USRE48787E1 - Humanised antibodies - Google Patents

Humanised antibodies Download PDF

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USRE48787E1
USRE48787E1 US16/378,731 US201916378731A USRE48787E US RE48787 E1 USRE48787 E1 US RE48787E1 US 201916378731 A US201916378731 A US 201916378731A US RE48787 E USRE48787 E US RE48787E
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heavy chain
residues
donor
antibody
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John Robert Adair
Diljeet Singh Athwal
John Spencer Emtage
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UCB Biopharma SRL
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    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K16/00Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies
    • C07K16/18Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans
    • 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
    • C07K14/46Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans from vertebrates
    • C07K14/461Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans from vertebrates from fish
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K16/00Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies
    • C07K16/18Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans
    • C07K16/24Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against cytokines, lymphokines or interferons
    • C07K16/241Tumor Necrosis Factors
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K16/00Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies
    • C07K16/18Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans
    • C07K16/28Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants
    • C07K16/2803Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants against the immunoglobulin superfamily
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K16/00Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies
    • C07K16/18Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans
    • C07K16/28Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants
    • C07K16/2803Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants against the immunoglobulin superfamily
    • C07K16/2809Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants against the immunoglobulin superfamily against the T-cell receptor (TcR)-CD3 complex
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K16/00Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies
    • C07K16/18Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans
    • C07K16/28Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants
    • C07K16/2803Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants against the immunoglobulin superfamily
    • C07K16/2812Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants against the immunoglobulin superfamily against CD4
    • 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
    • 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
    • C07K16/464Igs containing CDR-residues from one specie grafted between FR-residues from another
    • C07K16/465Igs containing CDR-residues from one specie grafted between FR-residues from another with additional modified FR-residues
    • 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
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K2317/00Immunoglobulins specific features
    • C07K2317/60Immunoglobulins specific features characterized by non-natural combinations of immunoglobulin fragments
    • C07K2317/64Immunoglobulins specific features characterized by non-natural combinations of immunoglobulin fragments comprising a combination of variable region and constant region components
    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07KPEPTIDES
    • C07K2319/00Fusion polypeptide

Definitions

  • the present invention relates to humanised antibody molecules, to processes for their production using recombinant DNA technology, and to their therapeutic uses.
  • humanised antibody molecule is used to describe a molecule having an antigen binding site derived from an immunoglobulin from a non-human species, and remaining immunoglobulin-derived parts of the molecule being derived from a human immunoglobulin.
  • the antigen binding site typically comprises complementarity determining regions (CDRs) which determine the binding specificity of the antibody molecule and which are carried on appropriate framework regions in the variable domains.
  • CDRs complementarity determining regions
  • Natural immunoglobulins have been known for many years, as have the various fragments thereof, such as the Fab, (Fab') 2 and Fc fragments, which can be derived by enzymatic cleavage. Natural immunoglobulins comprise a generally Y-shaped molecule having an antigen-binding site towards the end of each upper arm. The remainder of the structure, and particularly the stem of the Y, mediates the effector functions associated with immunoglobulins.
  • Natural immunoglobulins have been used in assay, diagnosis and, to a more limited extent, therapy. However, such uses, especially in therapy, were hindered until recently by the polyclonal nature of natural immunoglobulins.
  • a significant step towards the realisation of the potential of immunoglobulins as therapeutic agents was the discovery of procedures for the production of monoclonal antibodies (MAbs) of defined specificity (1).
  • MAbs are produced by hybridomas which are fusions of rodent spleen cells with rodent myeloma cells. They are therefore essentially rodent proteins. There are very few reports of the production of human MAbs.
  • HAMA Human Anti-Mouse Antibody
  • OKT3 a mouse IgG2a/k MAb which recognises an antigen in the T-cell receptor-CD3 complex has been approved for use in many countries throughout the world as an immunosuppressant in the treatment of acute allograft rejection [Chatenoud et al (2) and Jeffers et al (3)].
  • a significant HAMA response which may include a major anti-idiotype component, may build up on use.
  • Such humanised chimeric antibodies still contain a significant proportion of non-human amino acid sequence, i.e. the complete non-human variable domains, and thus may still elicit some HAMA response, particularly if administered over a prolonged period [Begent et al (ref. 4)].
  • CDRs complementarity determining regions
  • the present invention relates to humanised antibody molecules prepared according to this alternative approach, i.e. CDR-grafted humanised antibody molecules.
  • CDR-grafted humanised antibodies are much less likely to give rise to a HAMA response than humanised chimeric antibodies in view of the much lower proportion of non-human amino acid sequence which they contain.
  • the first criterion is to use as the human acceptor the framework from a particular human immunoglobulin that is unusually homologous to the non-human donor immunoglobulin to be humanised, or to use a consensus framework from many human antibodies.
  • the second criterion is to use the donor amino acid rather than the acceptor if the human acceptor residue is unusual and the donor residue is typical for human sequences at a specific residue of the framework.
  • the third criterion is to use the donor framework amino acid residue rather than the acceptor at positions immediately adjacent to the CDRs.
  • the fourth criterion is to use the donor amino acid residue at framework positions at which the amino acid is predicted to have a side chain atom within about 3 ⁇ of the CDRs in a three-dimensional immunoglobulin model and to be capable of interacting with the antigen or with the CDRs of the humanised immunoglobulin. It is proposed that criteria two, three or four may be applied in addition or alternatively to criterion one, and may be applied singly or in any combination.
  • WO 90/07861 describes in detail the preparation of a single CDR-grafted humanised antibody, a humanised antibody having specificity for the p55 Tac protein of the IL-2 receptor.
  • the donor CDRs were as defined by Kabat et al (7 and 8) and in addition the mouse donor residues were used in place of the human acceptor residues, at positions 27, 30, 48, 66, 67, 89, 91, 94, 103, 104, 105 and 107 in the heavy chain and at positions 48, 60 and 63 in the light chain, of the variable region frameworks.
  • the humanised anti-Tac antibody obtained is reported to have an affinity for p55 of 3 ⁇ 10 9 M ⁇ 1 , about one-third of that of the murine MAb.
  • the invention provides a CDR-grafted antibody heavy chain having a variable region domain comprising acceptor framework and donor antigen binding regions wherein the framework comprises donor residues at at least one of positions 6, 23, and/or 24, 48 and/or 49, 71 and/or 73, 75 and/or 76 and/or 78 and 88 and/or 91.
  • the heavy chain framework comprises donor residues at positions 23, 24, 49, 71, 73 and 78 or at positions 23, 24 and 49.
  • the residues at positions 71, 73 and 78 of the heavy chain framework are preferably either all acceptor or all donor residues.
  • the heavy chain framework additionally comprises donor residues at one, some or all of positions 6, 37, 48 and 94. Also it is particularly preferred that residues at positions of the heavy chain framework which are commonly conserved across species, i.e. positions 2, 4, 25, 36, 39, 47, 93, 103, 104, 106 and 107, if not conserved between donor and acceptor, additionally comprise donor residues. Most preferably the heavy chain framework additionally comprises donor residues at positions 2, 4, 6, 25, 36, 37, 39, 47, 48, 93, 94, 103, 104, 106 and 107.
  • heavy chain framework optionally comprises donor residues at one, some or all of positions:
  • CDR-grafted antibody products comprising acceptor framework and donor antigen binding regions.
  • the invention is widely applicable to the CDR-grafting of antibodies in general.
  • the donor and acceptor antibodies may be derived from animals of the same species and even same antibody class or sub-class. More usually, however, the donor and acceptor antibodies are derived from animals of different species.
  • the donor antibody is a non-human antibody, such as a rodent MAb, and the acceptor antibody is a human antibody.
  • the donor antigen binding region typically comprises at least one CDR from the donor antibody.
  • the donor antigen binding region comprises at least two and preferably all three CDRs of each of the heavy chain and/or light chain variable regions.
  • the CDRs may comprise the Kabat CDRs, the structural loop CDRs or a composite of the Kabat and structural loop CDRs and any combination of any of these.
  • the antigen binding regions of the CDR-grafted heavy chain variable domain comprise CDRs corresponding to the Kabat CDRs at CDR2 (residues 50-65) and CDR3 (residues 95-100) and a composite of the Kabat and structural loop CDRs at CDR1 (residues 26-35).
  • residue designations given above and elsewhere in the present application are numbered according to the Kabat numbering [refs. (7) and (8)]. Thus the residue designations do not always correspond directly with the linear numbering of the amino acid residues.
  • the actual linear amino acid sequence may contain fewer or additional amino acids than in the strict Kabat numbering corresponding to a shortening of, or insertion into, a structural component, whether framework or CDR, of the basic variable domain structure.
  • the heavy chain variable region of the anti-Tac antibody described by Queen et al contains a single amino acid insert (residue 52a) after residue 52 of CDR2 and a three amino acid insert (residues 82a, 82b and 82c) after framework residue 82, in the Kabat numbering.
  • the correct Kabat numbering of residues may be determined for a given antibody by alignment at regions of homology of the sequence of the antibody with a “standard” Kabat numbered sequence.
  • the invention also provides in a second aspect a CDR-grafted antibody light chain having a variable region domain comprising acceptor framework and donor antigen binding regions wherein the framework comprises donor residues at at least one of positions 1 and/or 3 and 46 and/or 47.
  • the CDR grafted light chain of the second aspect comprises donor residues at positions 46 and/or 47.
  • the invention also provides in a third aspect a CDR-grafted antibody light chain having a variable region domain comprising acceptor framework and donor antigen binding regions wherein the framework comprises donor residues at at least one of positions 46, 48, 58 and 71.
  • the framework comprises donor residues at all of positions 46, 48, 58 and 71.
  • the framework additionally comprises donor residues at positions 36, 44, 47, 85 and 87.
  • positions of the light chain framework which are commonly conserved across species, i.e. positions 2, 4, 6, 35, 49, 62, 64-69, 98, 99, 101 and 102, if not conserved between donor and acceptor, additionally comprise donor residues.
  • the light chain framework additionally comprises donor residues at positions 2, 4, 6, 35, 36, 38, 44, 47, 49, 62, 64-69, 85, 87, 98, 99, 101 and 102.
  • framework of the second or third aspects optionally comprises donor residues at one, some or all of positions:
  • the antigen binding regions of the CDR-grafted light chain variable domain comprise CDRs corresponding to the Kabat CDRs at CDR1 (residue 24-34), CDR2 (residues 50-56) and CDR3 (residues 89-97).
  • the invention further provides in a fourth aspect a CDR-grafted antibody molecule comprising at least one CDR-grafted heavy chain and at least one CDR-grafted light chain according to the first and second or first and third aspects of the invention.
  • the humanised antibody molecules and chains of the present invention may comprise: a complete antibody molecule, having full length heavy and light chains; a fragment thereof, such as a Fab, (Fab') 2 or FV fragment; a light chain or heavy chain monomer or dimer; or a single chain antibody, e.g. a single chain FV in which heavy and light chain variable regions are joined by a peptide linker; or any other CDR-grafted molecule with the same specificity as the original donor antibody.
  • the CDR-grafted heavy and light chain variable region may be combined with other antibody domains as appropriate.
  • the heavy or light chains or humanised antibody molecules of the present invention may have attached to them an effector or reporter molecule.
  • it may have a macrocycle, for chelating a heavy metal atom, or a toxin, such as ricin, attached to it by a covalent bridging structure.
  • the procedures of recombinant DNA technology may be used to produce an immunoglobulin molecule in which the Fc fragment or CH3 domain of a complete immunoglobulin molecule has been replaced by, or has attached thereto by peptide linkage, a functional non-immunoglobulin protein, such as an enzyme or toxin molecule.
  • acceptor variable region framework sequences may be used having regard to class-type of the donor antibody from which the antigen binding regions are derived.
  • the type of acceptor framework used is of the same/similar class/type as the donor antibody.
  • the framework may be chosen to maximise/optimise homology with the donor antibody sequence particularly at positions close or adjacent to the CDRs.
  • a high level of homology between donor and acceptor sequences is not important for application of the present invention.
  • the present invention identifies a hierarchy of framework residue positions at which donor residues may be important or desirable for obtaining a CDR-grafted antibody product having satisfactory binding properties.
  • the CDR-grafted products usually have binding affinities of at least 10 5 M ⁇ 1 , preferably at least about 10 8 M ⁇ 1 , or especially in the range 10 8 -10 12 M ⁇ 1 .
  • the present invention is applicable to any combination of donor and acceptor antibodies irrespective of the level of homology between their sequences.
  • a protocol for applying the invention to any particular donor-acceptor antibody pair is given hereinafter.
  • human frameworks which may be used are KOL, NEWM, REI, EU, LAY and POM (refs. 4 and 5) and the like; for instance KOL and NEWM for the heavy chain and REI for the light chain and EU, LAY and POM for both the heavy chain and the light chain.
  • the constant region domains of the products of the invention may be selected having regard to the proposed function of the antibody in particular the effector functions which may be required.
  • the constant region domains may be human IgA, IgE, IgG or IgM domains.
  • IgG human constant region domains may be used, especially of the IgG1 and IgG3 isotypes, when the humanised antibody molecule is intended for therapeutic uses, and antibody effector functions are required.
  • IgG2 and IgG4 isotypes may be used when the humanised antibody molecule is intended for therapeutic purposes and antibody effector functions are not required, e.g. for simple blocking of lymphokine activity.
  • the remainder of the antibody molecules need not comprise only protein sequences from immunoglobulins.
  • a gene may be constructed in which a DNA sequence encoding part of a human immunoglobulin chain is fused to a DNA sequence encoding the amino acid sequence of a functional polypeptide such as an effector or reporter molecule.
  • the CDR-grafted antibody heavy and light chain and antibody molecule products are produced by recombinant DNA technology.
