪夫迈·罗氏有限公司 Treat the composition and method of lupus nephritis
    WO2016183326A1 (en) 2015-05-12 2016-11-17 Genentech, Inc. Therapeutic and diagnostic methods for cancer
    EP3095465A1 (en) 2015-05-19 2016-11-23 U3 Pharma GmbH Combination of fgfr4-inhibitor and bile acid sequestrant
    CN107771182A (en) 2015-05-29 2018-03-06 豪夫迈·罗氏有限公司 The anti-Ebola virus glycoproteins antibody of humanization and application method
    CN107532217A (en) 2015-05-29 2018-01-02 豪夫迈·罗氏有限公司 Treatment and diagnostic method for cancer
    CA2987051A1 (en) 2015-05-29 2016-12-08 Abbvie Inc. Anti-cd40 antibodies and uses thereof
    US20180153884A1 (en) 2015-05-31 2018-06-07 Curegenix Corporation Combination compositions for immunotherapy
    CN107810012A (en) 2015-06-02 2018-03-16 豪夫迈·罗氏有限公司 Use the composition and method of the anti-Antybody therapy sacred diseases of IL 34
    TWI790642B (en) 2015-06-05 2023-01-21 美商建南德克公司 Anti-tau antibodies and methods of use
    US20170000885A1 (en) 2015-06-08 2017-01-05 Genentech, Inc. Methods of treating cancer using anti-ox40 antibodies and pd-1 axis binding antagonists
    CN107810011A (en) 2015-06-08 2018-03-16 豪夫迈·罗氏有限公司 Use the method for anti-OX40 antibodies for treating cancer
    WO2016201389A2 (en) 2015-06-12 2016-12-15 Alector Llc Anti-cd33 antibodies and methods of use thereof
    CA2988982A1 (en) 2015-06-12 2016-12-15 Alector Llc Anti-cd33 antibodies and methods of use thereof
    WO2016205176A1 (en) 2015-06-15 2016-12-22 Genentech, Inc. Antibodies and immunoconjugates
    TW201710286A (en) 2015-06-15 2017-03-16 艾伯維有限公司 Binding proteins against VEGF, PDGF, and/or their receptors
    IL256079B2 (en) 2015-06-16 2024-01-01 Genentech Inc Humanized and affinity matured antibodies to fcrh5 and methods of use
    JP2018526972A (en) 2015-06-16 2018-09-20 ジェネンテック, インコーポレイテッド Anti-CD3 antibody and method of use
    US10501545B2 (en) 2015-06-16 2019-12-10 Genentech, Inc. Anti-CLL-1 antibodies and methods of use
    KR20180018538A (en) 2015-06-17 2018-02-21 제넨테크, 인크. Methods for the treatment of locally advanced or metastatic breast cancer using PD-1 axis-binding antagonists and taxanes
    CA2987797A1 (en) 2015-06-17 2016-12-22 Christopher Robert Bebbington Methods and compositions for treating fibrotic diseases
    KR20180012859A (en) 2015-06-17 2018-02-06 제넨테크, 인크. Anti-HER2 antibodies and methods of use
    CN113929779A (en) 2015-06-24 2022-01-14 豪夫迈·罗氏有限公司 Humanized anti-Tau (pS422) antibodies and methods of use
    MX2017016645A (en) 2015-06-29 2018-11-09 Genentech Inc Type ii anti-cd20 antibody for use in organ transplantation.
    CA3162816A1 (en) 2015-06-29 2017-01-05 Ventana Medical Systems, Inc. Materials and methods for performing histochemical assays for human pro-epiregulin and amphiregulin
    WO2017004079A1 (en) 2015-06-29 2017-01-05 Biomed Valley Discoveries, Inc. Lpt-723 and immune checkpoint inhibitor combinations and methods of treatment
    EA201890158A1 (en) 2015-06-30 2018-06-29 Сиэтл Дженетикс, Инк. ANTIBODIES AGAINST NTB-A AND RELATED COMPOSITIONS AND METHODS
    WO2017023866A1 (en) 2015-07-31 2017-02-09 Boston Biomedical, Inc. Method of targeting stat3 and other non-druggable proteins
    TW202340452A (en) 2015-08-04 2023-10-16 美商再生元醫藥公司 Taurine supplemented cell culture medium and methods of use
    KR20180035884A (en) 2015-08-04 2018-04-06 악셀레론 파마 인코포레이티드 Methods for treating myeloproliferative disorders
    CN115960230A (en) 2015-08-07 2023-04-14 伊麦吉纳博公司 Antigen binding constructs for targeting molecules
    CN105384825B (en) 2015-08-11 2018-06-01 南京传奇生物科技有限公司 A kind of bispecific chimeric antigen receptor and its application based on single domain antibody
    WO2017040342A1 (en) 2015-08-28 2017-03-09 Genentech, Inc. Anti-hypusine antibodies and uses thereof
    EP3350212A1 (en) 2015-09-18 2018-07-25 INSERM - Institut National de la Santé et de la Recherche Médicale T cell receptors (tcr) and uses thereof for the diagnosis and treatment of diabetes
    PE20181336A1 (en) 2015-09-18 2018-08-21 Chugai Pharmaceutical Co Ltd ANTIBODIES THAT BIND INTERLEUKIN 8 (IL-8) AND ITS USES
    JP6904947B2 (en) 2015-09-22 2021-07-21 スプリング バイオサイエンス コーポレーション Anti-OX40 antibody and its diagnostic applications
    TWI748962B (en) 2015-09-23 2021-12-11 美商建南德克公司 Optimized variants of anti-vegf antibodies
    MX2018003533A (en) 2015-09-24 2019-04-25 Abvitro Llc Hiv antibody compositions and methods of use.
    KR20200087283A (en) 2015-09-25 2020-07-20 제넨테크, 인크. Anti-tigit antibodies and methods of use
    ES2839212T3 (en) 2015-09-29 2021-07-05 Inst Nat Sante Rech Med Methods to determine the metabolic status of B lymphomas
    AR106188A1 (en) 2015-10-01 2017-12-20 Hoffmann La Roche ANTI-CD19 HUMANIZED HUMAN ANTIBODIES AND METHODS OF USE
    WO2017055404A1 (en) 2015-10-02 2017-04-06 F. Hoffmann-La Roche Ag Bispecific antibodies specific for pd1 and tim3
    RS62450B1 (en) 2015-10-02 2021-11-30 Hoffmann La Roche Anti-pd1 antibodies and methods of use
    CN108026177B (en) 2015-10-02 2021-11-26 豪夫迈·罗氏有限公司 Bispecific anti-CD 19XCD 3T cell activating antigen binding molecules
    AR106199A1 (en) 2015-10-02 2017-12-20 Hoffmann La Roche T-CELL ACTIVATING ANTIGEN BINDING MOLECULES OF ANTIGEN
    WO2017055393A1 (en) 2015-10-02 2017-04-06 F. Hoffmann-La Roche Ag Anti-cd3xtim-3 bispecific t cell activating antigen binding molecules
    JP7044700B2 (en) 2015-10-02 2022-03-30 エフ・ホフマン-ラ・ロシュ・アクチェンゲゼルシャフト Bispecific anti-CEAXCD3 T cell activating antigen binding molecule
    MA43345A (en) 2015-10-02 2018-08-08 Hoffmann La Roche PYRROLOBENZODIAZEPINE ANTIBODY-DRUG CONJUGATES AND METHODS OF USE
    WO2017055395A1 (en) 2015-10-02 2017-04-06 F. Hoffmann-La Roche Ag Anti-cd3xrob04 bispecific t cell activating antigen binding molecules
    WO2017055392A1 (en) 2015-10-02 2017-04-06 F. Hoffmann-La Roche Ag Anti-cd3xcd44v6 bispecific t cell activating antigen binding molecules
    EP3356417A1 (en) 2015-10-02 2018-08-08 H. Hoffnabb-La Roche Ag Bispecific t cell activating antigen binding molecules binding mesothelin and cd3
    WO2017055385A1 (en) 2015-10-02 2017-04-06 F. Hoffmann-La Roche Ag Anti-cd3xgd2 bispecific t cell activating antigen binding molecules
    JP7034066B2 (en) 2015-10-02 2022-03-11 エフ・ホフマン-ラ・ロシュ・アクチェンゲゼルシャフト Bispecific antibody to co-stimulated TNF receptor
    RU2018116402A (en) 2015-10-07 2019-11-07 Ф. Хоффманн-Ля Рош Аг BESPECIFIC ANTIBODIES FOUR PRINCIPLES REGARDING THE COSTIMULATORY TNF RECEPTOR
    US10556953B2 (en) 2015-10-12 2020-02-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Agent capable of depleting CD8 T cells for the treatment of myocardial infarction or acute myocardial infarction
    MA43354A (en) 2015-10-16 2018-08-22 Genentech Inc CONJUGATE DRUG CONJUGATES WITH CLOUDY DISULPHIDE
    MA45326A (en) 2015-10-20 2018-08-29 Genentech Inc CALICHEAMICIN-ANTIBODY-DRUG CONJUGATES AND METHODS OF USE
    US10604577B2 (en) 2015-10-22 2020-03-31 Allakos Inc. Methods and compositions for treating systemic mastocytosis
    EP3184547A1 (en) 2015-10-29 2017-06-28 F. Hoffmann-La Roche AG Anti-tpbg antibodies and methods of use
    CN114891102A (en) 2015-10-29 2022-08-12 豪夫迈·罗氏有限公司 Anti-variant Fc region antibodies and methods of use
    JP2018534930A (en) 2015-10-30 2018-11-29 ジェネンテック, インコーポレイテッド Anti-factor D antibodies and conjugates
    EP3368578B1 (en) 2015-10-30 2021-03-17 H. Hoffnabb-La Roche Ag Anti-htra1 antibodies and methods of use thereof
    EP3371217A1 (en) 2015-11-08 2018-09-12 H. Hoffnabb-La Roche Ag Methods of screening for multispecific antibodies
    WO2017081190A1 (en) 2015-11-13 2017-05-18 INSERM (Institut National de la Santé et de la Recherche Médicale) Anti- nkg2d single domain antibodies and uses thereof
    JP7034913B2 (en) 2015-11-20 2022-03-14 オースヴィル セラピューティクス ピーティーワイ リミテッド Medicinal compound
    EP3380121B1 (en) 2015-11-23 2023-12-20 Acceleron Pharma Inc. Actrii antagonist for use in treating eye disorders
    RU2018122255A (en) 2015-11-27 2019-12-19 Аблинкс Нв CD40L INHIBITING POLYPEPTIDES
    CN115920030A (en) 2015-12-09 2023-04-07 豪夫迈·罗氏有限公司 Use of type II anti-CD 20 antibodies for reducing anti-drug antibody formation
    EP3178848A1 (en) 2015-12-09 2017-06-14 F. Hoffmann-La Roche AG Type ii anti-cd20 antibody for reducing formation of anti-drug antibodies
    EP3390442B1 (en) 2015-12-18 2023-11-08 Chugai Seiyaku Kabushiki Kaisha Anti-c5 antibodies and methods of use
    MX2018007451A (en) 2015-12-18 2018-11-09 Eisai R&D Man Co Ltd C-terminal lysine conjugated immunoglobulins.
    US10525137B2 (en) 2015-12-30 2020-01-07 Genentech, Inc. Formulations with reduced degradation of polysorbate
    AU2016381694A1 (en) 2015-12-30 2018-07-05 Genentech, Inc. Use of tryptophan derivatives for protein formulations
    EP3400443B1 (en) 2016-01-04 2020-09-16 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of pd-1 and tim-3 as a measure for cd8+ cells in predicting and treating renal cell carcinoma
    CN107531795B (en) 2016-01-05 2021-01-19 江苏恒瑞医药股份有限公司 PCSK9 antibody, antigen-binding fragment thereof and medical application thereof
    CA3006529A1 (en) 2016-01-08 2017-07-13 F. Hoffmann-La Roche Ag Methods of treating cea-positive cancers using pd-1 axis binding antagonists and anti-cea/anti-cd3 bispecific antibodies
    CN114019170A (en) 2016-01-20 2022-02-08 基因泰克公司 High dose treatment for alzheimer's disease
    WO2017129558A1 (en) 2016-01-25 2017-08-03 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for predicting or treating myelopoiesis-driven cardiometabolic diseases and sepsis
    ES2924741T3 (en) 2016-01-28 2022-10-10 Inst Nat Sante Rech Med Methods to Increase the Potency of Immune Checkpoint Inhibitors
    WO2017129763A1 (en) 2016-01-28 2017-08-03 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of signet ring cell gastric cancer
    EP4035681A1 (en) 2016-01-28 2022-08-03 Institut National de la Santé et de la Recherche Médicale (INSERM) Methods and pharmaceutical composition for the treatment of cancer
    EP3411396A1 (en) 2016-02-04 2018-12-12 Curis, Inc. Mutant smoothened and methods of using the same
    AU2017225854B2 (en) 2016-02-29 2020-11-19 Foundation Medicine, Inc. Therapeutic and diagnostic methods for cancer
    HUE054726T2 (en) 2016-03-02 2021-09-28 Eisai R&D Man Co Ltd Eribulin-based antibody-drug conjugates and methods of use
    US11027021B2 (en) 2016-03-15 2021-06-08 Seagen Inc. Combinations of PBD-based antibody drug conjugates with Bcl-2 inhibitors
    EP3430054B1 (en) 2016-03-15 2021-12-29 Chugai Seiyaku Kabushiki Kaisha Methods of treating cancers using pd-1 axis binding antagonists and anti-gpc3 antibodies
    PL3433280T3 (en) 2016-03-22 2023-07-31 F. Hoffmann-La Roche Ag Protease-activated t cell bispecific molecules
    CR20180453A (en) 2016-03-22 2018-12-05 Hoffmann La Roche Bispecific MOLECULES OF T-CELLS ACTIVATED BY PROTEASES
    JP6943872B2 (en) 2016-03-25 2021-10-06 ジェネンテック, インコーポレイテッド Multiple whole antibody and antibody complex drug quantification assay
    EP3436477A2 (en) 2016-03-29 2019-02-06 Janssen Biotech, Inc. Method of treating psoriasis with increased interval dosing of anti-il12 and/or -23 antibody
    EP3231813A1 (en) 2016-03-29 2017-10-18 F. Hoffmann-La Roche AG Trimeric costimulatory tnf family ligand-containing antigen binding molecules
    WO2017174681A1 (en) 2016-04-06 2017-10-12 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of age-related cardiometabolic diseases
    EP3443004A1 (en) 2016-04-14 2019-02-20 H. Hoffnabb-La Roche Ag Anti-rspo3 antibodies and methods of use
    MX2018012493A (en) 2016-04-15 2019-06-06 Genentech Inc Methods for monitoring and treating cancer.
    PL3443350T3 (en) 2016-04-15 2021-05-31 F. Hoffmann-La Roche Ag Methods for monitoring and treating cancer
    WO2017182609A1 (en) 2016-04-22 2017-10-26 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical composition for the treatment of inflammatory skin diseases associated with desmoglein-1 deficiency
    WO2017189805A1 (en) 2016-04-27 2017-11-02 Abbvie Inc. Methods of treatment of diseases in which il-13 activity is detrimental using anti-il-13 antibodies
    CA3022697A1 (en) 2016-05-02 2017-11-09 Ablynx Nv Treatment of rsv infection
    PE20181890A1 (en) 2016-05-02 2018-12-11 Hoffmann La Roche CONTORSBODY - A MONOCATENARIO DIANA LEAGUE
    WO2017191214A1 (en) 2016-05-03 2017-11-09 Institut National De La Sante Et De La Recherche Medicale (Inserm) Cd31shed as a molecular target for imaging of inflammation
    ES2820173T3 (en) 2016-05-06 2021-04-19 Inst Nat Sante Rech Med Pharmaceutical compositions for the treatment of chemoresistant acute myeloid leukemia (AML)
    EP3454863A1 (en) 2016-05-10 2019-03-20 INSERM (Institut National de la Santé et de la Recherche Médicale) Combinations therapies for the treatment of cancer
    CN109071652B (en) 2016-05-11 2022-09-23 豪夫迈·罗氏有限公司 Antigen binding molecules comprising TNF family ligand trimers and tenascin binding modules
    EP3243836A1 (en) 2016-05-11 2017-11-15 F. Hoffmann-La Roche AG C-terminally fused tnf family ligand trimer-containing antigen binding molecules
    WO2017194441A1 (en) 2016-05-11 2017-11-16 F. Hoffmann-La Roche Ag Modified anti-tenascin antibodies and methods of use
    EP3243832A1 (en) 2016-05-13 2017-11-15 F. Hoffmann-La Roche AG Antigen binding molecules comprising a tnf family ligand trimer and pd1 binding moiety
    SI3455261T1 (en) 2016-05-13 2023-01-31 Bioatla, Inc. Anti-ror2 antibodies, antibody fragments, their immunoconjugates and uses thereof
    DK3458478T3 (en) 2016-05-18 2021-03-22 Boehringer Ingelheim Int ANTI-PD-1 AND ANTI-LAG3 ANTIBODIES FOR CANCER TREATMENT
    PL3458101T3 (en) 2016-05-20 2021-05-31 F. Hoffmann-La Roche Ag Protac antibody conjugates and methods of use
    EP3463452A1 (en) 2016-05-24 2019-04-10 Institut National de la Sante et de la Recherche Medicale (INSERM) Methods and pharmaceutical compositions for the treatment of non small cell lung cancer (nsclc) that coexists with chronic obstructive pulmonary disease (copd)
    US20170370906A1 (en) 2016-05-27 2017-12-28 Genentech, Inc. Bioanalytical analysis of site-specific antibody drug conjugates
    WO2017202890A1 (en) 2016-05-27 2017-11-30 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for predicting and treating myeloma
    EP3252078A1 (en) 2016-06-02 2017-12-06 F. Hoffmann-La Roche AG Type ii anti-cd20 antibody and anti-cd20/cd3 bispecific antibody for treatment of cancer
    US10639378B2 (en) 2016-06-06 2020-05-05 Genentech, Inc. Silvestrol antibody-drug conjugates and methods of use
    JP2019521106A (en) 2016-06-08 2019-07-25 アッヴィ・インコーポレイテッド Anti-EGFR antibody drug conjugate
    EP3468599A2 (en) 2016-06-08 2019-04-17 AbbVie Inc. Anti-cd98 antibodies and antibody drug conjugates
    EP3835322A3 (en) 2016-06-08 2021-10-06 AbbVie Inc. Anti-b7-h3 antibodies and antibody drug conjugates
    MX2018015285A (en) 2016-06-08 2019-09-18 Abbvie Inc Anti-b7-h3 antibodies and antibody drug conjugates.