  • the invention also includes DNA sequences coding for the CDR-grafted heavy and light chains, cloning and expression vectors containing the DNA sequences, host cells transformed with the DNA sequences and processes for producing the CDR-grafted chains and antibody molecules comprising expressing the DNA sequences in the transformed host cells.
  • the DNA sequences which encode the donor amino acid sequence may be obtained by methods well known in the art.
  • the donor coding sequences may be obtained by genomic cloning, or cDNA cloning from suitable hybridoma cell lines. Positive clones may be screened using appropriate probes for the heavy and light chain genes in question. Also PCR cloning may be used.
  • DNA coding for acceptor e.g. human acceptor
  • sequences may be obtained in any appropriate way.
  • DNA sequences coding for preferred human acceptor frameworks such as KOL, REI, EU and NEWM, are widely available to workers in the art.
  • DNA sequences coding for the CDR-grafted products may be synthed completely or in part using oligonucleotide synthesis techniques. Site--directed mutagenesis and polymerase chain reaction (PCR) techniques may be used as appropriate. For example oligonucleotide directed synthesis as described by Jones et al (ref 20) may be used. Also oligonucleotide directed mutagenesis of a pre-existing variable region as, for example, described by Verhoeyen et al (ref. 5) or Riechmann et al (ref. 6) may be used. Also enzymatic filling in of gapped oligonucleotides using T 4 DNA polymerase as, for example, described by Queen et al (ref. 9) may be used.
  • PCR polymerase chain reaction
  • Any suitable host cell/vector system may be used for expression of the DNA sequences coding for the CDR-grafted heavy and light chains.
  • Bacterial e.g. E. coli, and other microbial systems may be used, in particular for expression of antibody fragments such as FAb and (Fab') 2 fragments, and especially FV fragments and single chain antibody fragments e.g. single chain FVs.
  • Eucaryotic e.g. mammalian host cell expression systems may be used for production of larger CDR-grafted antibody products, including complete antibody molecules.
  • Suitable mammalian host cells include CHO cells and myeloma or hybridoma cell lines.
  • the present invention provides a process for producing a CDR-grafted antibody product comprising:
  • the CDR-grafted product may comprise only heavy or light chain derived polypeptide, in which case only a heavy chain or light chain polypeptide coding sequence is used to transfect the host cells.
  • the cell line may be transfected with two vectors, the first vector may contain an operon encoding a light chain-derived polypeptide and the second vector containing an operon encoding a heavy chain-derived polypeptide.
  • the vectors are identical, except in so far as the coding sequences and selectable markers are concerned, so as to ensure as far as possible that each polypeptide chain is equally expressed.
  • a single vector may be used, the vector including the sequences encoding both light chain- and heavy chain-derived polypeptides.
  • the DNA in the coding sequences for the light and heavy chains may comprise cDNA or genomic DNA or both. However, it is preferred that the DNA sequence encoding the heavy or light chain comprises at least partially, genomic DNA, preferably a fusion of cDNA and genomic DNA.
  • the present invention is applicable to antibodies of any appropriate specificity.
  • the invention may be applied to the humanisation of non-human antibodies which are used for in vivo therapy or diagnosis.
  • the antibodies may be site-specific antibodies such as tumour-specific or cell surface-specific antibodies, suitable for use in in vivo therapy or diagnosis, e.g. tumour imaging.
  • cell surface-specific antibodies are anti-T cell antibodies, such as anti-CD3, and CD4 and adhesion molecules, such as CR3, ICAM and ELAM.
  • the antibodies may have specificity for interleukins (including lymphokines, growth factors and stimulating factors), hormones and other biologically active compounds, and receptors for any of these.
  • the antibodies may have specificity for any of the following: Interferons ⁇ , ⁇ , ⁇ or ⁇ , IL1, IL2, IL3, or IL4, etc., TNF, GCSF, GMCSF, EPO, hGH, or insulin, etc.
  • the present invention also includes therapeutic and diagnostic compositions comprising the CDR-grafted products of the invention and uses of such compositions in therapy and diagnosis.
  • the invention provides a therapeutic or diagnostic composition
  • a therapeutic or diagnostic composition comprising a CDR-grafted antibody heavy or light chain or molecule according to previous aspects of the invention in combination with a pharmaceutically acceptable carrier, diluent or excipient.
  • the invention provides a method of therapy or diagnosis comprising administering an effective amount of a CDR-grafted antibody heavy or light chain or molecule according to previous aspects of the invention to a human or animal subject.
  • Heavy chain CDR1 residues 26-35
  • CDR2 residues 50-65
  • CDR3 residues 95-102
  • Light chain CDR1 residues 24-34
  • CDR2 residues 50-56
  • CDR3 residues 89-97
  • the CDRs (Complementary Determining Regions) were defined by Wu and Kabat (refs. 4 and 5) on the basis of an analysis of the variability of different regions of antibody variable regions. Three regions per domain were recognised. In the light chain the sequences are 24-24, 50-56, 89-97 (numbering according to Kabat (ref 4), Eu Index) inclusive and in the heavy chain the sequences are 31-35, 50-65 and 95-102 inclusive.
  • FIGS. 1-13 The present invention is now described, by way of example only, with reference to the accompanying FIGS. 1-13 .
  • FIGS. 1a and 1b show DNA and amino acid sequences of the OKT3 light chain (SEQ ID NO: 4 and 5);
  • FIGS. 2a and b show DNA and amino acid sequences of the OKT3 heavy chain (SEQ ID NO: 6 and 7);
  • FIG. 3 shows the alignment of the OKT3 light variable region amino acid sequence with that of the light variable region of the human antibody REI (SEQ ID NO: 5 and 8);
  • FIG. 4 shows the alignment of the OKT3 heavy variable region amino acid sequence with that of the heavy variable region of the human antibody KOL (SEQ ID NO: 7 and 10);
  • FIGS. 5a-c show the heavy variable region amino acid sequences of OKT3, KOL and various corresponding CDR grafts (SEQ ID NO: 7 and 11-24);
  • FIG. 6 shows the light variable region amino acid sequences of OKT3, REI and various corresponding CDR grafts (SEQ ID NO: 5, 8, 9, and 25-28);
  • FIG. 7 shows a graph of binding assay results for various grafted OKT3 antibodies'
  • FIG. 8 shows a graph of blocking assay results for various grafted OKT3 antibodies
  • FIG. 9 shows a similar graph of blocking assay results
  • FIGS. 10a and b show similar graphs for both binding assay and blocking assay results
  • FIGS. 11a and b show further similar graphs for both binding assay and blocking assay results
  • FIG. 12 shows a graph of competition assay results for a minimally grafted OKT3 antibody compared with the OKT3 murine reference standard
  • FIG. 13 shows a similar graph of competition assay results comparing a fully grafted OKT3 antibody with the murine reference standard.
  • Hybridoma cells producing antibody OKT3 were provided by Ortho (seedlot 4882.1) and were grown up in antibiotic free Dulbecco's Modified Eagles Medium (DMEM) supplemented with glutamine and 5% foetal calf serum, and divided to provide both an overgrown supernatant for evaluation and cells for extraction of RNA.
  • the overgrown supernatant was shown to contain 250 ug/mL murine IgG2a/kappa antibody.
  • the supernatant was negative for murine lambda light chain and IgG1, IgG2b, IgG3, IgA and IgM heavy chain. 20 mL of supernatant was assayed to confirm that the antibody present was OKT3.
  • the assembly assay for intact mouse IgG in COS cell supernatants was an ELISA with the following format:
  • the assembly assay for chimeric or CDR-grafted antibody in COS cell supernatants was an ELISA with the following format:
  • HUT 78 cells human T cell line, CD3 positive
  • Monolayers of HUT 78 cells were prepared onto 96 well ELISA plates using poly-L-lysine and glutaraldehyde. Samples were added to the monolayers for 1 hour at room temperature.
  • the plates were washed gently using PBS.
  • F(ab')2 goat anti-human IgG Fc (HRPO conjugated) or F(ab')2 goat antimouse IgG Fc (HRPO conjugated) was added as appropriate for humanised or mouse samples. Substrate was added to reveal the reaction.
  • the negative control for the cell-based assay was chimeric B72.3.
  • the positive control was mouse Orthomune OKT3 or chimeric OKT3, when available. This cell-based assay was difficult to perform, and an alternative assay was developed for CDR-grafted OKT3 which was more sensitive and easier to carry out.
  • HPB-ALL human peripheral blood acute lymphocytic leukemia
  • Binding was measured by the following procedure: HPB-ALL cells were harvested from tissue culture. Cells were incubated at 4° C. for 1 hour with various dilutions of test antibody, positive control antibody, or negative control antibody. The cells were washed once and incubated at 4° C. for 1 hour with an FITC-labelled goat anti-human IgG (Fc-specific, mouse absorbed). The cells were washed twice and analysed by cytofluorography.
  • Chimeric OKT3 was used as a positive control for direct binding.
  • the HPB-ALL cells were incubated at 4° C. for 1 hour with various dilutions of test antibody or control antibody.
  • a fixed saturating amount of FITC OKT3 was added.
  • the samples were incubated for 1 hour at 4° C., washed twice and analysed by cytofluorography.
  • FITC-labelled OKT3 was used as a positive control to determine maximum binding.
  • Unlabelled murine OKT3 served as a reference standard for blocking.
  • Negative controls were unstained cells with or without mock-transfected cell supernatant.
  • the ability of the CDR-grafted OKT3 light chain to bind CD3-positive cells and block the binding of murine OKT3 was initially tested in combination with the chimeric OKT3 heave chain.
  • the chimeric OKT3 heavy chain is composed of the murine OKT3 variable region and the human IgG4 constant region.
  • the chimeric heavy chain gene is expressed in the same expression vector used for the CDR-grafted genes.
  • the CDR-grafted light chain expression vector and the chimeric heavy chain expression vector were co-transfected into COS cells.
  • the fully chimeric OKT3 antibody (chimeric light chain and chimeric heavy chain) was found to be fully capable of binding to CD3 positive cells and blocking the binding of murine OKT3 to these cells.
  • the relative binding affinities of CDR-grafted anti-CD3 monoclonal antibodies were determined by competition binding (ref. 6) using the HPB-ALL human T cell line as a source of CD3 antigen, and fluorescein-conjugated murine OKT3 (Fl-OKT3) of known binding affinity as a tracer antibody.
  • the binding affinity of Fl-OKT3 tracer antibody was determined by a direct binding assay in which increasing amounts of Fl-OKT3 were incubated with HPB-ALL (5 ⁇ 10 5 ) in PBS with 5% foetal calf serum for 60 min. at 4° C.
  • Fluorescence intensity per antibody molecule was determined by using microbeads which have a predetermined number of mouse IgG antibody binding sites (Simply Cellular beads, Flow Cytometry Standards). F/P equals the fluorescence intensity of beads saturated with Fl-OKT3 divided by the number of binding sites per bead. The amount of bound and free Fl-OKT3 was calculated from the mean fluorescence intensity per cell, and the ratio of bound/free was plotted against the number of moles of antibody bound. A linear fit was used to determine the affinity of binding (absolute value of the slope).
  • the affinities of competing antibodies were calculated from the equation [X] ⁇ [OKT3] ⁇ (1/Kx) ⁇ (1/Ka), where Ka is the affinity of murine OKT3, Kx is the affinity of competitor X, [ ] is the concentration of competitor antibody at which bound/free binding is R/2, and R is the maximal bound/free binding.
  • OKT3 producing cells were grown as described above and 1.2 ⁇ 10 9 cells harvested and mRNA extracted using the guanidinium/LiC1 extraction procedure.
  • cDNA was prepared by priming from Oligo-dT to generate full length cDNA. The cDNA was methylated and EcoR1 linkers added for cloning.
  • the cDNA library was ligated to pSP65 vector DNA which had been EcoR1 cut and the 5′ phosphate groups removed by calf intestinal phosphatase (EcoR1/CIP). The ligation was used to transform high transformation efficiency Escherichia coli (E. coli) HB101.
  • a cDNA library was prepared. 3600 colonies were screened for the light chain and 10000 colonies were screened for the heavy chain.
  • E. coli colonies positive for either heavy or light chain probes were identified by oligonucleotide screening using the oligonucleotides: 5′ TCCAGATGTTAACTGCTCAC (SEQ ID NO: 1) for the light chain, which is complementary to a sequence in the mouse kappa constant region, and 5′ CAGGGGCCAGTGGATGGATAGAC (SEQ ID NO: 2) for the heavy chain which is complementary to a sequence in the mouse IgG2a constant CH1 domain region. 12 light chain and 9 heavy chain clones were identified and taken for second round screening. Positive clones from the second round of screening were grown up and DNA prepared. The sizes of the gene inserts were estimated by gel electrophoresis and inserts of a size capable of containing a full length cDNA were subcloned into M13 for DNA sequencing.
  • FIGS. 1(a) and 2(a) DNA sequence for the 5′ untranslated regions, signal sequences, variable regions and 3′ untranslated regions of full length cDNAs [ FIGS. 1(a) and 2(a) ] were obtained and the corresponding amino acid sequences predicted [( FIGS. 1(b) and 2(b) ].
  • FIG. 1(a) the untranslated DNA regions are shown in uppercase, and in both FIGS. 1 and 2 the signal sequences are underlined.
  • Celltech expression vectors are based on the plasmid pEE6hCMV (ref 14).
  • a polylinker for the insertion of genes to be expressed has been introduced after the major immediate early promoter/enhancer of the human Cytomegalovirus (hCMV).
  • Marker genes for selection of the plasmid in transfected eukaryotic cells can be inserted as BamH1 cassettes in the unique BamH1 site of pEE6 hCMV; for instance, the neo marker to provide pEE6 hCMV neo. It is usual practice to insert the neo and gpt markers prior to insertion of the gene of interest, whereas the GS marker is inserted last because of the presence of internal EcoR1 sites in the cassette.
  • the selectable markers are expressed from the SV40 late promoter which also provides an origin of replication so that the vectors can be used for expression in the COS cell transient expression system.
  • mice sequences were excised from the M13 based vectors described above as EcoR1 fragments and cloned into either pEE6-hCMV-neo for the heavy chain and into EE6hCMV-gpt for the light chain to yield vectors pJA136 and pJA135 respectively.
  • Plasmids pJA135 and pJA136 were co-transfected into COS cells and supernatant from the transient expression experiment was shown to contain assembled antibody which bound to T-cell enriched lymphocytes. Metabolic labelling experiments using 35 S methionine showed expression and assembly of heavy and light chains.
  • variable domain sequence A restriction site near the 3′ end of the variable domain sequence is identified and used to attach an oligonucleotide adapter coding for the remainder of the mouse variable region and a suitable restriction site for attachment to the constant region of choice.
  • the mouse light chain cDNA sequence contains an Ava1 site near the 3′ end of the variable region [ FIG. 1(a) ].
  • the majority of the sequence of the variable region was isolated as a 396 bp. EcoR1-Ava1 fragment.
  • An oligonucleotide adapter was designed to replace the remainder of the 3′ region of the variable region from the Ava1 site and to include the 5′ residues of the human constant region up to and including a unique Nar1 site which had been previously engineered into the constant region.
  • Hind111 site was introduced to act as a marker for insertion of the linker.
  • the linker was ligated to the V L fragment and the 413 bp EcoR1-Nar1 adapted fragment was purified from the ligation mixture.
  • the constant region was isolated as an Nar1 -BamH1 fragment from an M13 clone NW361 and was ligated with the variable region DNA into an EcoR1/BamH1/C1P pSP65 treated vector in a three way reaction to yield plasmid JA143. Clones were isolated after transformation into E. coli and the linker and junction sequences were confirmed by the presence of the Hind111 site and by DNA sequencing.
  • the construction of the first chimeric light chain gene produces a fusion of mouse and human amino acid sequences at the variable-constant region junction.
  • the amino acids at the chimera junction are:...Leu-Glu-Ile-Asn-Arg(SEQ ID NO: 3)/-/Thr-Val-Ala-Ala
  • variable region fragment was isolated as a 376 bp EcoR1-Ava1 fragment.
  • the oligonucleotide linker was ligated to Nar1 cut pNW361 and then the adapted 396 bp constant region was isolated after recutting the modified pNW361 with EcoR1.
  • the variable region fragment and the modified constant region fragment were ligated directly into EcoR1/C1P treated pEE6hCMVneo to yield pJA137. Initially all clones examined had the insert in the incorrect orientation. Therefore, the insert was re-isolated and recloned to turn the insert round and yield plasmid pJA141. Several clones with the insert in the correct orientation were obtained and the adapter sequence of one was confirmed by DNA sequencing
  • the constant region isotype chosen for the heavy chain was human IgG4.
  • the heavy chain cDNA sequence showed a Ban1 site near the 3′ end of the variable region [ FIG. 2(a) ].
  • the majority of the sequence of the variable region was isolated as a 426 bp. EcoR1/C1P/Ban1 fragment.
  • An oligonucleotide adapter was designated to replace the remainder of the 3′ region of the variable region from the Ban1 site up to and including a unique HindIII site which had been previously engineered into the first two amino acids of the constant region.
  • the linker was ligated to the V H fragment and the EcoR1-Hind111 adapted fragment was purified from the ligation mixture.
  • variable region was ligated to the constant region by cutting pJA91 with EcoR1 and Hind111 removing the intron fragment and replacing it with the V H to yield pJA142. Clones were isolated after transformation in E. coli JM101 and the linker and junction sequences were confirmed by DNA sequencing. (N.B. The Hind111 site is lost on cloning).
  • the chimeric light chain (version 1) was removed from pJA143 as an EcoR1 fragment and cloned into EcoR1/C1P treated pEE6hCMVneo expression vector to yield pJA145. Clones with the insert in the correct orientation were identifled by restriction mapping.
  • the chimeric light chain (version 2) was constructed as described above.
  • the chimeric heavy chain gene was isolated from pJA142 as a 2.5 Kbp EcoR1/BamH1 fragment and cloned into the EcoR1/Bc11/C1P treated vector fragment of a derivative of pEE6hCMVgpt to yield plasmid pJA144.
  • GS versions of pJA141 and pJA144 were constructed by replacing the neo and gpt cassettes by a BamH1/Sa11/C1P treatment of the plasmids, isolation of the vector fragment and ligation to a GS-containing fragment from the plasmid pRO49 to yield the light chain vector pJA179 and the heavy chain vector pJA180.
  • plasmids were made by treating pJA179 or pJA180 with BamH1/C1P and ligating in a Bg111/Hind111 hCMV promoter cassette along with either the Hind111/BamH1 fragment from pJA141 into pJA180 to give the cH-cL-GS plasmid pJA182 or the Hind111/BamH1 fragment from pJA144 into pJA179 to give the cL-cH-GS plasmid pJA181.
  • the chimeric antibody plasmid pJA145 (cL) and pJA144 (cH) were co-transfected into COS cells and supernatant from the transient expression experiment was shown to contain assembled antibody which bound to the HUT 78 human T-cell line. Metabolic labelling experiments using 35 S methionine showed expression and assembly of heavy and light chains. However the light chain mobility seen on reduced gels suggested that the potential glycosylation site was being glycosylated. Expression in COS cells in the presence of tunicamycin showed a reduction in size of the light chain to that shown for control chimeric antibodies and the OKT3 mouse light chain. Therefore JA141 was constructed and expressed.
  • Stable cell lines have been prepared from plasmids pJA141/pJA144 and from pJA179/pJA180, pJA181 and pJA182 by transfection into CHO cells.
  • the approach taken was to try to introduce sufficient mouse residues into a human variable region framework to generate antigen binding activity comparable to the mouse and chimeric antibodies.
  • FIG. 3 shows an alignment of sequences for the human framework region RE1 and the OKT3 light variable region.
  • the structural loops (LOOP) and CDRs (KABAT) believed to correspond to the antigen binding region are marked. Also marked are a number of other residues which may also contribute to antigen binding as described in 13.1(c).
  • the residue type indicates the spatial location of each residue side chain, derived by examination of resolved structures from X-ray crystallography analysis. The key to this residue type designation is as follows:
  • N near to CDR (From X-ray Structures)
  • P Packing
  • B Buried Non-Packing
  • S Service
  • E Exposed
  • I Interface *—Interface —Packing/Part Exposed ?—Non-CDR Residues which may require to be left as Mouse sequence.
  • Residues underlined in FIG. 3 are amino acids.
  • RE1 was chosen as the human framework because the light chain is a kappa chain and the kappa variable regions show higher homology with the mouse sequences than a lambda light variable region, e.g. KOL (see below).
  • RE1 was chosen in preference to another kappa light chain because the X-ray structure of the light chain has been determined so that a structural examination of individual residues could be made.
  • FIG. 4 shows an alignment of sequences for the human framework region KOL and the OKT3 heavy variable region.
  • the structural loops and CDRs believed to correspond to the antigen binding region are marked.
  • Also marked are a number of other residues which may also contribute to antigen binding as described in 12.1(c).
  • the residue type key and other indicators used in FIG. 4 are the same as those used in FIG. 3 .
  • KOL was chosen as the heavy chain framework because the X-ray structure has been determined to a better resolution than, for example, NEWM and also the sequence alignment of OKT3 heavy variable region showed a slightly better homology to KOL than to NEWM.
  • variable region domains were designed with mouse variable region optimal codon usage [Granthan and Perrin (ref 15)] and used the B72.3 signal sequences [Whittle et al (ref 13)].
  • the sequences were designed to be attached to the constant region in the same way as for the chimeric genes described above.
  • Some constructs contained the “Kozak consensus sequence” [Kozak (ref 16)] directly linked to the 5′ of the signal sequence in the gene. This sequence motif is believed to have a beneficial role in translation initiation in eukaryotes.
  • the sequence may be assembled by using oligonucleotides in a manner similar to Jones et al (ref. 17) or by simultaneously replacing all of the CDRs or loop regions by oligonucleotide directed site specific mutagenesis in a manner similar to Verhoeyen et al (ref 2). Both strategies were used and a list of constructions is set out in Tables 1 and 2 and FIGS. 4 and 5a -c. It was noted in several cases that the mutagenesis approach led to deletions and rearrangements in the gene being remodelled, while the success of the assembly approach was very sensitive to the quality of the oligonucleotides.
  • Genes were isolated from M13 or SP65 based intermediate vectors and cloned into pEE6hCMVneo for the light chains and pEE6hCMVgpt for the heavy chains in a manner similar to that for the chimeric genes as described above.
  • a construct designed to include mouse sequence based on loop length did not lead to active antibody in association with mH or cH.
  • a construct designed to include mouse sequence based on Kabat CDRs demonstrated some weak binding in association with mH or cH.
  • framework residues 1, 3, 46, 47 were changed from the human to the murine OKT3 equivalents based on the arguments outlined in Section 12.1 antigen binding was demonstrated when both of the new constructs, which were termed 121A and 221A were co-expressed with cH.
  • residues 1 and 3 are not major contributing residues as the product of the gL221B gene shows little detectable binding activity in association with cH.
  • gH341 gene co-expression of the gH341 gene with cL or mL has been variable and has tended to produce lower amounts of antibody than the cH/cL or mH/mL combinations.
  • the kgL221A gene was co-expressed with kgH341, kgH341A or kgH341B.
  • kgH221A/kgH341 very little material was produced in a normal COS cell expression.
  • kgL221A/kgH341A or kgH221A/kgH341B amounts of antibody similar to gL/cH was produced.
  • Antigen binding was detected when kgL221A/kgH341A or kgH221A/kgH341B combinations were expressed.
  • the antigen binding was very similar to that of the chimeric antibody.
  • CDRs Complementarity Determining Regions
  • OKT3 amino acids 89, 90 and 97 are the same between OKT3 and RE1 ( FIG. 3 ).
  • constructs based on the loop choice for CDR1 (gL121) and the Kabat choice (gL221) were made and co-expressed with mH or cH no evidence for antigen binding activity could be found for gL121, but trace activity could be detected for the gL221, suggesting that a single extra mouse residue in the grafted variable region could have some detectable effect. Both gene constructs were reasonably well expressed in the transient expression system.
  • Additional CDR-grafted heavy chain genes were prepared substantially as described above. With reference to Table 2 the further heavy chain genes were based upon the gh341 (plasmid pJA178) and gH341A (plasmid pJA185) with either mouse OKT3 or human KOL residues at 6, 23, 24, 48, 49, 63, 71, 73, 76, 78, 88 and 91, as indicated.
  • the CDR-grafted light chain genes used in these further experiments were gL221, gL221A, gL221B and gL221C as described above.
  • the CDR-grafted heavy and light chain genes were co-expressed in COS cells either with one another in various combinations but also with the corresponding murine and chimeric heavy and light chain genes substantially as described above.
  • the resultant antibody products were then assayed in binding and blocking assays with HPB-ALL cells as described above.
  • FIGS. 7 and 8 The results of the assays for various grafted heavy chains co-expressed with the gL221C light chain are given in FIGS. 7 and 8 (for the JA184, JA185, JA197 and JA198 constructs—see Table 2), in FIG. 9 (for the JA183, JA184, JA185 and JA197 constructs) in FIGS. 10a and b (for the chimeric, JA185, JA199, JA204, JA205, JA207, JA208 and JA209 constructs) and in FIGS. 11a and b (for the JA183, JA184, JA185, JA198, JA203, JA205 and JA206 constructs).
  • the assay used was as described above in section 3.3.
  • the results obtained are given in FIG. 12 for the basic grafted product and in FIG. 13 for the fully grafted product.
  • binding and blocking assay results indicate the following:
  • the JA198 and JA207 constructs appear to have the best binding characteristics and similar binding abilities, both substantially the same as the chimeric and fully grafted gH341A products. This indicates that positions 88 and 91 and position 76 are not highly critical for maintaining the OKT3 binding ability; whereas at least some of positions 6, 23, 24, 48, 49, 71, 73 and 78 are more important.
  • Anti OKT4A CDR-grafted heavy and light chain genes were prepared, expressed and tested substantially as described above in Example 1 for CDR-grafted OKT3.
  • the CDR grafting of OKT4A is described in detail in Ortho patent application PCT/GB 90 . . . of even date herewith entitled “Humanised Antibodies”.
  • the disclosure of this Ortho patent application PCT/GB 90 . . . is incorporated herein by reference.
  • a number of CDR-grafted OKT4 antibodies have been prepared.
  • the CDR-grafted OKT4A of choice is the combination of the grafted light chain LCDR2 and the grafted heavy chain HCDR10.
  • the human acceptor framework used for the grafted light chains was RE1.
  • the preferred LCDR2 light chain has human to mouse changes at positions 33, 34, 38, 49 and 89 in addition to the structural loop CDRs. Of these changed positions, positions 33, 34 and 89 fall within the preferred extended CDRs of the present invention (positions 33 and 34 in CDR1 and position 89 in CDR3).
  • the human to murine changes at positions 38 and 49 corresponds to positions at which the amino acid residues are preferably donor murine amino acid residues in accordance with the present invention.
  • a comparison of the amino acid sequences of the donor murine light chain variable domain and the RE1 human acceptor light chain variable further reveals that the murine and human residues are identical at all of positions 46, 48 and 71 and at all of positions 2, 4, 6, 35, 36, 44, 47, 62, 64-69, 85, 87, 98, 99 and 101 and 102.
  • the amino acid residue at position 58 in LCDR2 is the human RE1 framework residue not the mouse OKT4 residue as would be preferred in accordance with the present invention.