    US20200002421A1 (en) 2016-06-08 2020-01-02 Abbvie Inc. Anti-b7-h3 antibodies and antibody drug conjugates
    JP2019524651A (en) 2016-06-08 2019-09-05 アッヴィ・インコーポレイテッド Anti-CD98 antibodies and antibody drug conjugates
    AU2017277534A1 (en) 2016-06-08 2019-01-03 Abbvie Inc. Anti-EGFR antibody drug conjugates
    EP3468596A2 (en) 2016-06-08 2019-04-17 AbbVie Inc. Anti-cd98 antibodies and antibody drug conjugates
    EP3468615A1 (en) 2016-06-08 2019-04-17 AbbVie Inc. Anti-egfr antibody drug conjugates
    GB201610198D0 (en) 2016-06-10 2016-07-27 Ucb Biopharma Sprl Anti-ige antibodies
    JP7041077B2 (en) 2016-06-10 2022-03-23 エーザイ・アール・アンド・ディー・マネジメント株式会社 Lysine-conjugated immunoglobulin
    CN109563160B (en) 2016-06-24 2023-02-28 豪夫迈·罗氏有限公司 Anti-polyubiquitin multispecific antibodies
    WO2018007442A1 (en) 2016-07-06 2018-01-11 Ablynx N.V. Treatment of il-6r related diseases
    RS62011B1 (en) 2016-07-15 2021-07-30 Acceleron Pharma Inc Compositions comprising actriia polypeptides for use in treating pulmonary hypertension
    US11618784B2 (en) 2016-07-19 2023-04-04 Teva Pharmaceuticals Australia Pty Ltd. Anti-CD47 combination therapy
    WO2018014260A1 (en) 2016-07-20 2018-01-25 Nanjing Legend Biotech Co., Ltd. Multispecific antigen binding proteins and methods of use thereof
    KR20190040972A (en) 2016-07-27 2019-04-19 악셀레론 파마 인코포레이티드 Methods and compositions for treatment of osteoporosis
    CN117986372A (en) 2016-07-29 2024-05-07 中外制药株式会社 Bispecific antibodies exhibiting increased functional activity of alternative FVIII cofactors
    CN109963871A (en) 2016-08-05 2019-07-02 豪夫迈·罗氏有限公司 Multivalence and multi-epitope Antibody and application method with agonist activity
    EP3494991A4 (en) 2016-08-05 2020-07-29 Chugai Seiyaku Kabushiki Kaisha Composition for prophylaxis or treatment of il-8 related diseases
    EP3497129A1 (en) 2016-08-08 2019-06-19 H. Hoffnabb-La Roche Ag Therapeutic and diagnostic methods for cancer
    WO2018029182A1 (en) 2016-08-08 2018-02-15 Ablynx N.V. Il-6r single variable domain antibodies for treatment of il-6r related diseases
    CN109689111B (en) 2016-08-11 2024-04-05 基因泰克公司 Pyrrolobenzodiazepine prodrugs and antibody conjugates thereof
    WO2018041989A1 (en) 2016-09-02 2018-03-08 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for diagnosing and treating refractory celiac disease type 2
    US20190242908A1 (en) 2016-09-08 2019-08-08 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for diagnosing and treating nephrotic syndrome
    EP3512880A1 (en) 2016-09-15 2019-07-24 Ablynx NV Immunoglobulin single variable domains directed against macrophage migration inhibitory factor
    SG10201607778XA (en) 2016-09-16 2018-04-27 Chugai Pharmaceutical Co Ltd Anti-Dengue Virus Antibodies, Polypeptides Containing Variant Fc Regions, And Methods Of Use
    JOP20190009A1 (en) 2016-09-21 2019-01-27 Alx Oncology Inc Antibodies against signal-regulatory protein alpha and methods of use
    HUE063135T2 (en) 2016-09-23 2023-12-28 Hoffmann La Roche Uses of il-13 antagonists for treating atopic dermatitis
    CN110023339A (en) 2016-09-23 2019-07-16 Csl有限公司 Coagulation factor binding protein and its application
    EP3519049A4 (en) 2016-09-30 2020-05-27 Janssen Biotech, Inc. Safe and effective method of treating psoriasis with anti-il23 specific antibody
    ES2897217T3 (en) 2016-09-30 2022-02-28 Hoffmann La Roche Bispecific antibodies against p95HER2
    CN110139674B (en) 2016-10-05 2023-05-16 豪夫迈·罗氏有限公司 Method for preparing antibody drug conjugates
    WO2018067879A1 (en) 2016-10-05 2018-04-12 Acceleron Pharma Inc. Alk4:actriib heteromultimers and uses thereof
    AU2017340504A1 (en) 2016-10-05 2019-04-11 Acceleron Pharma, Inc. Compositions and method for treating kidney disease
    TWI775781B (en) 2016-10-06 2022-09-01 美商建南德克公司 Therapeutic and diagnostic methods for cancer
    WO2018068201A1 (en) 2016-10-11 2018-04-19 Nanjing Legend Biotech Co., Ltd. Single-domain antibodies and variants thereof against ctla-4
    WO2018075564A1 (en) 2016-10-17 2018-04-26 University Of Maryland, College Park Multispecific antibodies targeting human immunodeficiency virus and methods of using the same
    EP3532496A1 (en) 2016-10-28 2019-09-04 Banyan Biomarkers, Inc. Antibodies to ubiquitin c-terminal hydrolase l1 (uch-l1) and glial fibrillary acidic protein (gfap) and related methods
    CN110267678A (en) 2016-10-29 2019-09-20 霍夫曼-拉罗奇有限公司 Anti- MIC antibody and application method
    WO2018087391A1 (en) 2016-11-14 2018-05-17 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for modulating stem cells proliferation or differentiation
    JP2020503260A (en) 2016-11-15 2020-01-30 ジェネンテック, インコーポレイテッド Administration for treatment with anti-CD20 / anti-CD3 bispecific antibodies
    WO2018093841A1 (en) 2016-11-16 2018-05-24 Janssen Biotech, Inc. Method of treating psoriasis with anti-il-23 specific antibody
    CA3043515A1 (en) 2016-11-16 2018-05-24 Ablynx Nv T cell recruiting polypeptides capable of binding cd123 and tcr alpha/beta
    US20210277145A1 (en) 2016-11-17 2021-09-09 Inserm (Institut National De La Sante Et De La Recherche Medicale) Methods and pharmaceutical compositions for increasing endogenous protein level
    TW201829463A (en) 2016-11-18 2018-08-16 瑞士商赫孚孟拉羅股份公司 Anti-hla-g antibodies and use thereof
    US10899842B2 (en) 2016-11-23 2021-01-26 Immunoah Therapeutics, Inc. 4-1BB binding proteins and uses thereof
    EP3546574A4 (en) 2016-11-28 2020-09-09 Chugai Seiyaku Kabushiki Kaisha Antigen-binding domain, and polypeptide including conveying section
    WO2018099968A1 (en) 2016-11-29 2018-06-07 Ablynx N.V. Treatment of infection by respiratory syncytial virus (rsv)
    WO2018100190A1 (en) 2016-12-02 2018-06-07 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for diagnosing renal cell carcinoma
    KR20230146126A (en) 2016-12-07 2023-10-18 제넨테크, 인크. Anti-tau antibodies and methods of use
    CN110248959B (en) 2016-12-07 2023-06-30 基因泰克公司 anti-TAU antibodies and methods of use
    EP3555620A1 (en) 2016-12-13 2019-10-23 H. Hoffnabb-La Roche Ag Method to determine the presence of a target antigen in a tumor sample
    WO2018112474A1 (en) 2016-12-16 2018-06-21 Merck Patent Gmbh Methods for the use of galectin 3 binding protein detected in the urine for monitoring the severity and progression of lupus nephritis
    TWI829628B (en) 2016-12-19 2024-01-21 瑞士商赫孚孟拉羅股份公司 Combination therapy with targeted 4-1bb (cd137) agonists
    BR112019007267A2 (en) 2016-12-20 2019-07-09 Hoffmann La Roche anti-cd20 / anti-cd3 bispecific antibody, pharmaceutical product, pharmaceutical composition comprising a anti-cd20 / anti-cd3 bispecific antibody, use of anti-cd20 / anti-cd3 bispecific antibody combination and a 4-1bb agonist and method of treatment or retardation of cancer progression in patients
    GB201621806D0 (en) 2016-12-21 2017-02-01 Philogen Spa Immunocytokines with progressive activation mechanism
    EP3360898A1 (en) 2017-02-14 2018-08-15 Boehringer Ingelheim International GmbH Bispecific anti-tnf-related apoptosis-inducing ligand receptor 2 and anti-cadherin 17 binding molecules for the treatment of cancer
    CN108261544B (en) 2016-12-30 2023-05-05 江苏太平洋美诺克生物药业股份有限公司 Stable pharmaceutical formulation comprising CD147 monoclonal antibody
    CN108261391B (en) 2016-12-30 2022-03-01 江苏太平洋美诺克生物药业有限公司 Stable pharmaceutical formulation comprising CD147 monoclonal antibody
    MA47200A (en) 2017-01-03 2019-11-13 Hoffmann La Roche BISPECIFIC ANTIGEN BINDING MOLECULES INCLUDING A 20H4.9 ANTI-4-1BB CLONE
    WO2018134389A1 (en) 2017-01-23 2018-07-26 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating infections
    CN110234351A (en) 2017-01-30 2019-09-13 詹森生物科技公司 For treating the anti-TNF antibodies, composition and method of activity psoriatic arthritis
    EP3576789A4 (en) 2017-02-01 2020-11-25 Centrymed Pharmaceuticals Inc. MONOMERIC HUMAN IgG1 Fc AND BISPECIFIC ANTIBODIES
    CN110418652A (en) 2017-02-07 2019-11-05 詹森生物科技公司 For treating the anti-TNF antibodies, composition and method of activity ankylosing spondylitis
    WO2018147960A1 (en) 2017-02-08 2018-08-16 Imaginab, Inc. Extension sequences for diabodies
    RU2771485C2 (en) 2017-02-10 2022-05-04 Дженентек, Инк. Antibodies against tryptase, their compositions and applications
    EP3579872A1 (en) 2017-02-10 2019-12-18 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of cancers associated with activation of the mapk pathway
    WO2018158335A1 (en) 2017-02-28 2018-09-07 Vib Vzw Means and methods for oral protein delivery
    ES2953595T3 (en) 2017-03-01 2023-11-14 Hoffmann La Roche Diagnostic and therapeutic procedures for cancer
    WO2018175752A1 (en) 2017-03-22 2018-09-27 Genentech, Inc. Optimized antibody compositions for treatment of ocular disorders
    JP7216006B2 (en) 2017-03-22 2023-01-31 ジェネンテック, インコーポレイテッド Hydrogel Crosslinked Hyaluronic Acid Prodrug Compositions and Methods
    US20210186982A1 (en) 2017-03-24 2021-06-24 Universite Nice Sophia Antipolis Methods and compositions for treating melanoma
    WO2018178030A1 (en) 2017-03-27 2018-10-04 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating degenerative muscular and/or neurological conditions or diseases
    RU2019133202A (en) 2017-03-27 2021-04-28 Ф. Хоффманн-Ля Рош Аг IMPROVED ANTIGEN BINDING RECEPTORS
    WO2018178029A1 (en) 2017-03-27 2018-10-04 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating degenerative muscular and/or neurological conditions or diseases
    WO2018177967A1 (en) 2017-03-27 2018-10-04 F. Hoffmann-La Roche Ag Improved antigen binding receptor formats
    TW201836640A (en) 2017-03-28 2018-10-16 美商建南德克公司 Methods of treating neurodegenerative diseases
    EP3601325B1 (en) 2017-03-28 2023-07-19 INSERM (Institut National de la Santé et de la Recherche Médicale) New tau species
    EP3601346A1 (en) 2017-03-29 2020-02-05 H. Hoffnabb-La Roche Ag Bispecific antigen binding molecule for a costimulatory tnf receptor
    WO2018178055A1 (en) 2017-03-29 2018-10-04 F. Hoffmann-La Roche Ag Bispecific antigen binding molecule for a costimulatory tnf receptor
    WO2018178074A1 (en) 2017-03-29 2018-10-04 F. Hoffmann-La Roche Ag Trimeric antigen binding molecules specific for a costimulatory tnf receptor
    CN110709106A (en) 2017-03-30 2020-01-17 杜克大学 Radiolabeled biomolecules and uses thereof
    KR102461885B1 (en) 2017-04-03 2022-11-03 에프. 호프만-라 로슈 아게 Immunoconjugates of an anti-pd-1 antibody with a mutant il-2 or with il-15
    WO2018184965A1 (en) 2017-04-03 2018-10-11 F. Hoffmann-La Roche Ag Immunoconjugates of il-2 with an anti-pd-1 and tim-3 bispecific antibody
    CN110494452B (en) 2017-04-03 2023-08-25 豪夫迈·罗氏有限公司 Antibodies that bind STEAP-1
    BR112019017753A2 (en) 2017-04-04 2020-04-07 Hoffmann La Roche bispecific molecule, polynucleotide, vector, cell, methods for the production of a molecule and for the treatment of an individual, composition and use of the bispecific molecule
    MX2019011916A (en) 2017-04-05 2020-01-09 Hoffmann La Roche Anti-lag3 antibodies.
    KR102346336B1 (en) 2017-04-05 2022-01-04 에프. 호프만-라 로슈 아게 Bispecific antibodies that specifically bind to PD1 and LAG3
    CN108728444A (en) 2017-04-18 2018-11-02 长春华普生物技术股份有限公司 Immunoregulation polynucleotide and its application
    US20200033347A1 (en) 2017-04-18 2020-01-30 Universite Libre De Bruxelles Biomarkers And Targets For Proliferative Diseases
    CA3064697A1 (en) 2017-04-19 2018-10-25 Bluefin Biomedicine, Inc. Anti-vtcn1 antibodies and antibody drug conjugates
    PE20200150A1 (en) 2017-04-21 2020-01-17 Genentech Inc USE OF KLK5 ANTAGONISTS FOR THE TREATMENT OF A DISEASE
    BR112019022515A2 (en) 2017-04-27 2020-06-16 Tesaro, Inc. ANTIBODY AGENTS TARGETED AGAINST Lymphocyte Activation Gene 3 (LAG-3) AND USES OF THE SAME
    AU2018261887A1 (en) 2017-05-05 2019-12-05 Allakos Inc. Methods and compositions for treating allergic ocular diseases
    WO2018206734A1 (en) 2017-05-11 2018-11-15 Vib Vzw Glycosylation of variable immunoglobulin domains
    CN111094335B (en) 2017-05-15 2022-08-23 罗切斯特大学 Broadly neutralizing anti-influenza monoclonal antibodies and uses thereof
    EP3403649A1 (en) 2017-05-16 2018-11-21 Bayer Pharma Aktiengesellschaft Inhibitors and antagonists of gpr84 for the treatment of endometriosis
    KR20200013683A (en) 2017-05-17 2020-02-07 인쎄름 (엥스띠뛰 나씨오날 드 라 쌍떼 에 드 라 흐쉐르슈 메디깔) FLT3 inhibitors for improving pain treatment by opioids
    TWI714854B (en) * 2017-05-24 2021-01-01 財團法人生物技術開發中心 Humanized antibodies against globo h and uses thereof in cancer treatments
    EP3406253A1 (en) 2017-05-24 2018-11-28 Bayer Aktiengesellschaft Inhibitors and antagonists of human pycr1
    EP3409322A1 (en) 2017-06-01 2018-12-05 F. Hoffmann-La Roche AG Treatment method
    EP3630818A1 (en) 2017-06-02 2020-04-08 Ablynx NV Aggrecan binding immunoglobulins
    CA3064469A1 (en) 2017-06-02 2018-12-06 Merck Patent Gmbh Mmp13 binding immunoglobulins
    MX2019014400A (en) 2017-06-02 2020-02-10 Merck Patent Gmbh Adamts binding immunoglobulins.
    MX2019014274A (en) 2017-06-02 2020-01-23 Hoffmann La Roche Type ii anti-cd20 antibody and anti-cd20/cd3 bispecific antibody for treatment of cancer.
    MX2019014397A (en) 2017-06-02 2020-02-10 Merck Patent Gmbh Polypeptides binding adamts5, mmp13 and aggrecan.