  • the human acceptor framework used for the grafted heavy chains was KOL.
  • the preferred CDR graft HCDR10 heavy chain has human to mouse changes at positions 24, 35, 57, 58, 60, 88 and 91 in addition to the structural loop CDRs.
  • positions 35 (CDR1) and positions 57, 58 and 60 (CDR2) fall within the preferred extended CDRs of the present invention.
  • the human to mouse change at position 24 corresponds to a position at which the amino acid residue is a donor murine residue in accordance with the present invention.
  • the human to mouse changes at positions 88 and 91 correspond to positions at which the amino acid residues are optionally donor murine residues.
  • murine OKT4A and human KOL heavy chain variable amino acid sequences reveals that the murine and human residues are identical at all of positions 23, 49, 71, 73 and 78 and at all of positions 2, 4, 6, 25, 36, 37, 39, 47, 48, 93, 94, 103, 104, 106 and 107.
  • OKT4A CDR-grafted heavy chain HCDR10 corresponds to a particularly preferred embodiment according to the present invention.
  • a murine antibody, R6-5-D6 (EP 0314863) having specificity for Intercellular Adhesion Molecule 1 (ICAM-1) was CDR-grafted substantially as described above in previous examples. This work is described in greater detail in co-pending application, British Patent Application No. 9009549.8, the disclosure of which is incorporated herein by reference.
  • the human EU framework was used as the acceptor framework for both heavy and light chains.
  • the CDR-grafted antibody currently of choice is provided by co-expression of grafted light chain gL221A and grafted heavy chain gH341D which has a binding affinity for ICAM 1 of about 75% of that of the corresponding mouse-human chimeric antibody.
  • gL221A has murine CDRs at positions 24-34 (CDR1), 50-56 (CDR2) and 89-97 (CDR3).
  • CDR1 CDR1
  • CDR2 CDR2
  • CDR3 CDR3
  • framework residues are also the murine amino acid. These residues were chosen after consideration of the possible contribution of these residues to domain packing and stability of the conformation of the antigen binding region.
  • the residues which have been retained as mouse are at positions 2, 3, 48 (7), 60, 84, 85 and 87.
  • Comparison of the murine anti-ICAM 1 and human EU light chain amino acid sequences reveals that the murine and human residues are identical at positions 46, 58 and 71.
  • gH341D has murine CDRs at positions 26-35 (CDR1), 50-56 (CDR2) and 94-100B (CDR3).
  • murine residues were used in gH341D at positions 24, 48, 69, 71, 73, 80, 88 and 91.
  • Comparison of the murine anti-ICAM 1 and human EU heavy chain amino acid sequences are identical at positions 23, 49 and 78.
  • a number of murine anti-TNFa monoclonal antibodies were CDR-grafted substantially as described above in previous examples. These antibodies include the murine monoclonal antibodies designated 61 E71, hTNF1, hTNF3 and 101.4 A brief summary of the CDR-grafting of each of these antibodies is given below.
  • the gL221/gH341(6) antibody was assessed in an L929 cell competition assay in which the antibody competes against the TNF receptor on L929 cells for binding to TNF in solution.
  • the gL221/gH341(6) antibody was approximately 10% as active as murine 61E71.
  • hTNF1 is a monoclonal antibody which recognises an epitope on human TNF-.
  • the EU human framework was used for CDR-grafting of both the heavy and light variable domains.
  • mice CDR-grafted heavy chain were used at positions 26-35 (CDR1), 50-65 (CDR2) and 95-102 (CDR3).
  • Mouse residues were also used in the frameworks at positions 48, 67, 69, 71, 73, 76, 89, 91, 94 and 108.
  • Comparison of the TNF1 mouse and EU human heavy chain residues reveals that these are identical at positions 23, 24, 29 and 78.
  • mice CDR-grafted light chain In the CDR-grafted light chain (gLhTNF1) mouse CDRs wre used at positions 24-34 (CDR1), 50-56 (CDR2) and 89-97 (CDR3). In addition mouse residues were used in the frameworks at positions 3, 42, 48, 49, 83, 106 and 108. Comparison of the hTNF1 mouse and EU human light chain residues reveals that these are identical at positions 46, 58 and 71.
  • the grafted hTNF1 heavy chain was co-expressed with the chimeric light chain and the binding ability of the product compared with that of the chimeric light chain/chimeric heavy chain product in a TNF binding assay.
  • the grafted heavy chain product appeared to have binding ability for TNF slightly better than the fully chimeric product.
  • a grafted heavy chain/grafted light chain product was co-expressed and compared with the fully chimeric product and found to have closely similar binding properties to the latter product.
  • hTNF3 recognises an epitope on human TNF- ⁇ .
  • the sequence of hTNF3 shows only 21 differences compared to 61E71 in the light and heavy chain variable regions, 10 in the light chain (2 in the CDRs at positions 50, 96 and 8 in the framework at 1, 19, 40, 45, 46, 76, 103 and 106) and 11 in the heavy chain (3 in the CDR regions at positions 52, 60 and 95 and 8 in the framework at 1, 10, 38, 40, 67, 73, 87 and 105).
  • the light and heavy chains of the 61E71 and hTNF3 chimeric antibodies can be exchanged without loss of activity in the direct binding assay.
  • 61E71 is an order of magnitude less able to compete with the TNF receptor on L929 cells for TNF-a compared to hTNF3.
  • gL221 and gH341(+23, 24, 48, 49 71 and 73 as mouse) genes have been built for hTNF3 and tested and the resultant grafted antibody binds well to TNF-a, but competes very poorly in the L929 assay. It is possible that in this case also the framework residues identified for OKT3 programme may improve the competitive binding ability of this antibody.
  • 101.4 is a further murine monoclonal antibody able to recognise human TNF-a.
  • the heavy chain of this antibody shows good homology to KOL and so the CDR-grafting has been based on RE1 for the light chain and KOL for the heavy chain.
  • Several grafted heavy chain genes have been constructed with conservative choices for the CDR's (gH341) and which have one or a small number of non-CDR residues at positions 73, 78 or 77-79 inclusive, as the mouse amino acids. These have been co-expressed with cL or gL221. In all cases binding to TNF equivalent to the chimeric antibody is seen and when co-expressed with cL the resultant antibodies are able to compete well in the L929 assay. However, with gL221 the resultant antibodies are at least an order of magnitude less able to compete for TNF against the TNF receptor on L929 cells.

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Abstract

CDR-grafted antibody heavy and light chains comprise acceptor framework and donor antigen binding regions, the heavy chains comprising donor residues at at least one of positions (6, 23) and/or (24, 48) and/or (49, 71) and/or (73, 75) and/or (76) and/or (78) and (88) and/or (91). The CDR-grafted light chains comprise donor residues at at least one of positions (1) and/or (3) and (46) and/or (47) or at at least one of positions (46, 48, 58) and (71). The CDR-grafted antibodies are preferably humanized antibodies, having non human, e.g. rodent, donor and human acceptor frameworks, and may be used for in vivo therapy and diagnosis. A generally applicable protocol is disclosed for obtaining CDR-grafted antibodies.

Description

Notice: More than one reissue application has been filed for the reissue of U.S. Pat. No. 7,556,771. The reissue applications are application Nos. 16/378,731 (the present application), and 17/464,970, which is a reissue continuation of U.S. Pat. No. 7,556,771. This application is a reissue of U.S. Pat. No. 7,566,771, which was filed as application Ser. No. 08/485,686 on Jun. 7, 1995, which is a continuation , of application Ser. No. 08/303,569, filed on Sep. 7, 1994 and issued as U.S. Pat. No. 5,859,205, which is a § 1.62 continuation of U.S. application Ser. No. 07/743,329, filed Sep. 17, 1991, now abandoned, which is the U.S. counterpart of PCT/GB90/02017 filed Dec. 21, 1990, originally filed as which claims the priority benefit of United Kingdom Application Serial No. 8928874, filed Dec. 21, 1989.
FIELD OF THE INVENTION
The present invention relates to humanised antibody molecules, to processes for their production using recombinant DNA technology, and to their therapeutic uses.
The term “humanised antibody molecule” is used to describe a molecule having an antigen binding site derived from an immunoglobulin from a non-human species, and remaining immunoglobulin-derived parts of the molecule being derived from a human immunoglobulin. The antigen binding site typically comprises complementarity determining regions (CDRs) which determine the binding specificity of the antibody molecule and which are carried on appropriate framework regions in the variable domains. There are 3 CDRs (CDR1, CDR2 and CDR3) in each of the heavy and light chain variable domains.
In the description, reference is made to a number of publications by number. The publications are listed in numerical order at the end of the description.
BACKGROUND OF THE INVENTION
Natural immunoglobulins have been known for many years, as have the various fragments thereof, such as the Fab, (Fab')2 and Fc fragments, which can be derived by enzymatic cleavage. Natural immunoglobulins comprise a generally Y-shaped molecule having an antigen-binding site towards the end of each upper arm. The remainder of the structure, and particularly the stem of the Y, mediates the effector functions associated with immunoglobulins.
Natural immunoglobulins have been used in assay, diagnosis and, to a more limited extent, therapy. However, such uses, especially in therapy, were hindered until recently by the polyclonal nature of natural immunoglobulins. A significant step towards the realisation of the potential of immunoglobulins as therapeutic agents was the discovery of procedures for the production of monoclonal antibodies (MAbs) of defined specificity (1).
However, most MAbs are produced by hybridomas which are fusions of rodent spleen cells with rodent myeloma cells. They are therefore essentially rodent proteins. There are very few reports of the production of human MAbs.
Since most available MAbs are of rodent origin, they are naturally antigenic in humans and thus can give rise to an undesirable immune response termed the HAMA (Human Anti-Mouse Antibody) response. Therefore, the use of rodent MAbs as therapeutic agents in humans is inherently limited by the fact that the human subject will mount an immunological response to the MAb and will either remove it entirely or at least reduce its effectiveness. In practice, MAbs of rodent origin may not be used in patients for more than one or a few treatments as a HAMA response soon develops rendering the MAb ineffective as well as giving rise to undesirable reactions. For instance, OKT3 a mouse IgG2a/k MAb which recognises an antigen in the T-cell receptor-CD3 complex has been approved for use in many countries throughout the world as an immunosuppressant in the treatment of acute allograft rejection [Chatenoud et al (2) and Jeffers et al (3)]. However, in view of the rodent nature of this and other such MAbs, a significant HAMA response which may include a major anti-idiotype component, may build up on use. Clearly, it would be highly desirable to diminish or abolish this undesirable HAMA response and thus enlarge the areas of use of these very useful antibodies.
Proposals have therefore been made to render non-human MAbs less antigenic in humans. Such techniques can be generically termed “humanisation” techniques. These techniques typically involve the use of recombinant DNA technology to manipulate DNA sequences encoding the polypeptide chains of the antibody molecule.
Early method for humanising MAbs involved production of chimeric antibodies in which an antigen binding site comprising the complete variable domains of one antibody is linked to constant domains derived from another antibody. Methods for carrying out such chimerisation procedures are described in EP0120694 (Celltech Limited), EP0125023 (Genentech Inc. and City of Hope), EP-A-0 171496 (Res. Dev. Corp. Japan), EP-A-0 173 494 (Stanford University), and WO 86/01533 (Celltech Limited). This latter Celltech application (WO 86/01533) discloses a process for preparing an antibody molecule having the variable domains from a mouse MAb and the constant domains from a human immunoglobulin. Such humanised chimeric antibodies, however, still contain a significant proportion of non-human amino acid sequence, i.e. the complete non-human variable domains, and thus may still elicit some HAMA response, particularly if administered over a prolonged period [Begent et al (ref. 4)].
In an alternative approach, described in EP-A-0239400 (Winter), the complementarity determining regions (CDRs) of a mouse MAb have been grafted onto the framework regions of the variable domains of a human immunoglobulin by site directed mutagenesis using long oligonucleotides. The present invention relates to humanised antibody molecules prepared according to this alternative approach, i.e. CDR-grafted humanised antibody molecules. Such CDR-grafted humanised antibodies are much less likely to give rise to a HAMA response than humanised chimeric antibodies in view of the much lower proportion of non-human amino acid sequence which they contain.
The earliest work on humanising MAbs by CDR-grafting was carried out on MAbs recognising synthetic antigens, such as the NP or NIP antigens. However, examples in which a mouse MAb recognising lysozyme and a rat MAb recognising an antigen on human T-cells were humanised by CDR-grafting have been described by Verhoeyen et al (5) and Riechmann et al (6) respectively. The preparation of CDR-grafted antibody to the antigen on human T cells is also described in WO 89/07452 (Medical Research Council).
In Riechmann et al/Medical Research Council it was found that transfer of the CDR regions alone [as defined by Kabat refs. (7) and (8)] was not sufficient to provide satisfactory antigen binding activity in the CDR-grafted product. Riechmann et al found that it was necessary to convert a serine residue at position 27 of the human sequence to the corresponding rat phenylalanine residue to obtain a CDR-grafted product having improved antigen binding activity. This residue at position 27 of the heavy chain is within the structural loop adjacent to CDR1. A further construct which additionally contained a human serine to rat tyrosine change at position 30 of the heavy chain did not have a significantly altered binding activity over the humanised antibody with the serine to phenylalanine change at position 27 alone. These results indicate that changes to residues of the human sequence outside the CDR regions, in particular in the structural loop adjacent to CDR1, may be necessary to obtain effective antigen binding activity for CDR-grafted antibodies which recognise more complex antigens. Even so the binding affinity of the best CDR-grafted antibodies obtained was still significantly less than the original MAb.