    US20210079100A1 (en) 2017-06-08 2021-03-18 Inserm (Institute National De La Sante Et De La Recherche Medicale) Methods and compositions for treating hyperpigmentation disorders
    EP3635398A1 (en) 2017-06-08 2020-04-15 Institut National de la Sante et de la Recherche Medicale (INSERM) Chimeric receptor for use in whole-cell sensors for detecting analytes of interest
    JP7264831B2 (en) * 2017-06-15 2023-04-25 ディベロップメント センター フォー バイオテクノロジー Antibody-drug conjugates containing anti-GLOBO H antibodies and uses thereof
    EP3641802A1 (en) 2017-06-22 2020-04-29 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of fibrosis with agents capable of inhibiting the activation of mucosal-associated invariant t (mait) cells
    WO2019000223A1 (en) 2017-06-27 2019-01-03 Nanjing Legend Biotech Co., Ltd. Chimeric antibody immune effctor cell engagers and methods of use thereof
    WO2019002548A1 (en) 2017-06-29 2019-01-03 INSERM (Institut National de la Santé et de la Recherche Médicale) Treating migraine by agonising trek1, trek2 or heteromers including them
    PE20200757A1 (en) 2017-07-11 2020-07-27 Compass Therapeutics Llc AGONIST ANTIBODIES THAT BIND HUMAN CD137 AND ITS USES
    KR102625929B1 (en) 2017-07-19 2024-01-16 브이아이비 브이지더블유 Serum albumin binder
    WO2019016310A1 (en) 2017-07-20 2019-01-24 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating cancers
    WO2019018757A1 (en) 2017-07-21 2019-01-24 Genentech, Inc. Therapeutic and diagnostic methods for cancer
    EP3658173A1 (en) 2017-07-25 2020-06-03 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for modulating monocytopoiesis
    CN110869050A (en) 2017-07-28 2020-03-06 豪夫迈·罗氏有限公司 Bispecific antibody formulations
    KR20200033798A (en) 2017-08-03 2020-03-30 알렉터 엘엘씨 Anti-CD33 antibodies and methods of use
    EP3444275A1 (en) 2017-08-16 2019-02-20 Exiris S.r.l. Monoclonal antibody anti-fgfr4
    WO2019036855A1 (en) 2017-08-21 2019-02-28 Adagene Inc. Anti-cd137 molecules and use thereof
    EP3676296A1 (en) 2017-08-30 2020-07-08 INSERM (Institut National de la Santé et de la Recherche Médicale) Anti-mesothelin radiolabelled single domain antibodies suitable for the imaging and treatment of cancers
    EP3457139A1 (en) 2017-09-19 2019-03-20 Promise Advanced Proteomics Antibody-like peptides for quantifying therapeutic antibodies
    US20200216542A1 (en) 2017-09-20 2020-07-09 Chugai Seiyaku Kabushiki Kaisha Dosage regimen for combination therapy using pd-1 axis binding antagonists and gpc3 targeting agent
    JP7330174B2 (en) 2017-09-20 2023-08-21 アンスティチュ ナショナル ドゥ ラ サンテ エ ドゥ ラ ルシェルシュ メディカル Methods and pharmaceutical compositions for modulating autophagy
    TW201922780A (en) 2017-09-25 2019-06-16 美商健生生物科技公司 Safe and effective method of treating Lupus with anti-IL12/IL23 antibody
    CN111246885A (en) 2017-10-20 2020-06-05 豪夫迈·罗氏有限公司 Method for generating multispecific antibodies from monospecific antibodies
    WO2019081456A1 (en) 2017-10-24 2019-05-02 Bayer Aktiengesellschaft Use of activators and stimulators of sgc comprising a beta2 subunit
    TWI832824B (en) 2017-10-30 2024-02-21 瑞士商赫孚孟拉羅股份公司 Method for in vivo generation of multispecific antibodies from monospecific antibodies
    WO2019089753A2 (en) 2017-10-31 2019-05-09 Compass Therapeutics Llc Cd137 antibodies and pd-1 antagonists and uses thereof
    US11873347B2 (en) 2017-10-31 2024-01-16 Vib Vzw Antigen-binding chimeric proteins and methods and uses thereof
    PE20210844A1 (en) 2017-11-01 2021-05-10 Hoffmann La Roche CONTORSBODIES 2 + BI-SPECIFIC
    EP3704150A1 (en) 2017-11-01 2020-09-09 F. Hoffmann-La Roche AG The compbody - a multivalent target binder
    CN111246884A (en) 2017-11-01 2020-06-05 豪夫迈·罗氏有限公司 Novel antigen binding molecules comprising trimers of TNF family ligands
    KR20200084006A (en) 2017-11-01 2020-07-09 에프. 호프만-라 로슈 아게 Combination therapy with targeted OX40 agonists
    JP2021502066A (en) 2017-11-06 2021-01-28 ジェネンテック, インコーポレイテッド Cancer diagnosis and therapy
    CA3082365A1 (en) 2017-11-09 2019-05-16 Pinteon Therapeutics Inc. Methods and compositions for the generation and use of humanized conformation-specific phosphorylated tau antibodies
    US11787874B2 (en) 2017-11-15 2023-10-17 Novo Nordisk A/S Factor X binders enhancing FX activation
    EP3713961A2 (en) 2017-11-20 2020-09-30 Compass Therapeutics LLC Cd137 antibodies and tumor antigen-targeting antibodies and uses thereof
    WO2019101995A1 (en) 2017-11-27 2019-05-31 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for cardiac regeneration
    CA3083259A1 (en) 2017-11-28 2019-06-06 Chugai Seiyaku Kabushiki Kaisha Polypeptide including antigen-binding domain and carrying section
    BR112020010514A2 (en) 2017-11-29 2020-11-24 Csl Limited method to treat or prevent ischemia-reperfusion injury
    EP3717515A2 (en) 2017-12-01 2020-10-07 Seattle Genetics, Inc. Cd47 (masked) antibodies and uses thereof for treating cancer
    KR20200090838A (en) 2017-12-01 2020-07-29 시애틀 지네틱스, 인크. Humanized anti-LIV1 antibody for the treatment of breast cancer
    TW201934578A (en) 2017-12-14 2019-09-01 瑞士商赫孚孟拉羅股份公司 treatment method
    AU2018388791A1 (en) 2017-12-19 2020-07-16 The Rockefeller University Human IgG Fc domain variants with improved effector function
    EP3502140A1 (en) 2017-12-21 2019-06-26 F. Hoffmann-La Roche AG Combination therapy of tumor targeted icos agonists with t-cell bispecific molecules
    WO2019122046A1 (en) 2017-12-21 2019-06-27 F. Hoffmann-La Roche Ag Universal reporter cell assay for specificity test of novel antigen binding moieties
    CN111492243A (en) 2017-12-21 2020-08-04 豪夫迈·罗氏有限公司 CAR-T cell assay for specific testing of novel antigen binding modules
    TWI805665B (en) 2017-12-21 2023-06-21 瑞士商赫孚孟拉羅股份公司 Antibodies binding to hla-a2/wt1
    US20190211098A1 (en) 2017-12-22 2019-07-11 Genentech, Inc. Use of pilra binding agents for treatment of a disease
    CA3082280A1 (en) 2017-12-28 2019-07-04 Nanjing Legend Biotech Co., Ltd. Single-domain antibodies and variants thereof against tigit
    CN111886246A (en) 2017-12-29 2020-11-03 艾莱克特有限责任公司 anti-TMEM 106B antibodies and methods of use thereof
    WO2019134946A1 (en) 2018-01-04 2019-07-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating melanoma resistant
    EP3740507A4 (en) 2018-01-15 2022-08-24 Nanjing Legend Biotech Co., Ltd. Single-domain antibodies and variants thereof against pd-1
    CA3088649A1 (en) 2018-01-16 2019-07-25 Lakepharma, Inc. Bispecific antibody that binds cd3 and another target
    JP2021510594A (en) 2018-01-25 2021-04-30 アンスティチュ ナショナル ドゥ ラ サンテ エ ドゥ ラ ルシェルシュ メディカル Antagonist of IL-33 for use in methods of preventing ischemia-reperfusion injury of organs
    WO2019149715A1 (en) 2018-01-31 2019-08-08 F. Hoffmann-La Roche Ag Stabilized immunoglobulin domains
    US20200354457A1 (en) 2018-01-31 2020-11-12 Hoffmann-La Roche Inc. Bispecific antibodies comprising an antigen-binding site binding to lag3
    CN111971301A (en) 2018-01-31 2020-11-20 艾莱克特有限责任公司 anti-MS 4A4A antibodies and methods of use thereof
    WO2019150309A1 (en) 2018-02-02 2019-08-08 Hammack Scott Modulators of gpr68 and uses thereof for treating and preventing diseases
    WO2019148445A1 (en) 2018-02-02 2019-08-08 Adagene Inc. Precision/context-dependent activatable antibodies, and methods of making and using the same
    WO2019148444A1 (en) 2018-02-02 2019-08-08 Adagene Inc. Anti-ctla4 antibodies and methods of making and using the same
    JP2021512947A (en) 2018-02-06 2021-05-20 アブリンクス・エヌ・フェー How to treat the first episode of TTP with an immunoglobulin single variable domain
    JP7475275B2 (en) 2018-02-08 2024-04-26 ジェネンテック, インコーポレイテッド Bispecific antigen-binding molecules and methods of use thereof
    TWI829667B (en) 2018-02-09 2024-01-21 瑞士商赫孚孟拉羅股份公司 Antibodies binding to gprc5d
    CA3088557C (en) 2018-02-09 2024-02-27 Genentech, Inc. Therapeutic and diagnostic methods for mast cell-mediated inflammatory diseases
    CA3091311A1 (en) 2018-02-16 2019-08-22 Inserm (Institut National De La Sante Et De La Recherche Medicale) Use of antagonists of cxcr3b for treating vitiligo
    US20200399376A1 (en) 2018-02-26 2020-12-24 Genentech, Inc. Dosing for treatment with anti-tigit and anti-pd-l1 antagonist antibodies
    CA3092421A1 (en) 2018-03-01 2019-09-06 Vrije Universiteit Brussel Human pd-l1-binding immunoglobulins
    EP3759491A1 (en) 2018-03-01 2021-01-06 H. Hoffnabb-La Roche Ag Specificity assay for novel target antigen binding moieties
    KR20200129125A (en) 2018-03-05 2020-11-17 얀센 바이오테크 인코포레이티드 How to treat Crohn's disease with anti-IL23 specific antibodies
    CN111655731A (en) 2018-03-13 2020-09-11 豪夫迈·罗氏有限公司 Combination therapy with a targeted 4-1BB (CD137) agonist
    KR20200132913A (en) 2018-03-13 2020-11-25 에프. 호프만-라 로슈 아게 Therapeutic combination of 4-1BB agonist and anti-CD20 antibody
    US20200040103A1 (en) 2018-03-14 2020-02-06 Genentech, Inc. Anti-klk5 antibodies and methods of use
    BR112020014591A2 (en) 2018-03-14 2020-12-01 Beijing Xuanyi Pharmasciences Co., Ltd. anticlaudin antibodies 18.2
    TWI827585B (en) 2018-03-15 2024-01-01 日商中外製藥股份有限公司 Anti-dengue virus antibodies having cross-reactivity to zika virus and methods of use
    US11661452B2 (en) 2018-03-20 2023-05-30 WuXi Biologics Ireland Limited Anti-lag-3 antibody polypeptide
    KR20200133376A (en) 2018-03-21 2020-11-27 알렉소 온콜로지 인크. Antibodies to signal-regulatory protein alpha and methods of use
    PL3768701T3 (en) 2018-03-23 2024-02-19 Université Libre de Bruxelles Wnt signaling agonist molecules
    WO2019191552A1 (en) 2018-03-29 2019-10-03 Genentech, Inc. Modulating lactogenic activity in mammalian cells
    WO2019185040A1 (en) 2018-03-30 2019-10-03 Nanjing Legend Biotech Co., Ltd. Single-domain antibodies against lag-3 and uses thereof
    WO2019192432A1 (en) 2018-04-02 2019-10-10 上海博威生物医药有限公司 Lymphocyte activation gene-3 (lag-3) binding antibody and use thereof
    WO2019193375A1 (en) 2018-04-04 2019-10-10 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of fzd7 inhibitors for the treatment of retinal neovascularization
    WO2019192973A1 (en) 2018-04-04 2019-10-10 F. Hoffmann-La Roche Ag Diagnostic assays to detect tumor antigens in cancer patients
    TW202011029A (en) 2018-04-04 2020-03-16 美商建南德克公司 Methods for detecting and quantifying FGF21
    CN112424601A (en) 2018-04-04 2021-02-26 豪夫迈·罗氏有限公司 Diagnostic assay for detecting tumor antigens in cancer patients
    EP3552631A1 (en) 2018-04-10 2019-10-16 Inatherys Antibody-drug conjugates and their uses for the treatment of cancer
    KR20200144114A (en) 2018-04-13 2020-12-28 에프. 호프만-라 로슈 아게 HER-2 targeting antigen binding molecule comprising 4-1BBL
    AR114789A1 (en) 2018-04-18 2020-10-14 Hoffmann La Roche ANTI-HLA-G ANTIBODIES AND THE USE OF THEM
    AR115052A1 (en) 2018-04-18 2020-11-25 Hoffmann La Roche MULTI-SPECIFIC ANTIBODIES AND THE USE OF THEM
    WO2019207030A1 (en) 2018-04-26 2019-10-31 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for predicting a response with an immune checkpoint inhibitor in a patient suffering from a lung cancer
    JP7402541B2 (en) 2018-05-03 2023-12-21 ユニバーシティ オブ ロチェスター Anti-influenza neuraminidase monoclonal antibody and its use
    CA3100007A1 (en) 2018-05-14 2019-11-21 Werewolf Therapeutics, Inc. Activatable interleukin-2 polypeptides and methods of use thereof
    JP2021523741A (en) 2018-05-14 2021-09-09 ウェアウルフ セラピューティクス, インコーポレイテッド Activateable interleukin 12 polypeptide and how to use it
    MX2020012378A (en) 2018-05-18 2021-02-09 Hoffmann La Roche Targeted intracellular delivery of large nucleic acids.
    EP3569618A1 (en) 2018-05-19 2019-11-20 Boehringer Ingelheim International GmbH Antagonizing cd73 antibody
    MA52753A (en) 2018-05-25 2021-04-21 Alector Llc ANTI-SIRPA ANTIBODIES AND THEIR METHODS OF USE
    US20210253672A1 (en) 2018-05-30 2021-08-19 Chugai Seiyaku Kabushiki Kaisha Ligand-binding molecule containing single domain antibody
    CN112367996A (en) 2018-06-01 2021-02-12 卫材R&D管理有限公司 Methods of using splice modulators
    JP7390315B2 (en) 2018-06-01 2023-12-01 エーザイ・アール・アンド・ディー・マネジメント株式会社 Splicing modulator antibody-drug conjugates and methods of use thereof
    EP3801613A1 (en) 2018-06-04 2021-04-14 Bayer Aktiengesellschaft Inhibitors of shp2
    EP3805400A4 (en) 2018-06-04 2022-06-29 Chugai Seiyaku Kabushiki Kaisha Antigen-binding molecule showing changed half-life in cytoplasm
    TW202016151A (en) 2018-06-09 2020-05-01 德商百靈佳殷格翰國際股份有限公司 Multi-specific binding proteins for cancer treatment
    CA3103629A1 (en) 2018-06-15 2019-12-19 Flagship Pioneering Innovations V, Inc. Increasing immune activity through modulation of postcellular signaling factors
    WO2019244107A1 (en) 2018-06-21 2019-12-26 Daiichi Sankyo Company, Limited Compositions including cd3 antigen binding fragments and uses thereof
    EP3810653A1 (en) 2018-06-23 2021-04-28 F. Hoffmann-La Roche AG Methods of treating lung cancer with a pd-1 axis binding antagonist, a platinum agent, and a topoisomerase ii inhibitor
    JP2021529520A (en) 2018-06-29 2021-11-04 アレクトル エルエルシー Anti-SIRP-Beta 1 antibody and how to use it
    EP3818083A2 (en) 2018-07-03 2021-05-12 Elstar Therapeutics, Inc. Anti-tcr antibody molecules and uses thereof
    CN112424228A (en) 2018-07-04 2021-02-26 豪夫迈·罗氏有限公司 Novel bispecific agonistic 4-1BB antigen-binding molecules
    WO2020008083A1 (en) 2018-07-05 2020-01-09 Consejo Superior De Investigaciones Científicas Therapeutic target in chemokine receptors for the screening of compounds useful for the treatment of pathological processes involving chemokine signaling
    KR20230065382A (en) 2018-07-13 2023-05-11 알렉터 엘엘씨 Anti-sortilin antibodies and methods of use thereof
    JP2021530697A (en) 2018-07-18 2021-11-11 ヤンセン バイオテツク,インコーポレーテツド Sustained response predictor after treatment with anti-IL23 specific antibody
    AU2019305637A1 (en) 2018-07-18 2021-03-11 Genentech, Inc. Methods of treating lung cancer with a PD-1 axis binding antagonist, an antimetabolite, and a platinum agent
    CA3106114A1 (en) 2018-07-20 2020-01-23 Surface Oncology, Inc. Anti-cd112r compositions and methods
    CN113286819A (en) 2018-08-01 2021-08-20 感应检查疗法公司 anti-BTN 3A antibodies and their use in treating cancer or infectious disorders
    SG11202101152QA (en) 2018-08-03 2021-03-30 Chugai Pharmaceutical Co Ltd Antigen-binding molecule containing two antigen-binding domains that are linked to each other
    JP2021533149A (en) 2018-08-08 2021-12-02 ジェネンテック, インコーポレイテッド Use of tryptophan derivatives and L-methionine for protein formulations
    KR102259473B1 (en) 2018-08-10 2021-06-02 추가이 세이야쿠 가부시키가이샤 Anti-CD137 antigen binding molecules and uses thereof
    TW202021618A (en) 2018-08-17 2020-06-16 美商23與我有限公司 Anti-il1rap antibodies and methods of use thereof
    US11548938B2 (en) 2018-08-21 2023-01-10 Quidel Corporation DbpA antibodies and uses thereof
    SG11202101552SA (en) 2018-08-31 2021-03-30 Alector Llc Anti-cd33 antibodies and methods of use thereof
    GB201814281D0 (en) 2018-09-03 2018-10-17 Femtogenix Ltd Cytotoxic agents
    WO2020049026A1 (en) 2018-09-05 2020-03-12 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating asthma and allergic diseases
    GB2576914A (en) 2018-09-06 2020-03-11 Kymab Ltd Antigen-binding molecules comprising unpaired variable domains produced in mammals
    US20220048995A1 (en) 2018-09-10 2022-02-17 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of an inhibitor of ntsr1 activation or expression for preventing weight loss, muscle loss, and protein blood level decrease in subjects in need thereof
    WO2020053125A1 (en) 2018-09-10 2020-03-19 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for the treatment of neurofibromatosis
    WO2020058201A1 (en) 2018-09-17 2020-03-26 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of inhibitors of phosphatase activity of soluble epoxide for the treatment of cardiometabolic diseases
    AR114732A1 (en) 2018-09-18 2020-10-07 Hoffmann La Roche USE OF A CATEPSIN S INHIBITOR AGAINST THE FORMATION OF ANTI-DRUG ANTIBODIES
    CN113396160A (en) 2018-09-19 2021-09-14 国家医疗保健研究所 Methods and pharmaceutical compositions for treating cancer resistant to immune checkpoint therapy
    JP2022501332A (en) 2018-09-19 2022-01-06 ジェネンテック, インコーポレイテッド How to treat and diagnose bladder cancer
    CA3111809A1 (en) 2018-09-21 2020-03-26 Genentech, Inc. Diagnostic methods for triple-negative breast cancer
    KR20230148273A (en) 2018-09-24 2023-10-24 얀센 바이오테크 인코포레이티드 Safe and effective method of treating ulcerative colitis with anti-IL12/IL23 antibody
    US20220033486A1 (en) 2018-09-25 2022-02-03 Inserm (Institut National De La Santè Et De La Recherch Médicale) Use of antagonists of th17 cytokines for the treatment of bronchial remodeling in patients suffering from allergic asthma
    MX2021003543A (en) 2018-09-27 2021-06-23 Xilio Dev Inc Masked cytokine polypeptides.