Very recently Queen et al (9) have described the preparation of a humanised antibody that binds to the interleukin 2 receptor, by combining the CDRs of a murine MAb (anti-Tac) with human immunoglobulin framework and constant regions. The human framework regions were chosen to maximise homology with the anti-Tac MAb sequence. In addition computer modelling was used to identify framework amino acid residues which were likely to interact with the CDRs of antigen, and mouse amino acids were used at these positions in the humanised antibody.
In WO 90/07861 Queen et al propose four criteria for designing humanised immunoglobulins. The first criterion is to use as the human acceptor the framework from a particular human immunoglobulin that is unusually homologous to the non-human donor immunoglobulin to be humanised, or to use a consensus framework from many human antibodies. The second criterion is to use the donor amino acid rather than the acceptor if the human acceptor residue is unusual and the donor residue is typical for human sequences at a specific residue of the framework. The third criterion is to use the donor framework amino acid residue rather than the acceptor at positions immediately adjacent to the CDRs. The fourth criterion is to use the donor amino acid residue at framework positions at which the amino acid is predicted to have a side chain atom within about 3 Å of the CDRs in a three-dimensional immunoglobulin model and to be capable of interacting with the antigen or with the CDRs of the humanised immunoglobulin. It is proposed that criteria two, three or four may be applied in addition or alternatively to criterion one, and may be applied singly or in any combination.
WO 90/07861 describes in detail the preparation of a single CDR-grafted humanised antibody, a humanised antibody having specificity for the p55 Tac protein of the IL-2 receptor. The combination of all four criteria, as above, were employed in designing this humanised antibody, the variable region frameworks of the human antibody Eu (7) being used as acceptor. In the resultant humanised antibody the donor CDRs were as defined by Kabat et al (7 and 8) and in addition the mouse donor residues were used in place of the human acceptor residues, at positions 27, 30, 48, 66, 67, 89, 91, 94, 103, 104, 105 and 107 in the heavy chain and at positions 48, 60 and 63 in the light chain, of the variable region frameworks. The humanised anti-Tac antibody obtained is reported to have an affinity for p55 of 3×109 M−1, about one-third of that of the murine MAb.
We have further investigated the preparation of CDR-grafted humanised antibody molecules and have identified a hierarchy of positions within the framework of the variable regions (i.e. outside both the Kabat CDRs and structural loops of the variable regions) at which the amino acid identities of the residues are important for obtaining CDR-grafted products with satisfactory binding affinity. This has enabled us to establish a protocol for obtaining satisfactory CDR-grafted products which may be applied very widely irrespective of the level of homology between the donor immunoglobulin and acceptor framework. The set of residues which we have identified as being of critical importance does not coincide with the residues identified by Queen et al (9).
SUMMARY OF THE INVENTION
Accordingly, in a first aspect the invention provides a CDR-grafted antibody heavy chain having a variable region domain comprising acceptor framework and donor antigen binding regions wherein the framework comprises donor residues at at least one of positions 6, 23, and/or 24, 48 and/or 49, 71 and/or 73, 75 and/or 76 and/or 78 and 88 and/or 91.
In preferred embodiments, the heavy chain framework comprises donor residues at positions 23, 24, 49, 71, 73 and 78 or at positions 23, 24 and 49. The residues at positions 71, 73 and 78 of the heavy chain framework are preferably either all acceptor or all donor residues.
In particularly preferred embodiments the heavy chain framework additionally comprises donor residues at one, some or all of positions 6, 37, 48 and 94. Also it is particularly preferred that residues at positions of the heavy chain framework which are commonly conserved across species, i.e. positions 2, 4, 25, 36, 39, 47, 93, 103, 104, 106 and 107, if not conserved between donor and acceptor, additionally comprise donor residues. Most preferably the heavy chain framework additionally comprises donor residues at positions 2, 4, 6, 25, 36, 37, 39, 47, 48, 93, 94, 103, 104, 106 and 107.
In addition the heavy chain framework optionally comprises donor residues at one, some or all of positions:
1 and 3,
72 and 76,
69 (if 48 is different between donor and acceptor),
38 and 46 (if 48 is the donor residue),
80 and 20 (if 69 is the donor residue),
67,
82 and 18 (if 67 is the donor residue),
91,
88, and
any one or more of 9, 11, 41, 87, 108, 110 and 112.
In the first and other aspects of the present invention reference is made to CDR-grafted antibody products comprising acceptor framework and donor antigen binding regions. It will be appreciated that the invention is widely applicable to the CDR-grafting of antibodies in general. Thus, the donor and acceptor antibodies may be derived from animals of the same species and even same antibody class or sub-class. More usually, however, the donor and acceptor antibodies are derived from animals of different species. Typically the donor antibody is a non-human antibody, such as a rodent MAb, and the acceptor antibody is a human antibody.
In the first and other aspects of the present invention, the donor antigen binding region typically comprises at least one CDR from the donor antibody. Usually the donor antigen binding region comprises at least two and preferably all three CDRs of each of the heavy chain and/or light chain variable regions. The CDRs may comprise the Kabat CDRs, the structural loop CDRs or a composite of the Kabat and structural loop CDRs and any combination of any of these. Preferably, the antigen binding regions of the CDR-grafted heavy chain variable domain comprise CDRs corresponding to the Kabat CDRs at CDR2 (residues 50-65) and CDR3 (residues 95-100) and a composite of the Kabat and structural loop CDRs at CDR1 (residues 26-35).
The residue designations given above and elsewhere in the present application are numbered according to the Kabat numbering [refs. (7) and (8)]. Thus the residue designations do not always correspond directly with the linear numbering of the amino acid residues. The actual linear amino acid sequence may contain fewer or additional amino acids than in the strict Kabat numbering corresponding to a shortening of, or insertion into, a structural component, whether framework or CDR, of the basic variable domain structure. For example, the heavy chain variable region of the anti-Tac antibody described by Queen et al (9) contains a single amino acid insert (residue 52a) after residue 52 of CDR2 and a three amino acid insert (residues 82a, 82b and 82c) after framework residue 82, in the Kabat numbering. The correct Kabat numbering of residues may be determined for a given antibody by alignment at regions of homology of the sequence of the antibody with a “standard” Kabat numbered sequence.
The invention also provides in a second aspect a CDR-grafted antibody light chain having a variable region domain comprising acceptor framework and donor antigen binding regions wherein the framework comprises donor residues at at least one of positions 1 and/or 3 and 46 and/or 47. Preferably the CDR grafted light chain of the second aspect comprises donor residues at positions 46 and/or 47.
The invention also provides in a third aspect a CDR-grafted antibody light chain having a variable region domain comprising acceptor framework and donor antigen binding regions wherein the framework comprises donor residues at at least one of positions 46, 48, 58 and 71.
In a preferred embodiment of the third aspect, the framework comprises donor residues at all of positions 46, 48, 58 and 71.
In particularly preferred embodiments of the second and third aspects, the framework additionally comprises donor residues at positions 36, 44, 47, 85 and 87. Similarly positions of the light chain framework which are commonly conserved across species, i.e. positions 2, 4, 6, 35, 49, 62, 64-69, 98, 99, 101 and 102, if not conserved between donor and acceptor, additionally comprise donor residues. Most preferably the light chain framework additionally comprises donor residues at positions 2, 4, 6, 35, 36, 38, 44, 47, 49, 62, 64-69, 85, 87, 98, 99, 101 and 102.
In addition the framework of the second or third aspects optionally comprises donor residues at one, some or all of positions:
1 and 3,
63,
60 (if 60 and 54 are able to form at potential saltbridge),
70 (if 70 and 24 are able to form a potential saltbridge),
73 and 21 (if 47 is different between donor and acceptor),
37 and 45 (if 47 is different between donor and acceptor), and
any one or more of 10, 12, 40, 80, 103 and 105.
Preferably, the antigen binding regions of the CDR-grafted light chain variable domain comprise CDRs corresponding to the Kabat CDRs at CDR1 (residue 24-34), CDR2 (residues 50-56) and CDR3 (residues 89-97).
The invention further provides in a fourth aspect a CDR-grafted antibody molecule comprising at least one CDR-grafted heavy chain and at least one CDR-grafted light chain according to the first and second or first and third aspects of the invention.
The humanised antibody molecules and chains of the present invention may comprise: a complete antibody molecule, having full length heavy and light chains; a fragment thereof, such as a Fab, (Fab')2 or FV fragment; a light chain or heavy chain monomer or dimer; or a single chain antibody, e.g. a single chain FV in which heavy and light chain variable regions are joined by a peptide linker; or any other CDR-grafted molecule with the same specificity as the original donor antibody. Similarly the CDR-grafted heavy and light chain variable region may be combined with other antibody domains as appropriate.
Also the heavy or light chains or humanised antibody molecules of the present invention may have attached to them an effector or reporter molecule. For instance, it may have a macrocycle, for chelating a heavy metal atom, or a toxin, such as ricin, attached to it by a covalent bridging structure. Alternatively, the procedures of recombinant DNA technology may be used to produce an immunoglobulin molecule in which the Fc fragment or CH3 domain of a complete immunoglobulin molecule has been replaced by, or has attached thereto by peptide linkage, a functional non-immunoglobulin protein, such as an enzyme or toxin molecule.
Any appropriate acceptor variable region framework sequences may be used having regard to class-type of the donor antibody from which the antigen binding regions are derived. Preferably, the type of acceptor framework used is of the same/similar class/type as the donor antibody. Conveniently, the framework may be chosen to maximise/optimise homology with the donor antibody sequence particularly at positions close or adjacent to the CDRs. However, a high level of homology between donor and acceptor sequences is not important for application of the present invention. The present invention identifies a hierarchy of framework residue positions at which donor residues may be important or desirable for obtaining a CDR-grafted antibody product having satisfactory binding properties. The CDR-grafted products usually have binding affinities of at least 105 M−1, preferably at least about 108 M−1, or especially in the range 108-1012 M−1. In principle, the present invention is applicable to any combination of donor and acceptor antibodies irrespective of the level of homology between their sequences. A protocol for applying the invention to any particular donor-acceptor antibody pair is given hereinafter. Examples of human frameworks which may be used are KOL, NEWM, REI, EU, LAY and POM (refs. 4 and 5) and the like; for instance KOL and NEWM for the heavy chain and REI for the light chain and EU, LAY and POM for both the heavy chain and the light chain.
Also the constant region domains of the products of the invention may be selected having regard to the proposed function of the antibody in particular the effector functions which may be required. For example, the constant region domains may be human IgA, IgE, IgG or IgM domains. In particular, IgG human constant region domains may be used, especially of the IgG1 and IgG3 isotypes, when the humanised antibody molecule is intended for therapeutic uses, and antibody effector functions are required. Alternatively, IgG2 and IgG4 isotypes may be used when the humanised antibody molecule is intended for therapeutic purposes and antibody effector functions are not required, e.g. for simple blocking of lymphokine activity.
However, the remainder of the antibody molecules need not comprise only protein sequences from immunoglobulins. For instance, a gene may be constructed in which a DNA sequence encoding part of a human immunoglobulin chain is fused to a DNA sequence encoding the amino acid sequence of a functional polypeptide such as an effector or reporter molecule.
Preferably the CDR-grafted antibody heavy and light chain and antibody molecule products are produced by recombinant DNA technology.
Thus in further aspects the invention also includes DNA sequences coding for the CDR-grafted heavy and light chains, cloning and expression vectors containing the DNA sequences, host cells transformed with the DNA sequences and processes for producing the CDR-grafted chains and antibody molecules comprising expressing the DNA sequences in the transformed host cells.
The general methods by which the vectors may be constructed, transfection methods and culture methods are well known per se and form no part of the invention. Such methods are shown, for instance, in references 10 and 11.
The DNA sequences which encode the donor amino acid sequence may be obtained by methods well known in the art. For example the donor coding sequences may be obtained by genomic cloning, or cDNA cloning from suitable hybridoma cell lines. Positive clones may be screened using appropriate probes for the heavy and light chain genes in question. Also PCR cloning may be used.
DNA coding for acceptor, e.g. human acceptor, sequences may be obtained in any appropriate way. For example DNA sequences coding for preferred human acceptor frameworks such as KOL, REI, EU and NEWM, are widely available to workers in the art.
The standard techniques of molecular biology may be used to prepare DNA sequences coding for the CDR-grafted products. Desired DNA sequences may be synthesised completely or in part using oligonucleotide synthesis techniques. Site--directed mutagenesis and polymerase chain reaction (PCR) techniques may be used as appropriate. For example oligonucleotide directed synthesis as described by Jones et al (ref 20) may be used. Also oligonucleotide directed mutagenesis of a pre-existing variable region as, for example, described by Verhoeyen et al (ref. 5) or Riechmann et al (ref. 6) may be used. Also enzymatic filling in of gapped oligonucleotides using T4 DNA polymerase as, for example, described by Queen et al (ref. 9) may be used.
Any suitable host cell/vector system may be used for expression of the DNA sequences coding for the CDR-grafted heavy and light chains. Bacterial e.g. E. coli, and other microbial systems may be used, in particular for expression of antibody fragments such as FAb and (Fab')2 fragments, and especially FV fragments and single chain antibody fragments e.g. single chain FVs. Eucaryotic e.g. mammalian host cell expression systems may be used for production of larger CDR-grafted antibody products, including complete antibody molecules. Suitable mammalian host cells include CHO cells and myeloma or hybridoma cell lines.
Thus, in a further aspect the present invention provides a process for producing a CDR-grafted antibody product comprising:
  • (a) producing in an expression vector an operon having a DNA sequence which encodes an antibody heavy chain according to the first aspect of the invention;
    and/or
  • (b) producing in an expression vector an operon having a DNA sequence which encodes a complementary antibody light chain according to the second or third aspect of the invention;
  • (c) transfecting a host cell with the or each vector; and
  • (d) culturing the transfected cell line to produce the CDR-grafted antibody product.