    WO2020070035A1 (en) 2018-10-01 2020-04-09 F. Hoffmann-La Roche Ag Bispecific antigen binding molecules with trivalent binding to cd40
    WO2020070062A1 (en) 2018-10-01 2020-04-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of tim-3 inhibitors for the treatment of exacerbations in patients suffering from severe asthma
    CA3113548A1 (en) 2018-10-01 2020-04-09 F. Hoffmann-La Roche Ag Bispecific antigen binding molecules comprising anti-fap clone 212
    US20210340278A1 (en) 2018-10-04 2021-11-04 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical composition for the treatment of mucosal inflammatory diseases
    WO2020070288A1 (en) 2018-10-05 2020-04-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and systems for controlling the agonistic properties of antibody variable domains by light
    EP3636657A1 (en) 2018-10-08 2020-04-15 Ablynx N.V. Chromatography-free antibody purification method
    US20210347898A1 (en) 2018-10-09 2021-11-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of alpha-v-integrin (cd51) inhibitors for the treatment of cardiac fibrosis
    US20200109200A1 (en) 2018-10-09 2020-04-09 Genentech, Inc. Methods and systems for determining synapse formation
    WO2020081493A1 (en) 2018-10-16 2020-04-23 Molecular Templates, Inc. Pd-l1 binding proteins
    JP2022512744A (en) 2018-10-18 2022-02-07 ジェネンテック, インコーポレイテッド Diagnosis and treatment for sarcomatoid kidney cancer
    WO2020079162A1 (en) 2018-10-18 2020-04-23 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for inducing full ablation of hematopoiesis
    AU2019365238A1 (en) 2018-10-24 2021-05-13 F. Hoffmann-La Roche Ag Conjugated chemical inducers of degradation and methods of use
    CA3117051A1 (en) 2018-11-05 2020-05-14 Genentech, Inc. Methods of producing two chain proteins in prokaryotic host cells
    US11046769B2 (en) 2018-11-13 2021-06-29 Compass Therapeutics Llc Multispecific binding constructs against checkpoint molecules and uses thereof
    GB201818477D0 (en) 2018-11-13 2018-12-26 Emstopa Ltd Tissue plasminogen activator antibodies and method of use thereof
    WO2020104479A1 (en) 2018-11-20 2020-05-28 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating cancers and resistant cancers with anti transferrin receptor 1 antibodies
    US20220332800A1 (en) 2018-11-20 2022-10-20 Takeda Vaccines, Inc. Novel anti-zika virus antibodies and uses thereof
    MA55149A (en) 2018-11-20 2021-09-29 Janssen Biotech Inc SAFE AND EFFECTIVE PROCESS FOR TREATING PSORIASIS WITH A SPECIFIC ANTI-IL-23 ANTIBODY
    AU2018451747A1 (en) 2018-12-06 2021-06-17 F. Hoffmann-La Roche Ag Combination therapy of diffuse large B-cell lymphoma comprising an anti-CD79b immunoconjugates, an alkylating agent and an anti-CD20 antibody
    WO2020115261A1 (en) 2018-12-07 2020-06-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating melanoma
    EP3894427A1 (en) 2018-12-10 2021-10-20 Genentech, Inc. Photocrosslinking peptides for site specific conjugation to fc-containing proteins
    WO2020120592A1 (en) 2018-12-12 2020-06-18 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for predicting and treating melanoma
    AU2019397062A1 (en) 2018-12-13 2021-05-06 Eisai R&D Management Co., Ltd. Herboxidiene antibody-drug conjugates and methods of use
    US20220017611A1 (en) 2018-12-13 2022-01-20 INSERM (Institut National de la Santé et de la Recherche Médicale) New anti tau svqivykpv epitope single domain antibody
    US20200197517A1 (en) 2018-12-18 2020-06-25 Janssen Biotech, Inc. Safe and Effective Method of Treating Lupus with Anti-IL12/IL23 Antibody
    AR117327A1 (en) 2018-12-20 2021-07-28 23Andme Inc ANTI-CD96 ANTIBODIES AND METHODS OF USE OF THEM
    PE20211295A1 (en) 2018-12-21 2021-07-20 23Andme Inc ANTI IL-36 ANTIBODIES AND PROCEDURES FOR THE USE OF THESE
    SG10202105788SA (en) 2018-12-21 2021-06-29 Hoffmann La Roche Antibodies binding to cd3
    AU2019410073A1 (en) 2018-12-21 2021-06-10 F. Hoffmann-La Roche Ag Tumor-targeted agonistic CD28 antigen binding molecules
    WO2020127885A1 (en) 2018-12-21 2020-06-25 INSERM (Institut National de la Santé et de la Recherche Médicale) Compositions for treating cancers and resistant cancers
    TW202030204A (en) 2018-12-21 2020-08-16 瑞士商赫孚孟拉羅股份公司 Tumor-targeted superagonistic cd28 antigen binding molecules
    JP2022514082A (en) 2018-12-21 2022-02-09 ジェネンテック, インコーポレイテッド Methods of Producing Polypeptides Using Cell Lines Resistant to Apoptosis
    EA202191784A1 (en) 2018-12-26 2021-10-20 Сити Оф Хоуп ACTIVATED MASKED BINDING PROTEINS TO CTLA4
    EP3902830A1 (en) 2018-12-30 2021-11-03 F. Hoffmann-La Roche AG Anti-rabbit cd19 antibodies and methods of use
    MX2021008121A (en) 2019-01-03 2021-12-10 Inst Nat Sante Rech Med Methods and pharmaceutical compositions for enhancing cd8+ t cell-dependent immune responses in subjects suffering from cancer.
    AU2020208193A1 (en) 2019-01-14 2021-07-29 BioNTech SE Methods of treating cancer with a PD-1 axis binding antagonist and an RNA vaccine
    JP2022518208A (en) 2019-01-15 2022-03-14 ヤンセン バイオテツク,インコーポレーテツド Anti-TNF Antibodies, Compositions, and Methods for the Treatment of Juvenile Idiopathic Arthritis
    WO2020152544A1 (en) 2019-01-23 2020-07-30 Janssen Biotech, Inc. Anti-tnf antibody compositions for use in methods for the treatment of psoriatic arthritis
    BR112021014481A2 (en) 2019-01-23 2021-10-13 Genentech, Inc. METHOD FOR PRODUCING A MULTIMERIC POLYPEPTIDE, METHOD FOR PRODUCING A BIESPECIFIC ANTIBODY, PLURALITY OF MULTIMERIC POLYPEPTIDES, RECOMBINANT EUKARYOTIC HOST CELLS, METHOD FOR IDENTIFYING A COMBINATION OF SEQUENCES AND POLYNUCLEOTIDE KIT
    US20220089770A1 (en) 2019-01-24 2022-03-24 Chugai Seiyaku Kabushiki Kaisha Novel cancer antigens and antibodies of said antigens
    EP3917957A1 (en) 2019-01-28 2021-12-08 Maple Biotech LLC Psmp antagonists for use in treatment of fibrotic disease of the lung, kidney or liver
    GB201901197D0 (en) 2019-01-29 2019-03-20 Femtogenix Ltd G-A Crosslinking cytotoxic agents
    WO2020161083A1 (en) 2019-02-04 2020-08-13 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for modulating blood-brain barrier
    JP2022519649A (en) 2019-02-08 2022-03-24 ジェネンテック, インコーポレイテッド How to diagnose and treat cancer
    KR102398485B1 (en) 2019-02-18 2022-05-16 에이티비 테라퓨틱스 Methods of Production of Binder-Toxin Fusion Proteins in Plant Cells or Whole Plants
    WO2020169698A1 (en) 2019-02-21 2020-08-27 F. Hoffmann-La Roche Ag Sensitization of cancer cells to tnf by bet inhibition
    WO2020169707A1 (en) 2019-02-21 2020-08-27 INSERM (Institut National de la Santé et de la Recherche Médicale) Foxo1 inhibitor for use in the treatment of latent virus infection
    BR112021016923A2 (en) 2019-02-27 2021-11-03 Genentech Inc Methods for treating a patient with hematologic cancer, methods for treating a patient with relapsed or refractory mm, methods for treating a patient having a relapsed or refractory lnh, and kits
    PE20220495A1 (en) 2019-03-01 2022-04-07 Allogene Therapeutics Inc CHIMERIC ANTIGENIC RECEPTORS AND BINDING AGENTS TARGETING DLL3
    US20220137054A1 (en) 2019-03-05 2022-05-05 INSERM (Institut National de la Santé et de la Recherche Médicale) New biomarkers and biotargets in renal cell carcinoma
    JP7402247B2 (en) 2019-03-08 2023-12-20 ジェネンテック, インコーポレイテッド Methods for detecting and quantifying membrane-bound proteins of extracellular vesicles
    KR20210142002A (en) 2019-03-14 2021-11-23 얀센 바이오테크 인코포레이티드 Methods of Preparation for Producing Anti-TNF Antibody Compositions
    MA55283A (en) 2019-03-14 2022-01-19 Janssen Biotech Inc METHODS FOR PRODUCING ANTI-TNF ANTIBODY COMPOSITIONS
    CA3133388A1 (en) 2019-03-14 2020-09-17 Janssen Biotech, Inc. Methods for producing anti-tnf antibody compositions
    CN113825765A (en) 2019-03-14 2021-12-21 詹森生物科技公司 Method for producing anti-IL 12/IL23 antibody composition
    CR20210467A (en) 2019-03-14 2021-10-07 Genentech Inc Treatment of cancer with her2xcd3 bispecific antibodies in combination with anti-her2 mab
    CA3199205A1 (en) 2019-03-15 2020-09-24 Cartesian Therapeutics, Inc. Anti-bcma chimeric antigen receptors
    EA202192459A1 (en) 2019-03-18 2021-11-25 Янссен Байотек, Инк. METHOD FOR TREATMENT OF PSORIASIS WITH ANTIBODY TO IL12 / IL23 IN CHILDREN
    EP3943108A4 (en) 2019-03-19 2023-01-04 Chugai Seiyaku Kabushiki Kaisha Antigen-binding molecule containing antigen-binding domain of which binding activity to antigen is changed depending on mta, and library for obtaining said antigen-binding domain
    WO2020201073A1 (en) 2019-03-29 2020-10-08 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for the treatment of keloid, hypertrophic scars and/or hyperpigmentation disorders
    BR112021019365A2 (en) 2019-03-29 2021-11-30 Genentech Inc Methods for identifying an individual who has cancer, for selecting a therapy, for identifying a protein-protein interaction and for identifying a modulator, methods for treating an individual with cancer, identifying, selecting a therapy and identifying a modulator , collections of polypeptides, vectors and cells and isolated modulators
    EP3947737A2 (en) 2019-04-02 2022-02-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods of predicting and preventing cancer in patients having premalignant lesions
    EP3946377A1 (en) 2019-04-03 2022-02-09 Orega Biotech Combination therapies based on pd1 and il-17b inhibitors
    EP3946416A2 (en) 2019-04-04 2022-02-09 Bayer Aktiengesellschaft Agonists of adiponectin
    SG11202109901TA (en) 2019-04-09 2021-10-28 Hospital For Special Surgery Protein binders for irhom2
    EP3952996A1 (en) 2019-04-12 2022-02-16 F. Hoffmann-La Roche AG Bispecific antigen binding molecules comprising lipocalin muteins
    JP2022527565A (en) 2019-04-12 2022-06-02 エフ・ホフマン-ラ・ロシュ・アクチェンゲゼルシャフト Treatment of cancer with CEA CD3 bispecific antibodies and Wnt signaling inhibitors
    CA3134522A1 (en) 2019-04-19 2020-10-22 Genentech, Inc. Anti-mertk antibodies and their methods of use
    CN113748201A (en) 2019-04-26 2021-12-03 艾洛基治疗公司 Methods of making allogeneic CAR T cells
    WO2020221796A1 (en) 2019-04-30 2020-11-05 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating melanoma
    CA3133821A1 (en) 2019-05-03 2020-11-12 Genentech, Inc. Methods of treating cancer with an anti-pd-l1 antibody
    EP3962493A2 (en) 2019-05-03 2022-03-09 Flagship Pioneering Innovations V, Inc. Methods of modulating immune activity/level of irf or sting or of treating cancer, comprising the administration of a sting modulator and/or purinergic receptor modulator or postcellular signaling factor
    SG11202112541RA (en) 2019-05-14 2021-12-30 Werewolf Therapeutics Inc Separation moieties and methods and use thereof
    TW202108178A (en) 2019-05-14 2021-03-01 美商建南德克公司 METHODS OF USING ANTI-CD79b IMMUNOCONJUGATES TO TREAT FOLLICULAR LYMPHOMA
    US11780911B2 (en) 2019-05-23 2023-10-10 Janssen Biotech, Inc. Method of treating inflammatory bowel disease with a combination therapy of antibodies to IL-23 and TNF alpha
    EP3976067A1 (en) 2019-05-28 2022-04-06 Vib Vzw Cd8+ t-cells lacking plexins and their application in cancer treatment
    WO2020239945A1 (en) 2019-05-28 2020-12-03 Vib Vzw Cancer treatment by targeting plexins in the immune compartment
    CN113939531A (en) 2019-06-03 2022-01-14 詹森生物科技公司 anti-TNF antibody compositions and methods for treating psoriatic arthritis
    MX2021014882A (en) 2019-06-03 2022-03-25 Janssen Biotech Inc Anti-tnf antibodies, compositions, and methods for the treatment of active ankylosing spondylitis.
    JPWO2020246567A1 (en) 2019-06-05 2020-12-10
    KR20220017430A (en) 2019-06-05 2022-02-11 추가이 세이야쿠 가부시키가이샤 Antibody Cleavage Site Binding Molecules
    CN114008713A (en) 2019-06-07 2022-02-01 中外制药株式会社 Information processing system, information processing method, program, and method for producing antigen-binding molecule or protein
    AU2020291527A1 (en) 2019-06-11 2022-01-20 Alector Llc Anti-Sortilin antibodies for use in therapy
    CN114206938A (en) 2019-06-20 2022-03-18 国家医疗保健研究所 Anti-protease NEXIN-1 conformational single domain antibodies and uses thereof
    WO2020260329A1 (en) 2019-06-26 2020-12-30 F. Hoffmann-La Roche Ag Fusion of an antibody binding cea and 4-1bbl
    WO2020260326A1 (en) 2019-06-27 2020-12-30 F. Hoffmann-La Roche Ag Novel icos antibodies and tumor-targeted antigen binding molecules comprising them
    WO2021001289A1 (en) 2019-07-02 2021-01-07 F. Hoffmann-La Roche Ag Immunoconjugates comprising a mutant interleukin-2 and an anti-cd8 antibody
    AR119393A1 (en) 2019-07-15 2021-12-15 Hoffmann La Roche ANTIBODIES THAT BIND NKG2D
    EP4004046A1 (en) 2019-07-22 2022-06-01 Seagen Inc. Humanized anti-liv1 antibodies for the treatment of cancer
    US11667699B2 (en) 2019-07-31 2023-06-06 Alector Llc Anti-MS4A4A antibodies and methods of use thereof
    BR112022001460A2 (en) 2019-07-31 2022-03-22 Hoffmann La Roche Bispecific antigen-binding molecules, one or more isolated polynucleotides, host cell, method for producing a bispecific antigen-binding molecule and for treating a disease in an individual, pharmaceutical composition, use of the bispecific antigen-binding molecule and invention
    WO2021018925A1 (en) 2019-07-31 2021-02-04 F. Hoffmann-La Roche Ag Antibodies binding to gprc5d
    CN114401743A (en) 2019-08-02 2022-04-26 法国国家健康和医学研究院 Use of neutralizing granzyme B for providing cardioprotection in a subject who has experienced a myocardial infarction
    WO2021028752A1 (en) 2019-08-15 2021-02-18 Janssen Biotech, Inc. Anti-tfn antibodies for treating type i diabetes
    WO2021048292A1 (en) 2019-09-11 2021-03-18 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating melanoma
    MX2022002963A (en) 2019-09-12 2022-04-06 Genentech Inc Compositions and methods of treating lupus nephritis.
    MX2022003212A (en) 2019-09-18 2022-04-25 Genentech Inc Anti-klk7 antibodies, anti-klk5 antibodies, multispecific anti-klk5/klk7 antibodies, and methods of use.
    WO2021055816A1 (en) 2019-09-18 2021-03-25 Molecular Templates, Inc. Pd-l1 binding molecules comprising shiga toxin a subunit scaffolds
    TW202126699A (en) 2019-09-20 2021-07-16 美商建南德克公司 Dosing for anti-tryptase antibodies
    US11667709B2 (en) 2019-09-24 2023-06-06 Industrial Technology Research Institute Anti-TIGIT antibodies and methods of use
    CA3151406A1 (en) 2019-09-27 2021-04-01 Raymond D. Meng Dosing for treatment with anti-tigit and anti-pd-l1 antagonist antibodies
    CN114829401A (en) 2019-09-27 2022-07-29 南京金斯瑞生物科技有限公司 anti-VHH domain antibodies and uses thereof
    AU2020360849A1 (en) 2019-09-30 2022-04-14 New York Society For The Relief Of The Ruptured And Crippled, Maintaining The Hospital For Special Surgery Protein binders to iRhom2 epitopes
    WO2021063968A1 (en) 2019-09-30 2021-04-08 INSERM (Institut National de la Santé et de la Recherche Médicale) Method and composition for diagnosing chronic obstructive pulmonary disease
    TW202128756A (en) 2019-10-02 2021-08-01 德商百靈佳殷格翰國際股份有限公司 Multi-specific binding proteins for cancer treatment
    EP4037714A1 (en) 2019-10-03 2022-08-10 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for modulating macrophages polarization
    EP4037710A1 (en) 2019-10-04 2022-08-10 Institut National de la Santé et de la Recherche Médicale (INSERM) Methods and pharmaceutical composition for the treatment of ovarian cancer, breast cancer or pancreatic cancer
    BR112022007216A2 (en) 2019-10-18 2022-08-23 Genentech Inc METHODS FOR TREATMENT OF DIFFUSE LYMPHOMA, KIT AND IMMUNOCONJUGATE
    WO2021078359A1 (en) 2019-10-21 2021-04-29 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of inhibitors of cubilin for the treatment of chronic kidney diseases
    KR20220093323A (en) 2019-11-05 2022-07-05 에프. 호프만-라 로슈 아게 Treatment of cancer with HLA-A2/WT1 x CD3 bispecific antibody and lenalidomide
    KR20220092580A (en) 2019-11-06 2022-07-01 제넨테크, 인크. Diagnosis and treatment methods for the treatment of blood cancer
    EP4055053A1 (en) 2019-11-07 2022-09-14 Eisai R&D Management Co., Ltd. Anti-mesothelin eribulin antibody-drug conjugates and methods of use
    CN114867737A (en) 2019-11-12 2022-08-05 国家医疗保健研究所 Novel serological markers for latent toxoplasmosis
    CN115151566A (en) 2019-11-15 2022-10-04 普利安特治疗公司 Compositions and methods for activating integrins
    EP4069301A1 (en) 2019-12-04 2022-10-12 Bayer Aktiengesellschaft Inhibitors of shp2
    GB201918279D0 (en) 2019-12-12 2020-01-29 Vib Vzw Glycosylated single chain immunoglobulin domains
    IL293827A (en) 2019-12-13 2022-08-01 Alector Llc Anti-mertk antibodies and methods of use thereof
    CA3163950A1 (en) 2019-12-13 2021-06-17 Genentech, Inc. Anti-ly6g6d antibodies and methods of use
    JP2023509359A (en) 2019-12-17 2023-03-08 フラグシップ パイオニアリング イノベーションズ ブイ,インコーポレーテッド Combination anticancer therapy with inducers of iron-dependent cell degradation
    JP7296467B2 (en) 2019-12-18 2023-06-22 エフ・ホフマン-ラ・ロシュ・アクチェンゲゼルシャフト Antibodies that bind to HLA-A2/MAGE-A4
    JP2023507083A (en) 2019-12-19 2023-02-21 クイデル コーポレーション monoclonal antibody fusion
    EP4081294A2 (en) 2019-12-23 2022-11-02 Genentech, Inc. Apolipoprotein l1-specific antibodies and methods of use
    AU2020414996A1 (en) 2019-12-23 2022-07-14 Eisai R&D Management Co., Ltd. Method for producing eribulin-based antibody-drug conjugate
    WO2021131021A1 (en) 2019-12-27 2021-07-01 中外製薬株式会社 Anti-ctla-4 antibody and use thereof
    BR112022012969A2 (en) 2020-01-09 2022-09-06 Hoffmann La Roche BINDING MOLECULES, ISOLATED NUCLEIC ACID MOLECULE, VECTOR, HOST CELL, PHARMACEUTICAL COMPOSITION, USES OF THE BINDING MOLECULE, METHODS FOR PRODUCING THE BINDING MOLECULE, TREATMENT OF AN INDIVIDUAL WITH CANCER AND SUPRARREGULAR OR PROLONGING CYTOTOTO INDEX CELL ACTIVITY WITH CANCER
    CN110818795B (en) 2020-01-10 2020-04-24 上海复宏汉霖生物技术股份有限公司 anti-TIGIT antibodies and methods of use
    US20230076415A1 (en) 2020-01-17 2023-03-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating melanoma
    WO2022050954A1 (en) 2020-09-04 2022-03-10 Genentech, Inc. Dosing for treatment with anti-tigit and anti-pd-l1 antagonist antibodies
    WO2021194481A1 (en) 2020-03-24 2021-09-30 Genentech, Inc. Dosing for treatment with anti-tigit and anti-pd-l1 antagonist antibodies
    KR20220136378A (en) 2020-01-31 2022-10-07 제넨테크, 인크. Method of Inducing Neoepitope-Specific T Cells Using PD-1 Axis Binding Antagonists and RNA Vaccines
    CN115397848A (en) 2020-02-05 2022-11-25 拉利玛生物医药公司 TAT peptide binding proteins and uses thereof
    AU2021218927A1 (en) 2020-02-10 2022-09-22 Shanghai Escugen Biotechnology Co., Ltd. Claudin 18.2 antibody and use thereof
    CA3167299A1 (en) 2020-02-10 2021-08-19 Shanghai Escugen Biotechnology Co., Ltd. Cldn18.2 antibody and use thereof
    TW202144395A (en) 2020-02-12 2021-12-01 日商中外製藥股份有限公司 Anti-CD137 antigen-binding molecule for use in cancer treatment
    JP2023514957A (en) 2020-02-28 2023-04-12 オレガ・バイオテック Combination therapy based on CTLA4 inhibitors and IL-17B inhibitors
    AU2021236306A1 (en) 2020-03-13 2022-09-15 Genentech, Inc. Anti-interleukin-33 antibodies and uses thereof
    AU2021236660A1 (en) 2020-03-19 2022-08-18 Genentech, Inc. Isoform-selective anti-TGF-beta antibodies and methods of use
    MX2022011752A (en) 2020-03-24 2022-10-18 Genentech Inc Tie2-binding agents and methods of use.