The CDR-grafted product may comprise only heavy or light chain derived polypeptide, in which case only a heavy chain or light chain polypeptide coding sequence is used to transfect the host cells. For production of products comprising both heavy and light chains, the cell line may be transfected with two vectors, the first vector may contain an operon encoding a light chain-derived polypeptide and the second vector containing an operon encoding a heavy chain-derived polypeptide. Preferably, the vectors are identical, except in so far as the coding sequences and selectable markers are concerned, so as to ensure as far as possible that each polypeptide chain is equally expressed. Alternatively, a single vector may be used, the vector including the sequences encoding both light chain- and heavy chain-derived polypeptides.
The DNA in the coding sequences for the light and heavy chains may comprise cDNA or genomic DNA or both. However, it is preferred that the DNA sequence encoding the heavy or light chain comprises at least partially, genomic DNA, preferably a fusion of cDNA and genomic DNA.
The present invention is applicable to antibodies of any appropriate specificity. Advantageously, however, the invention may be applied to the humanisation of non-human antibodies which are used for in vivo therapy or diagnosis. Thus the antibodies may be site-specific antibodies such as tumour-specific or cell surface-specific antibodies, suitable for use in in vivo therapy or diagnosis, e.g. tumour imaging. Examples of cell surface-specific antibodies are anti-T cell antibodies, such as anti-CD3, and CD4 and adhesion molecules, such as CR3, ICAM and ELAM. The antibodies may have specificity for interleukins (including lymphokines, growth factors and stimulating factors), hormones and other biologically active compounds, and receptors for any of these. For example, the antibodies may have specificity for any of the following: Interferons α, β, γ or δ, IL1, IL2, IL3, or IL4, etc., TNF, GCSF, GMCSF, EPO, hGH, or insulin, etc.
The the present invention also includes therapeutic and diagnostic compositions comprising the CDR-grafted products of the invention and uses of such compositions in therapy and diagnosis.
Accordingly in a further aspect the invention provides a therapeutic or diagnostic composition comprising a CDR-grafted antibody heavy or light chain or molecule according to previous aspects of the invention in combination with a pharmaceutically acceptable carrier, diluent or excipient.
Accordingly also the invention provides a method of therapy or diagnosis comprising administering an effective amount of a CDR-grafted antibody heavy or light chain or molecule according to previous aspects of the invention to a human or animal subject.
A preferred protocol for obtaining CDR-grafted antibody heavy and light chains in accordance with the present invention is set out below together with the rationale by which we have derived this protocol. This protocol and rationale are given without prejudice to the generality of the invention as hereinbefore described and defined.
Protocol
It is first of all necessary to sequence the DNA coding for the heavy and light chain variable regions of the donor antibody, to determine their amino acid sequences. It is also necessary to choose appropriate acceptor heavy and light chain variable regions, of known amino acid sequence. The CDR-grafted chain is then designed starting from the basis of the acceptor sequence. It will be appreciated that in some cases the donor and acceptor amino acid residues may be identical at a particular position and thus no change of acceptor framework residue is required.
  • 1. As a first step donor residues are substituted for acceptor residues in the CDRs. For this purpose the CDRs are preferably defined as follows:
Heavy chain CDR1: residues 26-35
CDR2: residues 50-65
CDR3: residues 95-102
Light chain CDR1: residues 24-34
CDR2: residues 50-56
CDR3: residues 89-97
  •  The positions at which donor residues are to be substituted for acceptor in the framework are then chosen as follows, first of all with respect to the heavy chain and subsequently with respect to the light chain.
  • 2. Heavy Chain
  • 2.1 Choose donor residues at all of positions 23, 24, 49, 71, 73 and 78 of the heavy chain or all of positions 23, 24 and 49 (71, 73 and 78 are always either all donor or all acceptor).
  • 2.2 Check that the following have the same amino acid in donor and acceptor sequences, and if not preferably choose the donor: 2, 4, 6, 25, 36, 37, 39, 47, 48, 93, 94, 103, 104, 106 and 107.
  • 2.3 To further optimise affinity consider choosing donor residues at one, some or any of:
    • i. 1, 3
    • ii. 72, 76
    • iii. If 48 is different between donor and acceptor sequences, consider 69
    • iv. If at 48 the donor residue is chosen, consider 38 and 46
    • v. If at 69 the donor residue is chosen, consider 80 and then 20
    • vi. 67
    • vii. If at 67 the donor residue is chosen, consider 82 and then 18
    • viii. 91
    • ix. 88
    • x. 9, 11, 41, 87, 108, 110, 112
  • 3. Light Chain
  • 3.1 Choose donor at 46, 48, 58 and 71
  • 3.2 Check that the following have the same amino acid in donor and acceptor sequences, if not preferably choose donor:
    • 2, 4, 6, 35, 38, 44, 47, 49, 62, 64-69 inclusive, 85, 87, 98, 99, 101 and 102
  • 3.3 To further optimise affinity consider choosing donor residues at one, some or any of:
    • i. 1,3
    • ii. 63
    • iii. 60, if 60 and 54 are able to form potential saltbridge
    • iv. 70 and 24 are able to form potential saltbridge
    • v. 73, and 21 if 47 is different between donor and acceptor
    • vi. 37, and 45 if 47 is different between donor and acceptor
    • vii. 10, 12, 40, 80, 103, 105
      Rationale
In order to transfer the binding site of an antibody into a different acceptor framework, a number of factors need to be considered.
1. The Extent of the CDRs
The CDRs (Complementary Determining Regions) were defined by Wu and Kabat (refs. 4 and 5) on the basis of an analysis of the variability of different regions of antibody variable regions. Three regions per domain were recognised. In the light chain the sequences are 24-24, 50-56, 89-97 (numbering according to Kabat (ref 4), Eu Index) inclusive and in the heavy chain the sequences are 31-35, 50-65 and 95-102 inclusive.
When antibody structures became available it became apparent that these CDR regions corresponded in the main to loop regions which extended from the β barrel framework of the light and heavy variable domains. For H1 there was a discrepancy in that the loop was from 26 to 32 inclusive and for H2 the loop was 52 to 56 and for L2 from 50 to 53. However, with the exception of H1 the CDR regions encompassed the loop regions and extended into the β strand frameworks. In H1 residue 26 tends to be a serine and 27 a phenylalanine or tyrosine, residue 29 is a phenylalanine in most cases. Residues 28 and 30 which are surface residues exposed to solvent might be involved in antigen-binding. A prudent definition of the H1 CDR therefore would include residues 26-35 to include both the loop region and the hypervariable residues 33-35.
It is of interest to note the example of Riechmann et al (ref. 3), who used the residue 31-35 choice for CDR-H1. In order to produce efficient antigen binding, residue 27 also needed to be recruited from the donor (rat) antibody.
2. Non-CDR Residues Which Contribute to Antigen Binding
By examination of available X-ray structures we have identified a number of residues which may have an effect on net antigen binding and which can be demonstrated by experiment. These residues can be sub-divided into a number of groups.
  • 2.1 Surface residues near CDR [all numbering as in Kabat et al (ref. 7)].
  • 2.1.1. Heavy Chain—Key residues are 23, 71 and 73. Other residues which may contribute to a lesser extent are 1, 3 and 76. Finally 25 is usually conserved but the murine residue should be used if there is a difference.
  • 2.1.2 Light Chain—Many residues close to the CDRs, e.g. 63, 65, 67 and 69 are conserved. If conserved none of the surface residues in the light chain are likely to have a major effect. However, if the murine residue at these positions is unusual, then it would be of benefit to analyse the likely contribution more closely. Other residues which may also contribute to binding are 1 and 3, and also 60 and 70 if the residues at these positions and at 54 and 24 respectively are potentially able to form a salt bridge i.e. 60+54; 70+24.
  • 2.2 Packing residues near the CDRs.
  • 2.2.1. Heavy Chain—Key residues are 24, 49 and 78. Other key residues would be 36 if not a tryptophan, 94 if not an arginine, 104 and 106 if not glycines and 107 if not a threonine. Residues which may make a further contribution to stable packing of the heavy chain and hence improved affinity are 2, 4, 6, 38, 46, 67 and 69. 67 packs against the CDR residue 63 and this pair could be either both mouse or both human. Finally, residues which contribute to packing in this region but from a longer range are 18, 20, 80, 82 and 86. 82 packs against 67 and in turn 18 packs against 82. 80 packs against 69 and in turn 20 packs against 80. 86 forms an H bond network with 38 and 46. Many of the mouse-human differences appear minor e.g. Leu-Ile, but could have an minor impact on correct packing which could translate into altered positioning of the CDRs.
  • 2.2.2. Light Chain—Key residues are 48, 58 and 71. Other key residues would be 6 if not glutamine, 35 if not tryptophan, 62 if not phenylalanine or tryosine, 64, 66, 68, 99 and 1010 if not glycines and 102 if not a threonine. Residues which make a further contribution are 2, 4, 37, 45 and 47. Finally residues 73 and 21 and 19 may make long distance packing contributions of a minor nature.
  • 2.3. Residues at the variable domain interface between heavy and light chains—In both the light and heavy chains most of the non-CDR interface residues are conserved. If a conserved residue is replaced by a residue of different character, e.g. size or charge, it should be considered for retention as the murine residue.
  • 2.3.1. Heavy Chain—Residues which need to be considered are 37 if the residue is not a valine but is of larger side chain volume or has a charge or polarity. Other residues are 39 if not a glutamine, 45 if not a leucine, 47 if not a tryptophan, 91 if not a phenylalanine or tyrosine, 93 if not an alanine and 103 if not a tryptophan. Residue 89 is also at the interface but is not in a position where the side chain could be of great impact.
  • 2.3.2. Light Chain—Residues which need to be considered are 36, if not a tyrosine, 38 if not a glutamine, 44 if not a proline, 46, 49 if not a tyrosine, residue 85, residue 87 if not a tyrosine and 98 if not a phenylalanine.
  • 2.4. Variable-Constant region interface—The elbow angle between variable and constant regions may be affected by alterations in packing of key residues in the variable region against the constant region which may affect the position of VL and VH with respect to one another. Therefore it is worth noting the residues likely to be in contact with the constant region. In the heavy chain the surface residues potentially in contact with the variable region are conserved between mouse and human antibodies therefore the variable region contact residues may influence the V-C interaction. In the light chain the amino acids found at a number of the constant region contact points vary, and the V & C regions are not in such close proximity as the heavy chain. Therefore the influences of the light chain V-C interface may be minor.
  • 2.4.1. Heavy Chain—Contact residues are 7, 11, 41, 87, 108, 110, 112.
  • 2.4.2. Light Chain—In the light chain potentially contacting residues are 10, 12, 40, 80, 83, 103 and 105.
The above analysis coupled with our considerable practical experimental experience in the CDR-grafting of a number of different antibodies have lead us to the protocol given above.
The present invention is now described, by way of example only, with reference to the accompanying FIGS. 1-13.
BRIEF DESCRIPTION OF THE FIGURES
FIGS. 1a and 1b show DNA and amino acid sequences of the OKT3 light chain (SEQ ID NO: 4 and 5);
FIGS. 2a and b show DNA and amino acid sequences of the OKT3 heavy chain (SEQ ID NO: 6 and 7);
FIG. 3 shows the alignment of the OKT3 light variable region amino acid sequence with that of the light variable region of the human antibody REI (SEQ ID NO: 5 and 8);
FIG. 4 shows the alignment of the OKT3 heavy variable region amino acid sequence with that of the heavy variable region of the human antibody KOL (SEQ ID NO: 7 and 10);
FIGS. 5a-c show the heavy variable region amino acid sequences of OKT3, KOL and various corresponding CDR grafts (SEQ ID NO: 7 and 11-24);
FIG. 6 shows the light variable region amino acid sequences of OKT3, REI and various corresponding CDR grafts (SEQ ID NO: 5, 8, 9, and 25-28);
FIG. 7 shows a graph of binding assay results for various grafted OKT3 antibodies'
FIG. 8 shows a graph of blocking assay results for various grafted OKT3 antibodies;
FIG. 9 shows a similar graph of blocking assay results;
FIGS. 10a and b show similar graphs for both binding assay and blocking assay results;
FIGS. 11a and b show further similar graphs for both binding assay and blocking assay results;
FIG. 12 shows a graph of competition assay results for a minimally grafted OKT3 antibody compared with the OKT3 murine reference standard, and
FIG. 13 shows a similar graph of competition assay results comparing a fully grafted OKT3 antibody with the murine reference standard.
DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION Example 1
CDR-Grafting of OKT3
Material and Methods
1. Incoming Cells
Hybridoma cells producing antibody OKT3 were provided by Ortho (seedlot 4882.1) and were grown up in antibiotic free Dulbecco's Modified Eagles Medium (DMEM) supplemented with glutamine and 5% foetal calf serum, and divided to provide both an overgrown supernatant for evaluation and cells for extraction of RNA. The overgrown supernatant was shown to contain 250 ug/mL murine IgG2a/kappa antibody. The supernatant was negative for murine lambda light chain and IgG1, IgG2b, IgG3, IgA and IgM heavy chain. 20 mL of supernatant was assayed to confirm that the antibody present was OKT3.
2. Molecular Biology Procedures
Basic molecular biology procedures were as described in Maniatis et al (ref 9) with, in some cases, minor modifications. DNA sequencing was performed as described in Sanger et al (ref. 11) and the Amersham International Plc sequencing handbook. Site directed mutagenesis was as described in Kramer et al (ref 12) and the Anglian Biotechnology Ltd. handbook. COS cell expression and metabolic labelling studies were as described in Whittle et al (ref. 13)
3. Research Assays
3.1. Assembly Assays
Assembly assays were performed on supernatants from transfected COS cells to determine the amount of intact IgG present.