    KR20220159426A (en) 2020-03-26 2022-12-02 제넨테크, 인크. Modified mammalian cells with reduced host cell proteins
    CA3178461A1 (en) 2020-03-31 2021-10-07 Biotalys NV Anti-fungal polypeptides
    BR112022017526A2 (en) 2020-03-31 2022-10-18 Chugai Pharmaceutical Co Ltd METHOD FOR PRODUCING MULTI-SPECIFIC ANTIGEN-BINDING MOLECULES
    JP2023519962A (en) 2020-03-31 2023-05-15 アレクトル エルエルシー ANTI-MERTK ANTIBODY AND METHOD OF USE THEREOF
    US20230107644A1 (en) 2020-04-01 2023-04-06 University Of Rochester Monoclonal antibodies against the hemagglutinin (ha) and neuraminidase (na) of influenza h3n2 viruses
    AR121706A1 (en) 2020-04-01 2022-06-29 Hoffmann La Roche OX40 AND FAP-TARGETED BSPECIFIC ANTIGEN-BINDING MOLECULES
    EP4127724A1 (en) 2020-04-03 2023-02-08 Genentech, Inc. Therapeutic and diagnostic methods for cancer
    WO2021198511A1 (en) 2020-04-03 2021-10-07 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treatment of sars-cov-2 infection
    WO2021209402A2 (en) 2020-04-15 2021-10-21 F. Hoffmann-La Roche Ag Immunoconjugates
    EP4144758A4 (en) 2020-04-22 2024-05-15 Mabwell Shanghai Bioscience Co Ltd Single variable domain antibody targeting human programmed death ligand 1 (pd-l1) and derivative thereof
    BR112022021441A2 (en) 2020-04-24 2022-12-13 Genentech Inc METHODS TO TREAT FOLLICULAR LYMPHOMA AND DIFFUSE LARGE B-CELL LYMPHOMA AND KITS
    IL296664A (en) 2020-04-24 2022-11-01 Hoffmann La Roche Enzyme and pathway modulation with sulfhydryl compounds and their derivatives
    TW202206100A (en) 2020-04-27 2022-02-16 美商西健公司 Treatment for cancer
    WO2021222167A1 (en) 2020-04-28 2021-11-04 Genentech, Inc. Methods and compositions for non-small cell lung cancer immunotherapy
    SG11202112792WA (en) 2020-04-28 2021-12-30 Univ Rockefeller Neutralizing anti-sars-cov-2 antibodies and methods of use thereof
    CA3177562A1 (en) 2020-05-03 2021-11-11 Tong Zhu Antibody-drug conjugates (adcs) comprising an anti-trop-2 antibody, compositions comprising such adcs, as well as methods of making and using the same
    WO2021224401A1 (en) 2020-05-07 2021-11-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for determining a reference range of β-galactose exposure platelet
    US20230212260A1 (en) 2020-05-15 2023-07-06 Apogenix Ag Multi-specific immune modulators
    WO2021229104A1 (en) 2020-05-15 2021-11-18 Université de Liège Anti-cd38 single-domain antibodies in disease monitoring and treatment
    AU2021276332A1 (en) 2020-05-19 2022-11-17 Boehringer Ingelheim International Gmbh Binding molecules for the treatment of cancer
    AU2021274883A1 (en) 2020-05-20 2022-12-01 Centre National De La Recherche Scientifique - Cnrs - Synthetic single domain library
    CA3182333A1 (en) 2020-05-20 2021-11-25 Institut Curie Single domain antibodies and their use in cancer therapies
    EP4153222A1 (en) 2020-05-20 2023-03-29 Takeda Vaccines, Inc. Method for detection of zika virus specific antibodies
    WO2021236225A1 (en) 2020-05-20 2021-11-25 Takeda Vaccines, Inc. Method for detection of zika virus specific antibodies
    WO2021236223A1 (en) 2020-05-20 2021-11-25 Takeda Vaccines, Inc. Method for determining the potency of antigens
    IL298668A (en) 2020-05-29 2023-01-01 23Andme Inc Anti-cd200r1 antibodies and methods of use thereof
    WO2021245224A1 (en) 2020-06-05 2021-12-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for treating ocular diseases
    CA3184645A1 (en) 2020-06-05 2021-12-09 Eisai R&D Management Co., Ltd. Anti-bcma antibody-drug conjugates and methods of use
    MX2022015206A (en) 2020-06-08 2023-01-05 Hoffmann La Roche Anti-hbv antibodies and methods of use.
    KR20230023727A (en) 2020-06-11 2023-02-17 제넨테크, 인크. Nanolipoprotein-polypeptide conjugates and compositions, systems, and methods of use thereof
    CN115698719A (en) 2020-06-12 2023-02-03 基因泰克公司 Methods and compositions for cancer immunotherapy
    WO2021257503A1 (en) 2020-06-16 2021-12-23 Genentech, Inc. Methods and compositions for treating triple-negative breast cancer
    WO2021257124A1 (en) 2020-06-18 2021-12-23 Genentech, Inc. Treatment with anti-tigit antibodies and pd-1 axis binding antagonists
    CN115916826A (en) 2020-06-19 2023-04-04 豪夫迈·罗氏有限公司 Antibodies that bind to CD3 and FolR1
    KR20230025667A (en) 2020-06-19 2023-02-22 에프. 호프만-라 로슈 아게 Protease Activated T Cell Bispecific Antibody
    WO2021255146A1 (en) 2020-06-19 2021-12-23 F. Hoffmann-La Roche Ag Antibodies binding to cd3 and cea
    CN115698084A (en) 2020-06-19 2023-02-03 豪夫迈·罗氏有限公司 Antibodies that bind to CD3
    CN115916825A (en) 2020-06-19 2023-04-04 豪夫迈·罗氏有限公司 Antibodies that bind to CD3 and CD19
    CA3183475A1 (en) 2020-06-22 2021-12-30 Thomas Huber Anti-il-36 antibodies and methods of use thereof
    JP2023530760A (en) 2020-06-23 2023-07-19 エフ・ホフマン-ラ・ロシュ・アクチェンゲゼルシャフト Agonist CD28 antigen-binding molecules targeting Her2
    EP4172192A1 (en) 2020-06-24 2023-05-03 Genentech, Inc. Apoptosis resistant cell lines
    JP2023531067A (en) 2020-06-25 2023-07-20 エフ・ホフマン-ラ・ロシュ・アクチェンゲゼルシャフト Anti-CD3/Anti-CD28 Bispecific Antigen Binding Molecules
    CN116096906A (en) 2020-06-29 2023-05-09 旗舰创业创新五公司 Virus engineered to promote saenox delivery and use thereof in treating cancer
    US20230265211A1 (en) 2020-06-29 2023-08-24 Inserm (Institut National De La Santé Et De Ls Recherche Médicale) Anti-protein s single-domain antibodies and polypeptides comprising thereof
    WO2022008597A1 (en) 2020-07-08 2022-01-13 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical composition for the treatment of infectious diseases
    CN115812149A (en) 2020-07-13 2023-03-17 基因泰克公司 Cell-based methods for predicting immunogenicity of polypeptides
    JP2023534458A (en) 2020-07-17 2023-08-09 ジェネンテック, インコーポレイテッド Anti-Notch2 antibody and method of use
    TW202216215A (en) 2020-07-21 2022-05-01 美商建南德克公司 Antibody-conjugated chemical inducers of degradation of brm and methods thereof
    US20230266332A1 (en) 2020-07-28 2023-08-24 Inserm (Institut National De La Santè Et De La Recherch Médicale) Methods and compositions for preventing and treating a cancer
    GB2597532A (en) 2020-07-28 2022-02-02 Femtogenix Ltd Cytotoxic compounds
    EP4189071A1 (en) 2020-08-03 2023-06-07 Institut National de la Santé et de la Recherche Médicale (INSERM) Population of treg cells functionally committed to exert a regulatory activity and their use for adoptive therapy
    JP2023537683A (en) 2020-08-07 2023-09-05 ジェネンテック, インコーポレイテッド T cell-based methods for predicting polypeptide immunogenicity
    CA3187245A1 (en) 2020-08-17 2022-02-24 Sebastien Mercx Recombinant immunotoxin comprising a ribotoxin or rnase
    KR20230056766A (en) 2020-08-28 2023-04-27 제넨테크, 인크. CRISPR/Cas9 multiple knockout of host cell proteins
    JP2023539279A (en) 2020-08-31 2023-09-13 ジェネンテック, インコーポレイテッド Method for producing antibodies
    KR20230086690A (en) 2020-09-14 2023-06-15 아이크노스 사이언스 에스. 아. Antibodies that bind IL1RAP and uses thereof
    EP4216943A1 (en) 2020-09-24 2023-08-02 Vib Vzw Combination of p2y6 inhibitors and immune checkpoint inhibitors
    WO2022063957A1 (en) 2020-09-24 2022-03-31 Vib Vzw Biomarker for anti-tumor therapy
    IL300543A (en) 2020-09-24 2023-04-01 Hoffmann La Roche Prevention or mitigation of t-cell bispecific antibody-related adverse effects
    WO2022064049A1 (en) 2020-09-28 2022-03-31 INSERM (Institut National de la Santé et de la Recherche Médicale) Method for diagnosing brucella infection
    AU2021349385A1 (en) 2020-09-28 2023-05-25 Seagen Inc. Humanized anti-liv1 antibodies for the treatment of cancer
    WO2022072523A1 (en) 2020-09-30 2022-04-07 Seagen Inc. Uveal melanoma treatment using sea-cd40
    IL301547A (en) 2020-10-05 2023-05-01 Genentech Inc Dosing for treatment with anti-fcrh5/anti-cd3 bispecific antibodies
    WO2022076865A1 (en) 2020-10-09 2022-04-14 Takeda Vaccines, Inc. Methods for determining complement-fixing antibodies
    WO2022079270A1 (en) 2020-10-16 2022-04-21 Université D'aix-Marseille Anti-gpc4 single domain antibodies
    AR123855A1 (en) 2020-10-20 2023-01-18 Genentech Inc PEG-CONJUGATED ANTI-MERTK ANTIBODIES AND METHODS OF USE
    CN116685325A (en) 2020-10-20 2023-09-01 豪夫迈·罗氏有限公司 Combination therapy of a PD-1 axis binding antagonist and an LRRK2 inhibitor
    WO2022084300A1 (en) 2020-10-20 2022-04-28 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for diagnosis and monitoring form of coronavirus infection
    EP4232476A2 (en) 2020-10-21 2023-08-30 Boehringer Ingelheim International GmbH Agonistic trkb binding molecules for the treatment of eye diseases
    WO2022084531A1 (en) 2020-10-23 2022-04-28 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating glioma
    WO2022093981A1 (en) 2020-10-28 2022-05-05 Genentech, Inc. Combination therapy comprising ptpn22 inhibitors and pd-l1 binding antagonists
    CN116635419A (en) 2020-10-30 2023-08-22 豪夫迈·罗氏有限公司 Cancer treatment using CEA CD3 bispecific antibodies and TGF-beta signaling inhibitors
    AR123997A1 (en) 2020-11-04 2023-02-01 Univ Rockefeller NEUTRALIZING ANTIBODIES AGAINST SARS-CoV-2
    IL302217A (en) 2020-11-04 2023-06-01 Genentech Inc Dosing for treatment with anti-cd20/anti-cd3 bispecific antibodies and anti-cd79b antibody drug conjugates
    IL302396A (en) 2020-11-04 2023-06-01 Genentech Inc Dosing for treatment with anti-cd20/anti-cd3 bispecific antibodies
    JP2023549140A (en) 2020-11-04 2023-11-22 マイエロイド・セラピューティクス,インコーポレーテッド Engineered chimeric fusion protein compositions and methods of use thereof
    CA3196076A1 (en) 2020-11-04 2022-05-12 Chi-Chung Li Subcutaneous dosing of anti-cd20/anti-cd3 bispecific antibodies
    US20240002519A1 (en) 2020-11-05 2024-01-04 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of il-6 inhibitors for the treatment of acute chest syndrome in patients suffering from sickle cell disease
    MX2023005306A (en) 2020-11-10 2023-05-25 Hoffmann La Roche Prevention or mitigation of t-cell engaging agent-related adverse effects.
    PE20231556A1 (en) 2020-11-16 2023-10-03 Hoffmann La Roche GLYCOFORMS FROM MANNOSE FACTORIES
    WO2022101481A1 (en) 2020-11-16 2022-05-19 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for predicting and treating uveal melanoma
    CN117916261A (en) 2020-11-16 2024-04-19 豪夫迈·罗氏有限公司 Combination therapy with FAP-targeted CD40 agonists
    MX2023005878A (en) 2020-11-23 2023-06-05 Genentech Inc Methods for modulating host cell surface interactions with sars-cov-2.
    MX2023006172A (en) 2020-11-27 2023-06-08 Genentech Inc Methods for modulating host cell surface interactions with human cytomegalovirus.
    TW202229866A (en) 2020-12-01 2022-08-01 美商建南德克公司 Biological vesicles displaying cell surface proteins and methods related to same
    JP2023553399A (en) 2020-12-02 2023-12-21 アレクトル エルエルシー How to use anti-Sortilin antibodies
    IL303656A (en) 2020-12-17 2023-08-01 Hoffmann La Roche Anti-hla-g antibodies and use thereof
    US20240058279A1 (en) 2020-12-21 2024-02-22 Flagship Pioneering Innovations V, Inc. Use of cell turnover factors for increasing tissue regeneration
    AU2022206061A1 (en) 2021-01-06 2023-07-06 F. Hoffmann-La Roche Ag Combination therapy employing a pd1-lag3 bispecific antibody and a cd20 t cell bispecific antibody
    WO2022153194A1 (en) 2021-01-13 2022-07-21 Memorial Sloan Kettering Cancer Center Antibody-pyrrolobenzodiazepine derivative conjugate
    WO2022153212A1 (en) 2021-01-13 2022-07-21 Axon Neuroscience Se Antibodies neutralizing sars-cov-2
    JP2024503658A (en) 2021-01-13 2024-01-26 メモリアル スローン-ケタリング キャンサー センター Anti-DLL3 antibody-drug conjugate
    EP4277934A1 (en) 2021-01-14 2023-11-22 Institut Curie Her2 single domain antibodies variants and cars thereof
    US20220227844A1 (en) 2021-01-15 2022-07-21 The Rockefeller University Neutralizing anti-sars-cov-2 antibodies
    AR124681A1 (en) 2021-01-20 2023-04-26 Abbvie Inc ANTI-EGFR ANTIBODY-DRUG CONJUGATES
    JP2024504390A (en) 2021-01-22 2024-01-31 バイワンキュア セラピューティクス, インコーポレイテッド Anti-HER-2/TROP-2 constructs and uses thereof
    KR20230137295A (en) 2021-01-28 2023-10-04 난징 챔피언 바이오테크놀로지 컴퍼니 리미티드 Conjugates and their uses
    WO2022175392A1 (en) 2021-02-17 2022-08-25 Vib Vzw Inhibition of slc4a4 in the treatment of cancer
    JP2024507220A (en) 2021-02-19 2024-02-16 セリピオン, インコーポレイテッド Paraoxonase fusion polypeptides and related compositions and methods
    IL305301A (en) 2021-02-19 2023-10-01 Us Health SINGLE DOMAIN ANTIBODIES THAT NEUTRALIZE SARS-CoV-2
    EP4295157A1 (en) 2021-02-22 2023-12-27 Genentech, Inc. Methods for modulating host cell surface interactions with herpesviruses
    KR20230150287A (en) 2021-02-26 2023-10-30 바이엘 악티엔게젤샤프트 Inhibitors of IL-11 or IL-11RA for use in the treatment of abnormal uterine bleeding
    TW202317612A (en) 2021-03-01 2023-05-01 美商艾希利歐發展股份有限公司 Combination of ctla4 and pd1/pdl1 antibodies for treating cancer
    US20220340662A1 (en) 2021-03-01 2022-10-27 Xilio Development, Inc. Combination of masked ctla4 and pd1/pdl1 antibodies for treating cancer
    BR112023017035A2 (en) 2021-03-01 2024-02-06 New York Soc For The Relief Of The Ruptured And Crippled Maintaining The Hospital For Special Surger HUMANIZED ANTIBODIES AGAINST IRHOM2, NUCLEIC ACID, USE OF THE ANTIBODY, PHARMACEUTICAL COMPOSITION, COMPOSITION, TREATMENT METHOD AND THERAPEUTIC KIT
    EP4301418A1 (en) 2021-03-03 2024-01-10 Sorrento Therapeutics, Inc. Antibody-drug conjugates comprising an anti-bcma antibody
    WO2022192647A1 (en) 2021-03-12 2022-09-15 Genentech, Inc. Anti-klk7 antibodies, anti-klk5 antibodies, multispecific anti-klk5/klk7 antibodies, and methods of use
    IL305836A (en) 2021-03-12 2023-11-01 Janssen Biotech Inc Method of treating psoriatic arthritis patients with inadequate response to tnf therapy with anti-il23 specific antibody
    BR112023018353A2 (en) 2021-03-12 2024-02-06 Janssen Biotech Inc SAFE AND EFFECTIVE METHOD FOR TREATMENT OF PSORIATIC ARTHRITIS WITH SPECIFIC ANTI-IL23 ANTIBODY
    WO2022198192A1 (en) 2021-03-15 2022-09-22 Genentech, Inc. Compositions and methods of treating lupus nephritis
    EP4308118A1 (en) 2021-03-17 2024-01-24 Institut National de la Santé et de la Recherche Médicale (INSERM) Methods and compositions for treating melanoma
    CA3213295A1 (en) 2021-03-17 2022-09-22 Molecular Templates, Inc. Pd-l1 binding proteins comprising shiga toxin a subunit scaffolds and cd8+ t cell antigens
    JP2024511078A (en) 2021-03-17 2024-03-12 レセプトス エルエルシー Method of treating atopic dermatitis using anti-IL-13 antibody
    JP2024512002A (en) 2021-03-18 2024-03-18 アレクトル エルエルシー Anti-TMEM106B antibody and method of use thereof
    WO2022197877A1 (en) 2021-03-19 2022-09-22 Genentech, Inc. Methods and compositions for time delayed bio-orthogonal release of cytotoxic agents
    EP4314063A1 (en) 2021-03-23 2024-02-07 Alector LLC Anti-tmem106b antibodies for treating and preventing coronavirus infections
    KR20240012352A (en) 2021-03-23 2024-01-29 인쎄름 (엥스띠뛰 나씨오날 드 라 쌍떼 에 드 라 흐쉐르슈 메디깔) How to Diagnose and Treat T-Cell Lymphoma
    CA3213771A1 (en) 2021-03-29 2022-10-06 Scirhom Gmbh Methods of treatment using protein binders to irhom2 epitopes
    CN117157312A (en) 2021-03-30 2023-12-01 豪夫迈·罗氏有限公司 Protease-activated polypeptides
    CA3214085A1 (en) 2021-03-31 2022-10-06 Darby Rye Schmidt Thanotransmission polypeptides and their use in treating cancer
    AU2022255506A1 (en) 2021-04-08 2023-11-09 Marengo Therapeutics, Inc. Multifunctional molecules binding to tcr and uses thereof
    EP4320153A1 (en) 2021-04-09 2024-02-14 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for the treatment of anaplastic large cell lymphoma
    CR20230523A (en) 2021-04-14 2024-01-23 Villaris Therapeutics Inc Anti-cd122 antibodies and uses thereof
    AR125344A1 (en) 2021-04-15 2023-07-05 Chugai Pharmaceutical Co Ltd ANTI-C1S ANTIBODY
    EP4326871A1 (en) 2021-04-19 2024-02-28 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of splice switching oligonucleotides for exon skipping-mediated knockdown of pim2
    CA3215965A1 (en) 2021-04-19 2022-10-27 Amy Shen Modified mammalian cells
    WO2022223791A1 (en) 2021-04-23 2022-10-27 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating cell senescence accumulation related disease
    EP4326271A1 (en) 2021-04-23 2024-02-28 F. Hoffmann-La Roche AG Prevention or mitigation of nk cell engaging agent-related adverse effects
    AU2021443863A1 (en) 2021-04-30 2023-10-26 F. Hoffmann-La Roche Ag Dosing for treatment with anti-cd20/anti-cd3 bispecific antibody
    KR20240005691A (en) 2021-04-30 2024-01-12 에프. 호프만-라 로슈 아게 Dosage for combination therapy with anti-CD20/anti-CD3 bispecific antibody and anti-CD79B antibody drug conjugate
    EP4334343A2 (en) 2021-05-06 2024-03-13 The Rockefeller University Neutralizing anti-sars- cov-2 antibodies and methods of use thereof
    CN117396232A (en) 2021-05-12 2024-01-12 基因泰克公司 Methods of treating diffuse large B-cell lymphomas using anti-CD 79B immunoconjugates
    BR112023023777A2 (en) 2021-05-14 2024-01-30 Genentech Inc ISOLATED ANTIBODIES, PHARMACEUTICAL COMPOSITION, ISOLATED NUCLEIC ACID, ISOLATED VECTOR, ISOLATED HOST CELL, METHOD FOR PRODUCING AN ANTIBODY, METHOD FOR TREATING A CONDITION ASSOCIATED WITH LOSS OF TREM2 FUNCTION, METHOD FOR REDUCING STREM2 LEVELS AND USE OF AN ANTIBODY
    WO2022242892A1 (en) 2021-05-17 2022-11-24 Université de Liège Anti-cd38 single-domain antibodies in disease monitoring and treatment
    WO2022243261A1 (en) 2021-05-19 2022-11-24 F. Hoffmann-La Roche Ag Agonistic cd40 antigen binding molecules targeting cea
    KR20240010469A (en) 2021-05-21 2024-01-23 제넨테크, 인크. Modified cells for production of recombinant products of interest
    TW202314247A (en) 2021-05-25 2023-04-01 美商思進公司 Methods of quantifying anti-cd40 antibodies
    TW202306979A (en) 2021-05-26 2023-02-16 美商建南德克公司 Methods for modulating host cell surface interactions with human cytomegalovirus
    AR126009A1 (en) 2021-06-02 2023-08-30 Hoffmann La Roche CD28 ANTIGEN-BINDING AGONIST MOLECULES THAT TARGET EPCAM
    WO2022254379A1 (en) 2021-06-04 2022-12-08 Boehringer Ingelheim International Gmbh Anti-sirp-alpha antibodies
    WO2022255440A1 (en) 2021-06-04 2022-12-08 Chugai Seiyaku Kabushiki Kaisha Anti-ddr2 antibodies and uses thereof
    CA3216220A1 (en) 2021-06-09 2022-12-15 F. Hoffmann-La Roche Ag Combination of a particular braf inhibitor (paradox breaker) and a pd-1 axis binding antagonist for use in the treatment of cancer
    EP4355786A1 (en) 2021-06-16 2024-04-24 Alector LLC Bispecific anti-mertk and anti-pdl1 antibodies and methods of use thereof
    EP4355783A1 (en) 2021-06-16 2024-04-24 Alector LLC Monovalent anti-mertk antibodies and methods of use thereof
    EP4355778A1 (en) 2021-06-17 2024-04-24 Boehringer Ingelheim International GmbH Novel tri-specific binding molecules
    US20230174651A1 (en) 2021-06-23 2023-06-08 Janssen Biotech, Inc. Materials and methods for hinge regions in functional exogenous receptors
    CR20240026A (en) 2021-06-25 2024-03-14 Chugai Seiyaku Kk Anti–ctla-4 antibody
    KR20240024255A (en) 2021-06-25 2024-02-23 추가이 세이야쿠 가부시키가이샤 Use of anti-CTLA-4 antibodies
    KR20240026507A (en) 2021-06-29 2024-02-28 플래그쉽 파이어니어링 이노베이션스 브이, 인크. Immune cells engineered to promote thananotransmission and uses thereof
    CA3223534A1 (en) 2021-07-02 2023-01-05 Genentech, Inc. Methods and compositions for treating cancer
    CN117957251A (en) 2021-07-09 2024-04-30 詹森生物科技公司 Method for preparing anti-TNF antibody compositions
    WO2023281120A1 (en) 2021-07-09 2023-01-12 Luxembourg Institute Of Health (Lih) Dimeric protein complexes and uses thereof
    AU2022306973A1 (en) 2021-07-09 2024-02-22 Janssen Biotech, Inc. Manufacturing methods for producing anti-il12/il23 antibody compositions
    WO2023281462A1 (en) 2021-07-09 2023-01-12 Janssen Biotech, Inc. Manufacturing methods for producing anti-tnf antibody compositions
    WO2023285362A1 (en) 2021-07-12 2023-01-19 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of il-36 inhibitors for the treatment of netherton syndrome
    US20230049152A1 (en) 2021-07-14 2023-02-16 Genentech, Inc. Anti-c-c motif chemokine receptor 8 (ccr8) antibodies and methods of use
    KR20240036570A (en) 2021-07-22 2024-03-20 에프. 호프만-라 로슈 아게 Heterodimeric Fc domain antibodies
    WO2023004386A1 (en) 2021-07-22 2023-01-26 Genentech, Inc. Brain targeting compositions and methods of use thereof
    KR20240038008A (en) 2021-07-28 2024-03-22 에프. 호프만-라 로슈 아게 Cancer treatment methods and compositions
    WO2023010080A1 (en) 2021-07-30 2023-02-02 Seagen Inc. Treatment for cancer
    WO2023006975A2 (en) 2021-07-30 2023-02-02 INSERM (Institut National de la Santé et de la Recherche Médicale) Chimeric proteins and methods of immunotherapy
    WO2023012147A1 (en) 2021-08-03 2023-02-09 F. Hoffmann-La Roche Ag Bispecific antibodies and methods of use
    WO2023019239A1 (en) 2021-08-13 2023-02-16 Genentech, Inc. Dosing for anti-tryptase antibodies
    WO2023028591A1 (en) 2021-08-27 2023-03-02 Genentech, Inc. Methods of treating tau pathologies
    WO2023034750A1 (en) 2021-08-30 2023-03-09 Genentech, Inc. Anti-polyubiquitin multispecific antibodies
    TW202313695A (en) 2021-09-15 2023-04-01 法商感應檢查療法公司 Use of anti-btn3a antibody in manufacturing a medicament for use in treating a tumor
    TW202321308A (en) 2021-09-30 2023-06-01 美商建南德克公司 Methods for treatment of hematologic cancers using anti-tigit antibodies, anti-cd38 antibodies, and pd-1 axis binding antagonists
    WO2023052541A1 (en) 2021-09-30 2023-04-06 Imcheck Therapeutics Combination of an anti-btn3a activating antibody and an il-2 agonist for use in therapy
    TW202330038A (en) 2021-09-30 2023-08-01 美商思進公司 B7-h4 antibody-drug conjugates for the treatment of cancer
    WO2023060086A1 (en) 2021-10-04 2023-04-13 Takeda Vaccines, Inc. Methods for determining norovirus-reactive antibodies
    US20230190807A1 (en) 2021-10-06 2023-06-22 Immatics Biotechnologies Gmbh Tcr compounds, compositions, and methods of treating
    WO2023057601A1 (en) 2021-10-06 2023-04-13 Biotalys NV Anti-fungal polypeptides
    AU2022362681A1 (en) 2021-10-14 2024-04-04 F. Hoffmann-La Roche Ag New interleukin-7 immunoconjugates
    WO2023062048A1 (en) 2021-10-14 2023-04-20 F. Hoffmann-La Roche Ag Alternative pd1-il7v immunoconjugates for the treatment of cancer
    WO2023069919A1 (en) 2021-10-19 2023-04-27 Alector Llc Anti-cd300lb antibodies and methods of use thereof
    CA3234598A1 (en) 2021-10-27 2023-05-04 Daniel Olive Butyrophilin (btn) 3a activating antibodies for use in methods for treating infectious disorders
    WO2023073615A1 (en) 2021-10-29 2023-05-04 Janssen Biotech, Inc. Methods of treating crohn's disease with anti-il23 specific antibody
    TW202325742A (en) 2021-11-01 2023-07-01 瑞士商赫孚孟拉羅股份公司 Treatment of cancer using a hla-a2/wt1 x cd3 bispecific antibody and a 4-1bb (cd137) agonist
    WO2023078900A1 (en) 2021-11-03 2023-05-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating triple negative breast cancer (tnbc)
    US20230192886A1 (en) 2021-11-08 2023-06-22 Immatics Biotechnologies Gmbh Adoptive cell therapy combination treatment and compositions thereof
    US20230272082A1 (en) 2021-11-09 2023-08-31 Sensei Biotherapeutics, Inc. Anti-vista antibodies and uses thereof
    WO2023086807A1 (en) 2021-11-10 2023-05-19 Genentech, Inc. Anti-interleukin-33 antibodies and uses thereof
    US20230151087A1 (en) 2021-11-15 2023-05-18 Janssen Biotech, Inc. Methods of Treating Crohn's Disease with Anti-IL23 Specific Antibody
    WO2023088889A1 (en) 2021-11-16 2023-05-25 Apogenix Ag CD137 ligands
    WO2023088876A1 (en) 2021-11-16 2023-05-25 Apogenix Ag Multi-specific immune modulators
    TW202337494A (en) 2021-11-16 2023-10-01 美商建南德克公司 Methods and compositions for treating systemic lupus erythematosus (sle) with mosunetuzumab
    WO2023095000A1 (en) 2021-11-23 2023-06-01 Janssen Biotech, Inc. Method of treating ulcerative colitis with anti-il23 specific antibody
    WO2023094525A1 (en) 2021-11-25 2023-06-01 Veraxa Biotech Gmbh Improved antibody-payload conjugates (apcs) prepared by site-specific conjugation utilizing genetic code expansion
    EP4186529A1 (en) 2021-11-25 2023-05-31 Veraxa Biotech GmbH Improved antibody-payload conjugates (apcs) prepared by site-specific conjugation utilizing genetic code expansion
    WO2023094698A1 (en) 2021-11-29 2023-06-01 Ose Immunotherapeutics Specific antagonist anti-sirpg antibodies
    AR127887A1 (en) 2021-12-10 2024-03-06 Hoffmann La Roche ANTIBODIES THAT BIND CD3 AND PLAP
    WO2023110937A1 (en) 2021-12-14 2023-06-22 INSERM (Institut National de la Santé et de la Recherche Médicale) Depletion of nk cells for the treatment of adverse post-ischemic cardiac remodeling
    TW202339797A (en) 2021-12-14 2023-10-16 瑞士商赫孚孟拉羅股份公司 Treatment of cancer using a hla-a2/mage-a4 x cd3 bispecific antibody and a 4-1bb (cd137) agonist
    WO2023114543A2 (en) 2021-12-17 2023-06-22 Dana-Farber Cancer Institute, Inc. Platform for antibody discovery
    WO2023114544A1 (en) 2021-12-17 2023-06-22 Dana-Farber Cancer Institute, Inc. Antibodies and uses thereof
    WO2023117834A1 (en) 2021-12-20 2023-06-29 F. Hoffmann-La Roche Ag Agonistic ltbr antibodies and bispecific antibodies comprising them
    WO2023118165A1 (en) 2021-12-21 2023-06-29 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating melanoma
    EP4209508A1 (en) 2022-01-11 2023-07-12 Centre national de la recherche scientifique Nanobodies for the deneddylating enzyme nedp1
    US20230322958A1 (en) 2022-01-19 2023-10-12 Genentech, Inc. Anti-Notch2 Antibodies and Conjugates and Methods of Use
    AR128331A1 (en) 2022-01-26 2024-04-17 Genentech Inc CHEMICAL DEGRADATION INDUCTORS CONJUGATED WITH ANTIBODIES AND METHODS OF THESE
    AR128330A1 (en) 2022-01-26 2024-04-17 Genentech Inc CHEMICAL DEGRADATION INDUCERS CONJUGATED WITH ANTIBODY AND METHODS OF THESE
    WO2023144235A1 (en) 2022-01-27 2023-08-03 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for monitoring and treating warburg effect in patients with pi3k-related disorders
    WO2023147399A1 (en) 2022-01-27 2023-08-03 The Rockefeller University Broadly neutralizing anti-sars-cov-2 antibodies targeting the n-terminal domain of the spike protein and methods of use thereof
    WO2023144303A1 (en) 2022-01-31 2023-08-03 INSERM (Institut National de la Santé et de la Recherche Médicale) Cd38 as a biomarker and biotarget in t-cell lymphomas
    EP4231017A1 (en) 2022-02-17 2023-08-23 Promise Proteomics Detection and quantification of anti-drug antibodies and anti-self antibodies