3.1.1. COS Cells Transfected with Mouse OKT3 Genes
The assembly assay for intact mouse IgG in COS cell supernatants was an ELISA with the following format:
96 well microtiter plates were coated with F(ab')1 goat anti-mouse IgG Fc. The plates were washed in water and samples added for 1 hour at room temperature. The plates were washed and F(ab')2 goat anti-mouse IgG F(ab')2 (HRPO conjugated) was then added. Substrate was added to reveal the reaction. UPC10, a mouse IgG2a myeloma, was used as a standard.
3.1.2. COS and CHO Cells Transfected with Chimeric or CDR-Grafted OKT3 Genes
The assembly assay for chimeric or CDR-grafted antibody in COS cell supernatants was an ELISA with the following format:
96 well microtiter plates were coated with F(ab')2 goat anti-human IgG Fc. The plates were washed and samples added and incubated for 1 hour at room temperature. The plates were washed and monoclonal mouse anti-human kappa chain was added for 1 hour at room temperature. The plates were washed and F(ab')2 goat anti-mouse IgG Fc (HRPO conjugated) was added. Enzyme substrate was added to reveal the reaction. Chimeric B72.3 (IgG4) (ref. 13) was used as a standard. The use of a monoclonal anti-kappa chain in this assay allows grafted antibodies to be read from the chimeric standard.
3.2. Assay for Antigen Binding Activity
Material from COS cell supernatants was assayed for OKT3 antigen binding activity onto CD3 positive cells in a direct assay. The procedure was as follows:
HUT 78 cells (human T cell line, CD3 positive) were maintained in culture. Monolayers of HUT 78 cells were prepared onto 96 well ELISA plates using poly-L-lysine and glutaraldehyde. Samples were added to the monolayers for 1 hour at room temperature.
The plates were washed gently using PBS. F(ab')2 goat anti-human IgG Fc (HRPO conjugated) or F(ab')2 goat antimouse IgG Fc (HRPO conjugated) was added as appropriate for humanised or mouse samples. Substrate was added to reveal the reaction. The negative control for the cell-based assay was chimeric B72.3. The positive control was mouse Orthomune OKT3 or chimeric OKT3, when available. This cell-based assay was difficult to perform, and an alternative assay was developed for CDR-grafted OKT3 which was more sensitive and easier to carry out.
In this system CDR-grafted OKT3 produced by COS cells was tested for its ability to bind to the CD3-positive HPB-ALL (human peripheral blood acute lymphocytic leukemia) cell line. It was also tested for its ability to block the binding of murine OKT3 to these cells. Binding was measured by the following procedure: HPB-ALL cells were harvested from tissue culture. Cells were incubated at 4° C. for 1 hour with various dilutions of test antibody, positive control antibody, or negative control antibody. The cells were washed once and incubated at 4° C. for 1 hour with an FITC-labelled goat anti-human IgG (Fc-specific, mouse absorbed). The cells were washed twice and analysed by cytofluorography. Chimeric OKT3 was used as a positive control for direct binding. Cells incubated with mock-transfected COS cell supernatant, followed by the FITC-labelled goat anti-human IgG, provided the negative control. To test the ability of CDR-grafted OKT3 to block murine OKT3 binding, the HPB-ALL cells were incubated at 4° C. for 1 hour with various dilutions of test antibody or control antibody. A fixed saturating amount of FITC OKT3 was added. The samples were incubated for 1 hour at 4° C., washed twice and analysed by cytofluorography. FITC-labelled OKT3 was used as a positive control to determine maximum binding. Unlabelled murine OKT3 served as a reference standard for blocking. Negative controls were unstained cells with or without mock-transfected cell supernatant. The ability of the CDR-grafted OKT3 light chain to bind CD3-positive cells and block the binding of murine OKT3 was initially tested in combination with the chimeric OKT3 heave chain. The chimeric OKT3 heavy chain is composed of the murine OKT3 variable region and the human IgG4 constant region. The chimeric heavy chain gene is expressed in the same expression vector used for the CDR-grafted genes. The CDR-grafted light chain expression vector and the chimeric heavy chain expression vector were co-transfected into COS cells. The fully chimeric OKT3 antibody (chimeric light chain and chimeric heavy chain) was found to be fully capable of binding to CD3 positive cells and blocking the binding of murine OKT3 to these cells.
3.3 Determination of Relative Binding Affinity
The relative binding affinities of CDR-grafted anti-CD3 monoclonal antibodies were determined by competition binding (ref. 6) using the HPB-ALL human T cell line as a source of CD3 antigen, and fluorescein-conjugated murine OKT3 (Fl-OKT3) of known binding affinity as a tracer antibody. The binding affinity of Fl-OKT3 tracer antibody was determined by a direct binding assay in which increasing amounts of Fl-OKT3 were incubated with HPB-ALL (5×105) in PBS with 5% foetal calf serum for 60 min. at 4° C. Cells were washed, and the fluorescence intensity was determined on a FACScan flow cytometer calibrated with quantitative microbead standards (Flow Cytometry Standards, Research Triangle Park, N.C.). Fluorescence intensity per antibody molecule (F/P ratio) was determined by using microbeads which have a predetermined number of mouse IgG antibody binding sites (Simply Cellular beads, Flow Cytometry Standards). F/P equals the fluorescence intensity of beads saturated with Fl-OKT3 divided by the number of binding sites per bead. The amount of bound and free Fl-OKT3 was calculated from the mean fluorescence intensity per cell, and the ratio of bound/free was plotted against the number of moles of antibody bound. A linear fit was used to determine the affinity of binding (absolute value of the slope).
For competitive binding, increasing amounts of competitor antibody were added to a sub-saturating dose of Fl-OKT3 and incubated with 5×105 HPB-ALL in 200 ml of PBS with 5% foetal calf serum, for 60 min at 4° C. The fluorescence intensities of the cells were measured on a FACScan flow cytometer calibrated with quantitative microbead standards. The concentrations of bound and free Fl-OKT3 were calculated. The affinities of competing antibodies were calculated from the equation [X]−[OKT3]−(1/Kx)−(1/Ka), where Ka is the affinity of murine OKT3, Kx is the affinity of competitor X, [ ] is the concentration of competitor antibody at which bound/free binding is R/2, and R is the maximal bound/free binding.
4. cDNA Library Construction
4.1 mRNA Preparation and cDNA Synthesis
OKT3 producing cells were grown as described above and 1.2×109 cells harvested and mRNA extracted using the guanidinium/LiC1 extraction procedure. cDNA was prepared by priming from Oligo-dT to generate full length cDNA. The cDNA was methylated and EcoR1 linkers added for cloning.
4.2. Library Construction
The cDNA library was ligated to pSP65 vector DNA which had been EcoR1 cut and the 5′ phosphate groups removed by calf intestinal phosphatase (EcoR1/CIP). The ligation was used to transform high transformation efficiency Escherichia coli (E. coli) HB101. A cDNA library was prepared. 3600 colonies were screened for the light chain and 10000 colonies were screened for the heavy chain.
5. Screening
E. coli colonies positive for either heavy or light chain probes were identified by oligonucleotide screening using the oligonucleotides: 5′ TCCAGATGTTAACTGCTCAC (SEQ ID NO: 1) for the light chain, which is complementary to a sequence in the mouse kappa constant region, and 5′ CAGGGGCCAGTGGATGGATAGAC (SEQ ID NO: 2) for the heavy chain which is complementary to a sequence in the mouse IgG2a constant CH1 domain region. 12 light chain and 9 heavy chain clones were identified and taken for second round screening. Positive clones from the second round of screening were grown up and DNA prepared. The sizes of the gene inserts were estimated by gel electrophoresis and inserts of a size capable of containing a full length cDNA were subcloned into M13 for DNA sequencing.
6. DNA Sequencing
Clones representing four size classes for both heavy and light chains were obtained in M13. DNA sequence for the 5′ untranslated regions, signal sequences, variable regions and 3′ untranslated regions of full length cDNAs [FIGS. 1(a) and 2(a)] were obtained and the corresponding amino acid sequences predicted [(FIGS. 1(b) and 2(b)]. In FIG. 1(a) the untranslated DNA regions are shown in uppercase, and in both FIGS. 1 and 2 the signal sequences are underlined.
7. Construction of cDNA Expression Vectors
Celltech expression vectors are based on the plasmid pEE6hCMV (ref 14). A polylinker for the insertion of genes to be expressed has been introduced after the major immediate early promoter/enhancer of the human Cytomegalovirus (hCMV). Marker genes for selection of the plasmid in transfected eukaryotic cells can be inserted as BamH1 cassettes in the unique BamH1 site of pEE6 hCMV; for instance, the neo marker to provide pEE6 hCMV neo. It is usual practice to insert the neo and gpt markers prior to insertion of the gene of interest, whereas the GS marker is inserted last because of the presence of internal EcoR1 sites in the cassette.
The selectable markers are expressed from the SV40 late promoter which also provides an origin of replication so that the vectors can be used for expression in the COS cell transient expression system.
The mouse sequences were excised from the M13 based vectors described above as EcoR1 fragments and cloned into either pEE6-hCMV-neo for the heavy chain and into EE6hCMV-gpt for the light chain to yield vectors pJA136 and pJA135 respectively.
8. Expression of cDNAs in COS Cells.
Plasmids pJA135 and pJA136 were co-transfected into COS cells and supernatant from the transient expression experiment was shown to contain assembled antibody which bound to T-cell enriched lymphocytes. Metabolic labelling experiments using 35S methionine showed expression and assembly of heavy and light chains.
9. Construction of Chimeric Genes
Construction of chimeric genes followed a previously described strategy [Whittle et al (ref. 13)]. A restriction site near the 3′ end of the variable domain sequence is identified and used to attach an oligonucleotide adapter coding for the remainder of the mouse variable region and a suitable restriction site for attachment to the constant region of choice.
9.1. Light Chain Gene Construction
The mouse light chain cDNA sequence contains an Ava1 site near the 3′ end of the variable region [FIG. 1(a)]. The majority of the sequence of the variable region was isolated as a 396 bp. EcoR1-Ava1 fragment. An oligonucleotide adapter was designed to replace the remainder of the 3′ region of the variable region from the Ava1 site and to include the 5′ residues of the human constant region up to and including a unique Nar1 site which had been previously engineered into the constant region.
A Hind111 site was introduced to act as a marker for insertion of the linker.
The linker was ligated to the VL fragment and the 413 bp EcoR1-Nar1 adapted fragment was purified from the ligation mixture.
The constant region was isolated as an Nar1 -BamH1 fragment from an M13 clone NW361 and was ligated with the variable region DNA into an EcoR1/BamH1/C1P pSP65 treated vector in a three way reaction to yield plasmid JA143. Clones were isolated after transformation into E. coli and the linker and junction sequences were confirmed by the presence of the Hind111 site and by DNA sequencing.
9.2 Light Chain Gene Construction—Version 2
The construction of the first chimeric light chain gene produces a fusion of mouse and human amino acid sequences at the variable-constant region junction. In the case of the OKT3 light chain the amino acids at the chimera junction are:...Leu-Glu-Ile-Asn-Arg(SEQ ID NO: 3)/-/Thr-Val-Ala-Ala
(SEQ ID NO: 3)
Leu-Glu-Ile-Asn-Arg/   -/Thr-Val-Ala  -Ala
            VARIABLE         CONSTANT

This arrangement of sequence introduces a potential site for Asparagine (Asn) linked (N-linked) glycosylation at the V-C junction. Therefore, a second version of the chimeric light chain oligonucleotide adapter was designed in which the threonine (Thr), the first amino acid of the human constant region, was replaced with the equivalent amino acid from the mouse constant region, Alanine (Ala).
An internal Hind111 site was not included in this adapter, to differentiate the two chimeric light chain genes.
The variable region fragment was isolated as a 376 bp EcoR1-Ava1 fragment. The oligonucleotide linker was ligated to Nar1 cut pNW361 and then the adapted 396 bp constant region was isolated after recutting the modified pNW361 with EcoR1. The variable region fragment and the modified constant region fragment were ligated directly into EcoR1/C1P treated pEE6hCMVneo to yield pJA137. Initially all clones examined had the insert in the incorrect orientation. Therefore, the insert was re-isolated and recloned to turn the insert round and yield plasmid pJA141. Several clones with the insert in the correct orientation were obtained and the adapter sequence of one was confirmed by DNA sequencing
9.3. Heavy Chain Gene Construction
9.3.1. Choice of Heavy Chain Gene Isotype
The constant region isotype chosen for the heavy chain was human IgG4.
9.3.2. Gene Construction
The heavy chain cDNA sequence showed a Ban1 site near the 3′ end of the variable region [FIG. 2(a)]. The majority of the sequence of the variable region was isolated as a 426 bp. EcoR1/C1P/Ban1 fragment. An oligonucleotide adapter was designated to replace the remainder of the 3′ region of the variable region from the Ban1 site up to and including a unique HindIII site which had been previously engineered into the first two amino acids of the constant region. The linker was ligated to the VH fragment and the EcoR1-Hind111 adapted fragment was purified from the ligation mixture.
The variable region was ligated to the constant region by cutting pJA91 with EcoR1 and Hind111 removing the intron fragment and replacing it with the VH to yield pJA142. Clones were isolated after transformation in E. coli JM101 and the linker and junction sequences were confirmed by DNA sequencing. (N.B. The Hind111 site is lost on cloning).
10. Construction of Chimeric Expression Vectors
10.1. neo AND gpt Vectors
The chimeric light chain (version 1) was removed from pJA143 as an EcoR1 fragment and cloned into EcoR1/C1P treated pEE6hCMVneo expression vector to yield pJA145. Clones with the insert in the correct orientation were identifled by restriction mapping.
The chimeric light chain (version 2) was constructed as described above.
The chimeric heavy chain gene was isolated from pJA142 as a 2.5 Kbp EcoR1/BamH1 fragment and cloned into the EcoR1/Bc11/C1P treated vector fragment of a derivative of pEE6hCMVgpt to yield plasmid pJA144.