    WO2023156634A1 (en) 2022-02-17 2023-08-24 Atb Therapeutics Recombinant immunotoxin comprising a ribosome inactivating protein
    WO2023173026A1 (en) 2022-03-10 2023-09-14 Sorrento Therapeutics, Inc. Antibody-drug conjugates and uses thereof
    WO2023170247A1 (en) 2022-03-11 2023-09-14 Mablink Bioscience Antibody-drug conjugates and their uses
    US20230414750A1 (en) 2022-03-23 2023-12-28 Hoffmann-La Roche Inc. Combination treatment of an anti-cd20/anti-cd3 bispecific antibody and chemotherapy
    WO2023186756A1 (en) 2022-03-28 2023-10-05 F. Hoffmann-La Roche Ag Interferon gamma variants and antigen binding molecules comprising these
    US20230312703A1 (en) 2022-03-30 2023-10-05 Janssen Biotech, Inc. Method of Treating Psoriasis with IL-23 Specific Antibody
    WO2023191816A1 (en) 2022-04-01 2023-10-05 Genentech, Inc. Dosing for treatment with anti-fcrh5/anti-cd3 bispecific antibodies
    EP4257609A1 (en) 2022-04-08 2023-10-11 iOmx Therapeutics AG Combination therapies based on pd-1 inhibitors and sik3 inhibitors
    WO2023198648A1 (en) 2022-04-11 2023-10-19 Institut National de la Santé et de la Recherche Médicale Methods for the diagnosis and treatment of t-cell malignancies
    TW202400243A (en) 2022-04-12 2024-01-01 日商衛材R&D企管股份有限公司 Eribulin-based antibody-drug conjugates and methods of use
    US20230406930A1 (en) 2022-04-13 2023-12-21 Genentech, Inc. Pharmaceutical compositions of therapeutic proteins and methods of use
    JP2024517042A (en) 2022-04-13 2024-04-19 エフ・ホフマン-ラ・ロシュ・アクチェンゲゼルシャフト Pharmaceutical compositions and methods of use of anti-CD20/anti-CD3 bispecific antibodies
    WO2023198851A1 (en) 2022-04-14 2023-10-19 Institut National de la Santé et de la Recherche Médicale Methods for controlling the tumor cell killing by light
    WO2023198874A1 (en) 2022-04-15 2023-10-19 Institut National de la Santé et de la Recherche Médicale Methods for the diagnosis and treatment of t cell-lymphomas
    WO2023212298A1 (en) 2022-04-29 2023-11-02 Broadwing Bio Llc Bispecific antibodies and methods of treating ocular disease
    WO2023212294A1 (en) 2022-04-29 2023-11-02 Broadwing Bio Llc Angiopoietin-related protein 7-specific antibodies and uses thereof
    WO2023212293A1 (en) 2022-04-29 2023-11-02 Broadwing Bio Llc Complement factor h related 4-specific antibodies and uses thereof
    TW202406934A (en) 2022-05-03 2024-02-16 美商建南德克公司 Anti-ly6e antibodies, immunoconjugates, and uses thereof
    WO2023217904A1 (en) 2022-05-10 2023-11-16 Institut National de la Santé et de la Recherche Médicale Syncitin-1 fusion proteins and uses thereof for cargo delivery into target cells
    WO2023219613A1 (en) 2022-05-11 2023-11-16 Genentech, Inc. Dosing for treatment with anti-fcrh5/anti-cd3 bispecific antibodies
    WO2023218431A1 (en) 2022-05-13 2023-11-16 BioNTech SE Rna compositions targeting hiv
    US20230374122A1 (en) 2022-05-18 2023-11-23 Janssen Biotech, Inc. Method for Evaluating and Treating Psoriatic Arthritis with IL23 Antibody
    US20230416412A1 (en) 2022-05-31 2023-12-28 Hoffmann-La Roche Inc. Prevention or mitigation of t-cell engaging agent-related adverse effects
    WO2023240058A2 (en) 2022-06-07 2023-12-14 Genentech, Inc. Prognostic and therapeutic methods for cancer
    WO2023237661A1 (en) 2022-06-09 2023-12-14 Institut National de la Santé et de la Recherche Médicale Use of endothelin receptor type b agonists for the treatment of aortic valve stenosis
    WO2024003310A1 (en) 2022-06-30 2024-01-04 Institut National de la Santé et de la Recherche Médicale Methods for the diagnosis and treatment of acute lymphoblastic leukemia
    EP4299124A1 (en) 2022-06-30 2024-01-03 Universite De Montpellier Anti-mglur2 nanobodies for use as biomolecule transporter
    WO2024008274A1 (en) 2022-07-04 2024-01-11 Universiteit Antwerpen T regulatory cell modification
    WO2024008755A1 (en) 2022-07-04 2024-01-11 Vib Vzw Blood-cerebrospinal fluid barrier crossing antibodies
    WO2024008799A1 (en) 2022-07-06 2024-01-11 Institut National de la Santé et de la Recherche Médicale Methods for the treatment of proliferative glomerulonephritis
    WO2024013234A1 (en) 2022-07-13 2024-01-18 Institut National de la Santé et de la Recherche Médicale Methods for diagnosis, prognosis, stratification and treating of myocarditis
    WO2024015897A1 (en) 2022-07-13 2024-01-18 Genentech, Inc. Dosing for treatment with anti-fcrh5/anti-cd3 bispecific antibodies
    US20240052065A1 (en) 2022-07-15 2024-02-15 Boehringer Ingelheim International Gmbh Binding molecules for the treatment of cancer
    WO2024020432A1 (en) 2022-07-19 2024-01-25 Genentech, Inc. Dosing for treatment with anti-fcrh5/anti-cd3 bispecific antibodies
    WO2024018003A1 (en) 2022-07-21 2024-01-25 Institut National de la Santé et de la Recherche Médicale Extracellular vesicles functionalized with an erv syncitin and uses thereof for cargo delivery
    WO2024018046A1 (en) 2022-07-22 2024-01-25 Institut National de la Santé et de la Recherche Médicale Garp as a biomarker and biotarget in t-cell malignancies
    WO2024020579A1 (en) 2022-07-22 2024-01-25 Bristol-Myers Squibb Company Antibodies binding to human pad4 and uses thereof
    WO2024018426A1 (en) 2022-07-22 2024-01-25 Janssen Biotech, Inc. Enhanced transfer of genetic instructions to effector immune cells
    WO2024023246A1 (en) 2022-07-28 2024-02-01 Philogen S.P.A. Antibody binding to pd1
    WO2024023283A1 (en) 2022-07-29 2024-02-01 Institut National de la Santé et de la Recherche Médicale Lrrc33 as a biomarker and biotarget in cutaneous t-cell lymphomas
    TW202405020A (en) 2022-07-29 2024-02-01 美商阿列克特有限責任公司 Transferrin receptor antigen-binding domains and uses therefor
    WO2024026471A1 (en) 2022-07-29 2024-02-01 Alector Llc Cd98hc antigen-binding domains and uses therefor
    WO2024026447A1 (en) 2022-07-29 2024-02-01 Alector Llc Anti-gpnmb antibodies and methods of use thereof
    WO2024028433A1 (en) 2022-08-04 2024-02-08 Institut National de la Santé et de la Recherche Médicale Methods for the treatment of lymphoproliferative disorders
    WO2024033362A1 (en) 2022-08-08 2024-02-15 Atb Therapeutics Humanized antibodies against cd79b
    WO2024033399A1 (en) 2022-08-10 2024-02-15 Institut National de la Santé et de la Recherche Médicale Sigmar1 ligand for the treatment of pancreatic cancer
    WO2024033400A1 (en) 2022-08-10 2024-02-15 Institut National de la Santé et de la Recherche Médicale Sk2 inhibitor for the treatment of pancreatic cancer
    WO2024040020A1 (en) 2022-08-15 2024-02-22 Absci Corporation Quantitative affinity activity specific cell enrichment
    WO2024038112A1 (en) 2022-08-17 2024-02-22 Institut National de la Santé et de la Recherche Médicale Improved anti-albumin nanobodies and their uses
    WO2024047110A1 (en) 2022-08-31 2024-03-07 Institut National de la Santé et de la Recherche Médicale Method to generate more efficient car-t cells
    WO2024049949A1 (en) 2022-09-01 2024-03-07 Genentech, Inc. Therapeutic and diagnostic methods for bladder cancer
    WO2024068705A1 (en) 2022-09-29 2024-04-04 F. Hoffmann-La Roche Ag Protease-activated polypeptides
    WO2024074498A1 (en) 2022-10-04 2024-04-11 Imcheck Therapeutics Combination of a btn3a activating antibody, a bcl2 inhibitor and hypomethylating agent for use in treating cancer
    WO2024077191A1 (en) 2022-10-05 2024-04-11 Flagship Pioneering Innovations V, Inc. Nucleic acid molecules encoding trif and additionalpolypeptides and their use in treating cancer
    WO2024074713A1 (en) 2022-10-07 2024-04-11 Institut National de la Santé et de la Recherche Médicale Method to generate improving car-t cells
    WO2024077239A1 (en) 2022-10-07 2024-04-11 Genentech, Inc. Methods of treating cancer with anti-c-c motif chemokine receptor 8 (ccr8) antibodies
    WO2024079010A1 (en) 2022-10-10 2024-04-18 F. Hoffmann-La Roche Ag Combination therapy of a gprc5d tcb and cd38 antibodies
    WO2024079009A1 (en) 2022-10-10 2024-04-18 F. Hoffmann-La Roche Ag Combination therapy of a gprc5d tcb and proteasome inhibitors
    WO2024079015A1 (en) 2022-10-10 2024-04-18 F. Hoffmann-La Roche Ag Combination therapy of a gprc5d tcb and imids
    WO2024079192A1 (en) 2022-10-12 2024-04-18 Institut National de la Santé et de la Recherche Médicale Cd81 as a biomarker and biotarget in t-cell malignancies
    WO2024083843A1 (en) 2022-10-18 2024-04-25 Confo Therapeutics N.V. Amino acid sequences directed against the melanocortin 4 receptor and polypeptides comprising the same for the treatment of mc4r-related diseases and disorders
    WO2024086796A1 (en) 2022-10-20 2024-04-25 Alector Llc Anti-ms4a4a antibodies with amyloid-beta therapies
    WO2024084034A1 (en) 2022-10-21 2024-04-25 Institut National de la Santé et de la Recherche Médicale Methods and pharmaceutical compositions for the treatment of osteoarthritis
    WO2024091991A1 (en) 2022-10-25 2024-05-02 Genentech, Inc. Therapeutic and diagnostic methods for multiple myeloma
    WO2024091669A1 (en) 2022-10-28 2024-05-02 Ginkgo Bioworks, Inc. Chimeric antigen receptors comprising an intracellular domain pair

    Citations (24)

    * Cited by examiner, † Cited by third party
    Publication number Priority date Publication date Assignee Title
    US4356270A (en) * 1977-11-08 1982-10-26 Genentech, Inc. Recombinant DNA cloning vehicle
    US4642334A (en) * 1982-03-15 1987-02-10 Dnax Research Institute Of Molecular And Cellular Biology, Inc. Hybrid DNA prepared binding composition
    US4656134A (en) * 1982-01-11 1987-04-07 Board Of Trustees Of Leland Stanford Jr. University Gene amplification in eukaryotic cells
    US4683195A (en) * 1986-01-30 1987-07-28 Cetus Corporation Process for amplifying, detecting, and/or-cloning nucleic acid sequences
    US4704692A (en) * 1986-09-02 1987-11-03 Ladner Robert C Computer based system and method for determining and displaying possible chemical structures for converting double- or multiple-chain polypeptides to single-chain polypeptides
    US4711845A (en) * 1984-08-31 1987-12-08 Cetus Corporation Portable temperature-sensitive control cassette
    US4714681A (en) * 1981-07-01 1987-12-22 The Board Of Reagents, The University Of Texas System Cancer Center Quadroma cells and trioma cells and methods for the production of same
    US4800159A (en) * 1986-02-07 1989-01-24 Cetus Corporation Process for amplifying, detecting, and/or cloning nucleic acid sequences
    US4806471A (en) * 1982-09-16 1989-02-21 A/S Alfred Benzon Plasmids with conditional uncontrolled replication behavior
    US4816397A (en) * 1983-03-25 1989-03-28 Celltech, Limited Multichain polypeptides or proteins and processes for their production
    US4889818A (en) * 1986-08-22 1989-12-26 Cetus Corporation Purified thermostable enzyme
    US4937193A (en) * 1986-06-27 1990-06-26 Delta Biotechnology Limited Process for the genetic modification of yeast
    US4946786A (en) * 1987-01-14 1990-08-07 President And Fellows Of Harvard College T7 DNA polymerase
    US4959317A (en) * 1985-10-07 1990-09-25 E. I. Du Pont De Nemours And Company Site-specific recombination of DNA in eukaryotic cells
    US4965188A (en) * 1986-08-22 1990-10-23 Cetus Corporation Process for amplifying, detecting, and/or cloning nucleic acid sequences using a thermostable enzyme
    US4978743A (en) * 1987-09-24 1990-12-18 Bayer Aktiengesellschaft Process for the continuous, counter flow/direct flow extraction of polyamides
    US4983728A (en) * 1987-07-31 1991-01-08 Ire-Celltarg S.A. Nucleic acid probes of human papilloma virus
    US5023171A (en) * 1989-08-10 1991-06-11 Mayo Foundation For Medical Education And Research Method for gene splicing by overlap extension using the polymerase chain reaction
    US5030565A (en) * 1983-08-17 1991-07-09 Scripps Clinic And Research Foundation Polypeptide-induced monoclonal receptors to protein ligands
    US5126258A (en) * 1984-09-07 1992-06-30 Scripps Clinic And Research Foundation Molecules with antibody combining sites that exhibit catalytic properties
    US5225539A (en) * 1986-03-27 1993-07-06 Medical Research Council Recombinant altered antibodies and methods of making altered antibodies
    US5229292A (en) * 1986-07-28 1993-07-20 Stine Seed Farm, Inc. Biological control of insects using pseudomonas strains transformed with bacillus thuringiensis insect toxingene
    US5229072A (en) * 1992-02-03 1993-07-20 Liquid Carbonic Inc. Use of interhalogen compounds as a sterilizing agent
    US6248516B1 (en) * 1988-11-11 2001-06-19 Medical Research Council Single domain ligands, receptors comprising said ligands methods for their production, and use of said ligands and receptors

    Family Cites Families (30)

    * Cited by examiner, † Cited by third party
    Publication number Priority date Publication date Assignee Title
    US4816567A (en) 1983-04-08 1989-03-28 Genentech, Inc. Recombinant immunoglobin preparations
    JPS6147500A (en) 1984-08-15 1986-03-07 Res Dev Corp Of Japan Chimera monoclonal antibody and its preparation
    EP0173494A3 (en) 1984-08-27 1987-11-25 The Board Of Trustees Of The Leland Stanford Junior University Chimeric receptors by dna splicing and expression
    GB8422238D0 (en) 1984-09-03 1984-10-10 Neuberger M S Chimeric proteins
    JPS61104788A (en) 1984-10-26 1986-05-23 Teijin Ltd Nucleic acid base sequence
    US4683202A (en) 1985-03-28 1987-07-28 Cetus Corporation Process for amplifying nucleic acid sequences
    DK171161B1 (en) 1985-03-28 1996-07-08 Hoffmann La Roche A method for detecting the presence or absence of at least one specific nucleic acid sequence in a sample or for distinguishing two different nucleic acid sequences in this sample
    US5576195A (en) * 1985-11-01 1996-11-19 Xoma Corporation Vectors with pectate lyase signal sequence
    EP0247091B1 (en) * 1985-11-01 1993-09-29 Xoma Corporation Modular assembly of antibody genes, antibodies prepared thereby and use
    GB8607679D0 (en) 1986-03-27 1986-04-30 Winter G P Recombinant dna product
    SE458555B (en) 1986-07-21 1989-04-10 Atte Heikkilae LINFAESTANORDNING
    JPS63152984A (en) 1986-08-18 1988-06-25 Wakunaga Pharmaceut Co Ltd Dna coding l-chain of antipyocyanic human-type antibody
    ATE87659T1 (en) * 1986-09-02 1993-04-15 Enzon Lab Inc BINDING MOLECULES WITH SINGLE POLYPEPTIDE CHAIN.
    DE3852304T3 (en) * 1987-03-02 1999-07-01 Enzon Lab Inc Organism as carrier for "Single Chain Antibody Domain (SCAD)".
    JPH02500329A (en) 1987-05-21 1990-02-08 クリエイテイブ・バイオマリキユールズ・インコーポレーテツド Targeted multifunctional protein
    US5132405A (en) * 1987-05-21 1992-07-21 Creative Biomolecules, Inc. Biosynthetic antibody binding sites
    US5091513A (en) * 1987-05-21 1992-02-25 Creative Biomolecules, Inc. Biosynthetic antibody binding sites
    CA1341235C (en) 1987-07-24 2001-05-22 Randy R. Robinson Modular assembly of antibody genes, antibodies prepared thereby and use
    US4978745A (en) * 1987-11-23 1990-12-18 Centocor, Inc. Immunoreactive heterochain antibodies
    CA2057923A1 (en) 1989-05-16 1990-11-17 William D. Huse Co-expression of heteromeric receptors
    US6291158B1 (en) * 1989-05-16 2001-09-18 Scripps Research Institute Method for tapping the immunological repertoire
    CA2016842A1 (en) 1989-05-16 1990-11-16 Richard A. Lerner Method for tapping the immunological repertoire
    CA2016841C (en) 1989-05-16 1999-09-21 William D. Huse A method for producing polymers having a preselected activity
    US6291159B1 (en) * 1989-05-16 2001-09-18 Scripps Research Institute Method for producing polymers having a preselected activity
    EP0404003A3 (en) 1989-06-19 1991-10-16 Xoma Corporation Chimeric mouse-human km10 antibody with specificity to a human tumor cell antigen
    GB9015198D0 (en) * 1990-07-10 1990-08-29 Brien Caroline J O Binding substance
    ES2227512T3 (en) * 1991-12-02 2005-04-01 Medical Research Council PRODUCTION OF ANTIBODIES AGAINST SELF-ANTIGENS FROM REPERTORIES OF ANTIBODY SEGMENTS FIXED IN A PHOTO.
    DE69334255D1 (en) * 1992-02-06 2009-02-12 Novartis Vaccines & Diagnostic Marker for cancer and biosynthetic binding protein for it
    WO1997008320A1 (en) 1995-08-18 1997-03-06 Morphosys Gesellschaft Für Proteinoptimierung Mbh Protein/(poly)peptide libraries
    ATE332368T1 (en) * 1997-01-21 2006-07-15 Gen Hospital Corp SELECTION OF PROTEINS USING RNA-PROTEIN FUSIONS

    Patent Citations (25)

    * Cited by examiner, † Cited by third party
    Publication number Priority date Publication date Assignee Title
    US4356270A (en) * 1977-11-08 1982-10-26 Genentech, Inc. Recombinant DNA cloning vehicle
    US4714681A (en) * 1981-07-01 1987-12-22 The Board Of Reagents, The University Of Texas System Cancer Center Quadroma cells and trioma cells and methods for the production of same
    US4656134A (en) * 1982-01-11 1987-04-07 Board Of Trustees Of Leland Stanford Jr. University Gene amplification in eukaryotic cells
    US4642334A (en) * 1982-03-15 1987-02-10 Dnax Research Institute Of Molecular And Cellular Biology, Inc. Hybrid DNA prepared binding composition
    US4806471A (en) * 1982-09-16 1989-02-21 A/S Alfred Benzon Plasmids with conditional uncontrolled replication behavior
    US4816397A (en) * 1983-03-25 1989-03-28 Celltech, Limited Multichain polypeptides or proteins and processes for their production
    US5030565A (en) * 1983-08-17 1991-07-09 Scripps Clinic And Research Foundation Polypeptide-induced monoclonal receptors to protein ligands
    US4711845A (en) * 1984-08-31 1987-12-08 Cetus Corporation Portable temperature-sensitive control cassette
    US5126258A (en) * 1984-09-07 1992-06-30 Scripps Clinic And Research Foundation Molecules with antibody combining sites that exhibit catalytic properties
    US4959317A (en) * 1985-10-07 1990-09-25 E. I. Du Pont De Nemours And Company Site-specific recombination of DNA in eukaryotic cells
    US4683195B1 (en) * 1986-01-30 1990-11-27 Cetus Corp
    US4683195A (en) * 1986-01-30 1987-07-28 Cetus Corporation Process for amplifying, detecting, and/or-cloning nucleic acid sequences
    US4800159A (en) * 1986-02-07 1989-01-24 Cetus Corporation Process for amplifying, detecting, and/or cloning nucleic acid sequences
    US5225539A (en) * 1986-03-27 1993-07-06 Medical Research Council Recombinant altered antibodies and methods of making altered antibodies
    US4937193A (en) * 1986-06-27 1990-06-26 Delta Biotechnology Limited Process for the genetic modification of yeast
    US5229292A (en) * 1986-07-28 1993-07-20 Stine Seed Farm, Inc. Biological control of insects using pseudomonas strains transformed with bacillus thuringiensis insect toxingene
    US4965188A (en) * 1986-08-22 1990-10-23 Cetus Corporation Process for amplifying, detecting, and/or cloning nucleic acid sequences using a thermostable enzyme
    US4889818A (en) * 1986-08-22 1989-12-26 Cetus Corporation Purified thermostable enzyme
    US4704692A (en) * 1986-09-02 1987-11-03 Ladner Robert C Computer based system and method for determining and displaying possible chemical structures for converting double- or multiple-chain polypeptides to single-chain polypeptides
    US4946786A (en) * 1987-01-14 1990-08-07 President And Fellows Of Harvard College T7 DNA polymerase
    US4983728A (en) * 1987-07-31 1991-01-08 Ire-Celltarg S.A. Nucleic acid probes of human papilloma virus
    US4978743A (en) * 1987-09-24 1990-12-18 Bayer Aktiengesellschaft Process for the continuous, counter flow/direct flow extraction of polyamides
    US6248516B1 (en) * 1988-11-11 2001-06-19 Medical Research Council Single domain ligands, receptors comprising said ligands methods for their production, and use of said ligands and receptors
    US5023171A (en) * 1989-08-10 1991-06-11 Mayo Foundation For Medical Education And Research Method for gene splicing by overlap extension using the polymerase chain reaction
    US5229072A (en) * 1992-02-03 1993-07-20 Liquid Carbonic Inc. Use of interhalogen compounds as a sterilizing agent

    Cited By (133)

    * Cited by examiner, † Cited by third party
    Publication number Priority date Publication date Assignee Title
    US20070077240A1 (en) * 1992-08-21 2007-04-05 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US20040253638A1 (en) * 1992-08-21 2004-12-16 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US20060121026A1 (en) * 1992-08-21 2006-06-08 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US20060134107A1 (en) * 1992-08-21 2006-06-22 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US7722871B2 (en) 1992-08-21 2010-05-25 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US7786047B2 (en) 1992-08-21 2010-08-31 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US20070238133A1 (en) * 1992-08-21 2007-10-11 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US20070025985A1 (en) * 1992-08-21 2007-02-01 Vrije Universiteit Brussel Immunoglobulins devoid of light chains
    US7790367B2 (en) 1992-08-21 2010-09-07 Vrije Universiteit Brussel Method for screening a library of VHH polypeptides
    US20060166252A1 (en) * 2000-04-17 2006-07-27 Ladner Robert C Novel methods of constructing libraries of genetic packages that collectively display the members of a diverse family of peptides, polypeptides or proteins
    US9382535B2 (en) 2000-04-17 2016-07-05 Dyax Corp. Methods of constructing libraries of genetic packages that collectively display the members of a diverse family of peptides, polypeptides or proteins
    US20030232333A1 (en) * 2000-04-17 2003-12-18 Dyax Corp. Novel methods of constructing librabries comprising displayed and/or expressed members of a diverse family of peptides, polypeptides or proteins and the novel librabries
    US8288322B2 (en) 2000-04-17 2012-10-16 Dyax Corp. Methods of constructing libraries comprising displayed and/or expressed members of a diverse family of peptides, polypeptides or proteins and the novel libraries
    US8901045B2 (en) 2000-04-17 2014-12-02 Dyax Corp. Methods of constructing libraries comprising displayed and/or expressed members of a diverse family of peptides, polypeptides or proteins and the novel libraries
    US20090162835A9 (en) * 2000-04-17 2009-06-25 Dyax Corp. Novel methods of constructing libraries comprising displayed and/or expressed members of a diverse family of peptides, polypeptides or proteins and the novel libraries
    US10829541B2 (en) 2000-04-17 2020-11-10 Dyax Corp. Methods of constructing libraries comprising displayed and/or expressed members of a diverse family of peptides, polypeptides or proteins and the novel libraries
    US9683028B2 (en) 2000-04-17 2017-06-20 Dyax Corp. Methods of constructing libraries comprising displayed and/or expressed members of a diverse family of peptides, polypeptides or proteins and the novel libraries
    US10604753B2 (en) 2000-12-18 2020-03-31 Dyax Corp. Focused libraries of genetic packages
    US8466091B2 (en) 2000-12-18 2013-06-18 Dyax Corp. Focused libraries of genetic packages
    US8399384B2 (en) 2000-12-18 2013-03-19 Dyax Corp. Focused libraries of genetic packages
    US9803190B2 (en) 2000-12-18 2017-10-31 Dyax Corp. Focused libraries of genetic packages
    US20060257937A1 (en) * 2000-12-18 2006-11-16 Dyax Corp., A Delaware Corporation Focused libraries of genetic packages
    US8895475B2 (en) 2000-12-18 2014-11-25 Robert Charles Ladner Focused libraries of genetic packages
    US9617536B2 (en) 2000-12-18 2017-04-11 Dyax Corp. Focused libraries of genetic packages
    US9464286B2 (en) 2002-08-12 2016-10-11 Adimab, Llc High throughput generation and affinity maturation of humanized antibody
    US10329555B2 (en) 2002-08-12 2019-06-25 Adimab, Llc High throughput generation and affinity maturation of humanized antibody
    US20060246515A1 (en) * 2002-08-12 2006-11-02 Li Zhu High throughput generation and affinity maturation of humanized antibody
    EP2354160A1 (en) 2005-08-31 2011-08-10 Schering Corporation Engineered anti-IL-23-antibodies
    WO2007027714A2 (en) 2005-08-31 2007-03-08 Schering Corporation Engineered anti-il-23 antibodies
    EP3190125A1 (en) 2005-08-31 2017-07-12 Merck Sharp & Dohme Corp. Engineered anti-il-23 antibodies
    EP2500030A2 (en) 2005-11-04 2012-09-19 Genentech, Inc. Use of complement pathway inhibitors to treat ocular diseases
    EP3299027A1 (en) 2005-11-04 2018-03-28 Genentech, Inc. Use of complement pathway inhibitors to treat ocular diseases
    EP2998318A1 (en) 2005-11-04 2016-03-23 Genentech, Inc. Use of complement pathway inhibitors to treat ocular diseases
    US8940871B2 (en) 2006-03-20 2015-01-27 The Regents Of The University Of California Engineered anti-prostate stem cell antigen (PSCA) antibodies for cancer targeting
    US20100226920A1 (en) * 2006-03-27 2010-09-09 Ablynx N.V. Medical delivery device for therapeutic proteins based on single domain antibodies
    WO2007141280A2 (en) 2006-06-06 2007-12-13 Oxford Genome Sciences (Uk) Ltd Proteins
    EP2375255A1 (en) 2006-06-06 2011-10-12 Oxford Biotherapeutics Ltd. Proteins
    WO2008030611A2 (en) 2006-09-05 2008-03-13 Medarex, Inc. Antibodies to bone morphogenic proteins and receptors therefor and methods for their use
    US11312777B2 (en) 2006-10-02 2022-04-26 Bristol-Myers Squibb Company Human monoclonal antibodies that bind CXCR4 and uses thereof
    US10106615B2 (en) 2006-10-02 2018-10-23 E. R. Squibb & Sons, L.L.C. Nucleic acids encoding human monoclonal antibodies that bind CXCR4
    US20100104508A1 (en) * 2006-10-02 2010-04-29 Medarex, Inc. Human antibodies that bind cxcr4 and uses thereof
    EP3165539A1 (en) 2006-10-02 2017-05-10 Kirin-Amgen, Inc. Il-17 receptor a antigen binding proteins
    US8450464B2 (en) 2006-10-02 2013-05-28 Medarex, Inc. Human monoclonal antibodies that bind CXCR4
    WO2008054603A2 (en) 2006-10-02 2008-05-08 Amgen Inc. Il-17 receptor a antigen binding proteins
    EP2486941A1 (en) 2006-10-02 2012-08-15 Medarex, Inc. Human antibodies that bind CXCR4 and uses thereof
    WO2008070569A2 (en) 2006-12-01 2008-06-12 Medarex, Inc. Human antibodies that bind cd22 and uses thereof
    WO2009054863A2 (en) 2006-12-13 2009-04-30 Medarex, Inc. Human antibodies that bind cd19 and uses thereof
    WO2008076321A1 (en) 2006-12-14 2008-06-26 Schering Corporation Engineered anti-tslp antibody
    WO2008074004A2 (en) 2006-12-14 2008-06-19 Medarex, Inc. Human antibodies that bind cd70 and uses thereof
    EP2628752A1 (en) 2006-12-14 2013-08-21 Merck Sharp & Dohme Corp. Engineered anti-TSLP antibody
    EP2426144A1 (en) 2007-02-23 2012-03-07 Schering Corporation Engineered anti-IL-23p19 antibodies
    EP2426145A1 (en) 2007-02-23 2012-03-07 Schering Corporation Engineered anti-IL-23p19 antibodies
    EP2447719A1 (en) 2007-02-26 2012-05-02 Oxford Biotherapeutics Ltd. Proteins
    EP2441775A1 (en) 2007-02-26 2012-04-18 Oxford Biotherapeutics Ltd. Protein
    EP2395025A1 (en) 2007-02-28 2011-12-14 Schering Corporation Engineered Anti-IL-23R Antibodies
    WO2008106134A2 (en) 2007-02-28 2008-09-04 Schering Corporation Engineered anti-il-23r antibodies
    US8940298B2 (en) 2007-09-04 2015-01-27 The Regents Of The University Of California High affinity anti-prostate stem cell antigen (PSCA) antibodies for cancer targeting and detection
    US9527919B2 (en) 2007-09-04 2016-12-27 The Regents Of The University Of California High affinity anti-prostate stem cell antigen (PSCA) antibodies for cancer targeting and detection
    US20100056386A1 (en) * 2007-09-14 2010-03-04 Adimab, Inc. Rationally Designed, Synthetic Antibody Libraries and Uses Therefor
    US8691730B2 (en) 2007-09-14 2014-04-08 Adimab, Llc Rationally designed, synthetic antibody libraries and uses therefor
    US20090181855A1 (en) * 2007-09-14 2009-07-16 Adimab, Inc. Rationally Designed, Synthetic Antibody Libraries and Uses Therefor
    US10196635B2 (en) 2007-09-14 2019-02-05 Adimab, Llc Rationally designed, synthetic antibody libraries and uses therefor
    US10189894B2 (en) 2007-09-14 2019-01-29 Adimab, Llc Rationally designed, synthetic antibody libraries and uses therefor
    US8877688B2 (en) 2007-09-14 2014-11-04 Adimab, Llc Rationally designed, synthetic antibody libraries and uses therefor
    US11008568B2 (en) 2007-09-14 2021-05-18 Adimab, Llc Rationally designed, synthetic antibody libraries and uses therefor
    US11008383B2 (en) 2007-09-14 2021-05-18 Adimab, Llc Rationally designed, synthetic antibody libraries and uses therefor
    EP3192807A1 (en) 2007-11-27 2017-07-19 The University Of British Columbia 14-3-3 eta antibodies and uses thereof for the diagnosis and treatment of arthritis
    EP3192808A1 (en) 2007-11-27 2017-07-19 The University Of British Columbia 14-3-3 antagonists for the prevention and treatment of arthritis
    US9873957B2 (en) 2008-03-13 2018-01-23 Dyax Corp. Libraries of genetic packages comprising novel HC CDR3 designs
    US11926926B2 (en) 2008-03-13 2024-03-12 Takeda Pharmaceutical Company Limited Libraries of genetic packages comprising novel HC CDR3 designs
    US10718066B2 (en) 2008-03-13 2020-07-21 Dyax Corp. Libraries of genetic packages comprising novel HC CDR3 designs
    US20110118147A1 (en) * 2008-03-13 2011-05-19 Ladner Robert C Libraries of genetic packages comprising novel hc cdr3 designs
    US20110172125A1 (en) * 2008-04-24 2011-07-14 Dyax Corp. Libraries of genetic packages comprising novel hc cdr1, cdr2, and cdr3 and novel lc cdr1, cdr2, and cdr3 designs
    US9388510B2 (en) 2008-04-24 2016-07-12 Dyax Corp. Libraries of genetic packages comprising novel HC CDR1, CDR2, and CDR3 and novel LC CDR1, CDR2, and CDR3 designs
    US11598024B2 (en) 2008-04-24 2023-03-07 Takeda Pharmaceutical Company Limited Libraries of genetic packages comprising novel HC CDR1, CDR2, and CDR3 and novel LC CDR1, CDR2, and CDR3 designs
    US10683342B2 (en) 2008-04-24 2020-06-16 Dyax Corp. Libraries of genetic packages comprising novel HC CDR1, CDR2, and CDR3 and novel LC CDR1, CDR2, and CDR3 designs
    EP3629022A1 (en) 2008-07-25 2020-04-01 Richard W. Wagner Protein screening methods
    WO2010011944A2 (en) 2008-07-25 2010-01-28 Wagner Richard W Protein screeing methods
    WO2010084408A2 (en) 2009-01-21 2010-07-29 Oxford Biotherapeutics Ltd. Pta089 protein
    WO2010085590A1 (en) 2009-01-23 2010-07-29 Biosynexus Incorporated Opsonic and protective antibodies specific for lipoteichoic acid gram positive bacteria
    WO2010102175A1 (en) 2009-03-05 2010-09-10 Medarex, Inc. Fully human antibodies specific to cadm1
    EP3009454A2 (en) 2009-04-20 2016-04-20 Oxford Bio Therapeutics Limited Antibodies specific to cadherin-17
    EP3023438A1 (en) 2009-09-03 2016-05-25 Merck Sharp & Dohme Corp. Anti-gitr antibodies
    US20110082054A1 (en) * 2009-09-14 2011-04-07 Dyax Corp. Libraries of genetic packages comprising novel hc cdr3 designs
    WO2011046958A1 (en) 2009-10-12 2011-04-21 Amgen Inc. Use of il-17 receptor a antigen binding proteins
    WO2011047083A1 (en) 2009-10-13 2011-04-21 Oxford Biotherapeutics Ltd. Antibodies against epha10
    WO2011054007A1 (en) 2009-11-02 2011-05-05 Oxford Biotherapeutics Ltd. Ror1 as therapeutic and diagnostic target
    WO2011056772A1 (en) 2009-11-04 2011-05-12 Schering Corporation Engineered anti-tslp antibody
    EP3594356A1 (en) 2009-11-04 2020-01-15 Merck Sharp & Dohme Corp. Engineered anti-tslp antibody
    WO2011054893A2 (en) 2009-11-05 2011-05-12 Novartis Ag Biomarkers predictive of progression of fibrosis
    WO2011098449A1 (en) 2010-02-10 2011-08-18 Novartis Ag Methods and compounds for muscle growth
    US10138478B2 (en) 2010-07-16 2018-11-27 Adimab, Llc Antibody libraries
    US9354228B2 (en) 2010-07-16 2016-05-31 Adimab, Llc Antibody libraries
    US10889811B2 (en) 2010-07-16 2021-01-12 Adimab, Llc Antibody libraries
    WO2012166906A1 (en) 2011-05-31 2012-12-06 Massachusetts Institute Of Technology Cell-directed synthesis of multifunctional nanopatterns and nanomaterials
    WO2013003625A2 (en) 2011-06-28 2013-01-03 Oxford Biotherapeutics Ltd. Antibodies
    WO2013001369A2 (en) 2011-06-28 2013-01-03 Oxford Biotherapeutics Ltd. Therapeutic and diagnostic target
    WO2013016220A1 (en) 2011-07-22 2013-01-31 Amgen Inc. Il-17 receptor a is required for il-17c biology
    WO2013043933A2 (en) 2011-09-22 2013-03-28 Amgen Inc. Cd27l antigen binding proteins
    EP3693395A1 (en) 2012-05-18 2020-08-12 Amgen Inc. St2 antigen binding proteins
    WO2014020331A1 (en) 2012-08-01 2014-02-06 Oxford Biotherapeutics Ltd. Therapeutic and diagnostic target
    WO2014089335A2 (en) 2012-12-07 2014-06-12 Amgen Inc. Bcma antigen binding proteins
    WO2014114801A1 (en) 2013-01-25 2014-07-31 Amgen Inc. Antibodies targeting cdh19 for melanoma
    EP3736293A1 (en) 2013-02-12 2020-11-11 Boehringer Ingelheim International Gmbh Therapeutic and diagnostic target for cancer comprising dll3 binding reagents
    WO2014133855A1 (en) 2013-02-28 2014-09-04 Caprion Proteomics Inc. Tuberculosis biomarkers and uses thereof
    EP3971212A1 (en) 2013-05-30 2022-03-23 Kiniksa Pharmaceuticals, Ltd. Oncostatin m receptor antigen binding proteins
    EP4349864A2 (en) 2013-05-30 2024-04-10 Kiniksa Pharmaceuticals, Ltd. Oncostatin m receptor antigen binding proteins
    EP3456743A1 (en) 2013-05-30 2019-03-20 Kiniksa Pharmaceuticals, Ltd. Oncostatin m receptor antigen binding proteins
    EP4050033A1 (en) 2013-08-02 2022-08-31 Pfizer Inc. Anti-cxcr4 antibodies and antibody-drug conjugates
    US9708405B2 (en) 2013-08-02 2017-07-18 Pfizer Inc. Anti-CXCR4 antibodies and antibody-drug conjugates
    WO2015015401A2 (en) 2013-08-02 2015-02-05 Pfizer Inc. Anti-cxcr4 antibodies and antibody-drug conjugates
    US10144781B2 (en) 2013-08-02 2018-12-04 Pfizer Inc. Anti-CXCR4 antibodies and antibody-drug conjugates
    US10752678B2 (en) 2014-02-20 2020-08-25 Allergan, Inc. Complement component C5 antibodies
    EP3653643A1 (en) 2014-02-20 2020-05-20 Allergan, Inc. Complement component c5 antibodies
    US9932395B2 (en) 2014-02-20 2018-04-03 Allergan, Inc. Nucleic acids encoding complement component C5 antibodies
    WO2015127134A2 (en) 2014-02-20 2015-08-27 Allergan, Inc. Complement component c5 antibodies
    US9701743B2 (en) 2014-02-20 2017-07-11 Allergan, Inc. Complement component C5 antibodies
    EP4008726A1 (en) 2014-02-20 2022-06-08 Allergan, Inc. Complement component c5 antibodies
    WO2015130826A1 (en) 2014-02-27 2015-09-03 Allergan, Inc. COMPLEMENT FACTOR Bb ANTIBODIES
    WO2018020000A1 (en) 2016-07-29 2018-02-01 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies targeting tumor associated macrophages and uses thereof
    WO2018158398A1 (en) 2017-03-02 2018-09-07 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies having specificity to nectin-4 and uses thereof
    WO2019020480A1 (en) 2017-07-24 2019-01-31 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies and peptides to treat hcmv related diseases
    WO2020053122A1 (en) 2018-09-10 2020-03-19 INSERM (Institut National de la Santé et de la Recherche Médicale) Combination of her2/neu antibody with heme for treating cancer
    WO2020193520A1 (en) 2019-03-25 2020-10-01 INSERM (Institut National de la Santé et de la Recherche Médicale) Treatment of taupathy disorders by targeting new tau species
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    WO2023175171A1 (en) 2022-03-18 2023-09-21 Inserm (Institut National De La Sante Et De La Recherche Medicale) Bk polyomavirus antibodies and uses thereof
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    DK164790D0 (en) 1990-07-09
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    EP0368684B1 (en) 1994-03-09
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    JP2919890B2 (en) 1999-07-19
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