10.2. GS Separate Vectors
GS versions of pJA141 and pJA144 were constructed by replacing the neo and gpt cassettes by a BamH1/Sa11/C1P treatment of the plasmids, isolation of the vector fragment and ligation to a GS-containing fragment from the plasmid pRO49 to yield the light chain vector pJA179 and the heavy chain vector pJA180.
10.3. GS Single Vector Construction
Single vector constructions containing the cL (chimeric light), cH (chimeric heavy) and GS genes on one plasmid in the order cL-cH-GS, or cH-cL-GS and with transcription of the genes being head to tail e.g. cL>cH>GS were constructed. These plasmids were made by treating pJA179 or pJA180 with BamH1/C1P and ligating in a Bg111/Hind111 hCMV promoter cassette along with either the Hind111/BamH1 fragment from pJA141 into pJA180 to give the cH-cL-GS plasmid pJA182 or the Hind111/BamH1 fragment from pJA144 into pJA179 to give the cL-cH-GS plasmid pJA181.
11. Expression of Chimeric Genes
11.1. Expression in COS Cells
The chimeric antibody plasmid pJA145 (cL) and pJA144 (cH) were co-transfected into COS cells and supernatant from the transient expression experiment was shown to contain assembled antibody which bound to the HUT 78 human T-cell line. Metabolic labelling experiments using 35S methionine showed expression and assembly of heavy and light chains. However the light chain mobility seen on reduced gels suggested that the potential glycosylation site was being glycosylated. Expression in COS cells in the presence of tunicamycin showed a reduction in size of the light chain to that shown for control chimeric antibodies and the OKT3 mouse light chain. Therefore JA141 was constructed and expressed. In this case the light chain did not show an aberrant mobility or a size shift in the presence or absence of tunicamycin. This second version of the chimeric light chain, when expressed in association with chimeric heavy (cH) chain, produced antibody which showed good binding to HUT 78 cells. In both cases antigen binding was equivalent to that of the mouse antibody.
11.2 Expression in Chinese Hamster Ovary (CHO) Cells
Stable cell lines have been prepared from plasmids pJA141/pJA144 and from pJA179/pJA180, pJA181 and pJA182 by transfection into CHO cells.
12. CDR-Grafting
The approach taken was to try to introduce sufficient mouse residues into a human variable region framework to generate antigen binding activity comparable to the mouse and chimeric antibodies.
12.1. Variable Region Analysis
From an examination of a small database of structures of antibodies and antigen-antibody complexes it is clear that only a small number of antibody residues make direct contact with antigen. Other residues may contribute to antigen binding by positioning the contact residues in favourable configurations and also by inducing a stable packing of the individual variable domains and stable interaction of the light and heavy chain variable domains. The residues chosen for transfer can be identified in a number of ways:
    • (a) By examination of antibody X-ray crystal structures the antigen binding surface can be predominantly located on a series of loops, three per domain, which extend from the B-barrel framework.
    • (b) By analysis of antibody variable domain sequences regions of hypervariability [termed the Complementarity Determining Regions (CDRs) by Wu and Kabat (ref. 5)] can be identified. In the most but not all cases these CDRs correspond to, but extend a short way beyond, the loop regions noted above.
    • (c) Residues not identified by (a) and (b) may contribute to antigen binding directly or indirectly by affecting antigen binding site topology, or by inducing a stable packing of the individual variable domains and stabilising the inter-variable domain interaction. These residues may be identified either by superimposing the sequences for a given antibody on a known structure and looking at key residues for their contribution, or by sequence alignment analysis and noting “idiosyncratic” residues followed by examination of their structural location and likely effects.
      12.1.1. Light Chain
FIG. 3 shows an alignment of sequences for the human framework region RE1 and the OKT3 light variable region. The structural loops (LOOP) and CDRs (KABAT) believed to correspond to the antigen binding region are marked. Also marked are a number of other residues which may also contribute to antigen binding as described in 13.1(c). Above the sequence in FIG. 3 the residue type indicates the spatial location of each residue side chain, derived by examination of resolved structures from X-ray crystallography analysis. The key to this residue type designation is as follows:
N—near to CDR (From X-ray Structures)
P—Packing B—Buried Non-Packing
S—Surface E—Exposed
I—Interface *—Interface
—Packing/Part Exposed
?—Non-CDR Residues which may require
to be left as Mouse sequence.
Residues underlined in FIG. 3 are amino acids. RE1 was chosen as the human framework because the light chain is a kappa chain and the kappa variable regions show higher homology with the mouse sequences than a lambda light variable region, e.g. KOL (see below). RE1 was chosen in preference to another kappa light chain because the X-ray structure of the light chain has been determined so that a structural examination of individual residues could be made.
12.1.2. Heavy Chain
Similarly FIG. 4 shows an alignment of sequences for the human framework region KOL and the OKT3 heavy variable region. The structural loops and CDRs believed to correspond to the antigen binding region are marked. Also marked are a number of other residues which may also contribute to antigen binding as described in 12.1(c). The residue type key and other indicators used in FIG. 4 are the same as those used in FIG. 3. KOL was chosen as the heavy chain framework because the X-ray structure has been determined to a better resolution than, for example, NEWM and also the sequence alignment of OKT3 heavy variable region showed a slightly better homology to KOL than to NEWM.
12.2. Design of Variable Genes
The variable region domains were designed with mouse variable region optimal codon usage [Granthan and Perrin (ref 15)] and used the B72.3 signal sequences [Whittle et al (ref 13)]. The sequences were designed to be attached to the constant region in the same way as for the chimeric genes described above. Some constructs contained the “Kozak consensus sequence” [Kozak (ref 16)] directly linked to the 5′ of the signal sequence in the gene. This sequence motif is believed to have a beneficial role in translation initiation in eukaryotes.
12.3. Gene Construction
To build the variable regions, various strategies are available. The sequence may be assembled by using oligonucleotides in a manner similar to Jones et al (ref. 17) or by simultaneously replacing all of the CDRs or loop regions by oligonucleotide directed site specific mutagenesis in a manner similar to Verhoeyen et al (ref 2). Both strategies were used and a list of constructions is set out in Tables 1 and 2 and FIGS. 4 and 5a-c. It was noted in several cases that the mutagenesis approach led to deletions and rearrangements in the gene being remodelled, while the success of the assembly approach was very sensitive to the quality of the oligonucleotides.
13. Construction of Expression Vectors
Genes were isolated from M13 or SP65 based intermediate vectors and cloned into pEE6hCMVneo for the light chains and pEE6hCMVgpt for the heavy chains in a manner similar to that for the chimeric genes as described above.
TABLE 1
CDR-GRAFTED GENE CONSTRUCTS
METHOD OF KOZAK SEQUENCE
CODE MOUSE SEQUENCE CONTENT CONSTRUCTION +
LIGHT CHAIN ALL HUMAN FRAMEWORK RE1
121 26-32, 50-56, 91-96 inclusive SDM and gene assembly + n.d.
121A 26-32, 50-56, 91-96 inclusive Partial gene assembly n.d. +
+1, 3, 46, 47
121B 26-32, 50-56, 91-96 inclusive Partial gene assembly n.d. +
+46, 47
221 24-24, 50-56, 91-96 inclusive Partial gene assembly + +
221A 24-34, 50-56, 91-96 inclusive Partial gene assembly + +
+1, 3, 46, 47
221B 24-34, 50-56, 91-96 inclusive Partial gene assembly + +
+1, 3
221C 24-34, 50-56, 91-96 inclusive Partial gene assembly + +
HEAVY CHAIN ALL HUMAN FRAMEWORK KOL
121 26-32, 50-56, 95-100B inclusive Gene assembly n.d +
131 26-32, 50-58, 95-100B inclusive Gene assembly n.d. +
141 26-32, 50-65, 95-100B inclusive Partial gene assembly + n.d.
321 26-35, 50-56, 95-100B inclusive Partial gene assembly + n.d.
331 26-35, 50-58, 95-100B inclusive Partial gene assembly +
Gene assembly +
341 26-35, 50-65, 95-100B inclusive SDM +
Partial gene assembly +
341A 26-35, 50-65, 95-100B inclusive Gene assembly n.d. +
+6, 23, 24, 48, 49, 71, 73, 76,
78, 88, 91 (+63 = human)
341B 26-35, 50-65, 95-100B inclusive Gene assembly n.d. +
+48, 49, 71, 73, 76, 78, 88, 91
(+63 + human) (SEQ ID NO:8-28)
KEY
n.d. not done
SDM Site directed mutagenesis
Gene assembly Variable region assembled entirely from oligonucleotides
Partial gene assembly Variable region assembled by combination of restriction fragments either from other genes originally created by SDM and gene assembly or by oligonucleotide assembly of part of the variable region and reconstruction with restriction fragments from other genes originally created by SDM and gene assembly

14. Expression of CDR-Grafted Genes
14.1. Production of Antibody Consisting of Grafted Light (gL) Chains with Mouse Heavy (mH) or Chimeric Heavy (cH) Chains
All gL chains, in association with mH or cH produced reasonable amounts of antibody. Insertion of the Kozak consensus sequence at a position 5′ to the ATG (kgL constructs) however, led to a 2-5 fold improvement in net expression. Over an extended series of experiments expression levels were raised from approximately 200 ng/ml to approximately 500 ng/ml for kgL/cH or kgL/mH combinations.
When direct binding to antigen on HUT 78 cells was measured, a construct designed to include mouse sequence based on loop length (gL121) did not lead to active antibody in association with mH or cH. A construct designed to include mouse sequence based on Kabat CDRs (gL221) demonstrated some weak binding in association with mH or cH. However, when framework residues 1, 3, 46, 47 were changed from the human to the murine OKT3 equivalents based on the arguments outlined in Section 12.1 antigen binding was demonstrated when both of the new constructs, which were termed 121A and 221A were co-expressed with cH. When the effects of these residues were examined in more detail, it appears that residues 1 and 3 are not major contributing residues as the product of the gL221B gene shows little detectable binding activity in association with cH. The light chain product of gL221C, in which mouse sequences are present at 46 and 47, shows good binding activity in association with cH.
14.2 Production of Antibody Consisting of Grafted Heavy (gH) Chains with Mouse Light (mL) or Chimeric Light (cL) Chains
Expression of the gH genes proved to be more difficult to achieve than for gL. First, inclusion of the Kozak sequence appeared to have no marked effect on expression of gH genes. Expression appears to be slightly improved but not to the same degree as seen for the grafted light chain.
Also, it proved difficult to demonstrate production of expected quantities of material when the loop choice (amino acid 26-32) for CDR1 is used, e.g. gH121, 131, 141 an no conclusions can be drawn about these constructs.
Moreover, co-expression of the gH341 gene with cL or mL has been variable and has tended to produce lower amounts of antibody than the cH/cL or mH/mL combinations. The alterations to gH341 to produce gH341A and gH341B lead to improved levels of expression.
This may be due either to a general increase in the fraction of mouse sequence in the variable region, or to the alteration at position 63 where the residue is returned to the human amino acid Valine (Val) from Phenylalanine (Phe) to avoid possible internal packing problems with the rest of the human framework. This arrangement also occurs in gH331 and gH321.
When gH321 or gH331 were expressed in association with cL, antibody was produced but antibody binding activity was not detected.
When the more conservative gH341 gene was used antigen binding could be detected in association with cL or mL, but the activity was only marginally above the background level.
When further mouse residues were substituted based on the arguments in 12.1, antigen binding could be clearly demonstrated for the antibody produced when kgH341A and kgH341B were expressed in association with cL.
14.3 Production of Fully CDR-Grafted Antibody
The kgL221A gene was co-expressed with kgH341, kgH341A or kgH341B. For the combination kgH221A/kgH341 very little material was produced in a normal COS cell expression. For the combinations kgL221A/kgH341A or kgH221A/kgH341B amounts of antibody similar to gL/cH was produced.
In several experiments no antigen binding activity could be detected with kgH221A/gH341 or kgH221A/kgH341 combinations, although expression levels were very low.
Antigen binding was detected when kgL221A/kgH341A or kgH221A/kgH341B combinations were expressed. In the case of the antibody produced from the kgL221A/kgH341A combination the antigen binding was very similar to that of the chimeric antibody.
An analysis of the above results is given below.
15. Discussion of CDR-Grafting Results
In the design of the fully humanised antibody the aim was to transfer the minimum number of mouse amino acids that would confer antigen binding onto a human antibody framework.
15.1. Light Chain
15.1.1. Extent of the CDRs
For the light chain the regions defining the loops known from structural studies of other antibodies to contain the antigen contacting residues, and those hypervariable sequences defined by Kabat et al (refs. 4 and 5) as Complementarity Determining Regions (CDRs) are equivalent for CDR2. For CDR1 the hypervariable region extends from residues 24-34 inclusive while the structural loop extends from 26-32 inclusive. In the case of OKT3 there is only one amino acid difference between the two options, at amino acid 24, where the mouse sequence is a serine and the human framework RE1 has glutamine. For CDR3 the loop extends from residues 91-96 inclusive while the Kabat hypervariability extends from residues 89-97 inclusive. For OKT3 amino acids 89, 90 and 97 are the same between OKT3 and RE1 (FIG. 3). When constructs based on the loop choice for CDR1 (gL121) and the Kabat choice (gL221) were made and co-expressed with mH or cH no evidence for antigen binding activity could be found for gL121, but trace activity could be detected for the gL221, suggesting that a single extra mouse residue in the grafted variable region could have some detectable effect. Both gene constructs were reasonably well expressed in the transient expression system.
15.1.2. Framework Residues
The remaining framework residues were then further examined, in particular amino acids known from X-ray analysis of other antibodies to be close to the CDRs and also those amino acids which in OKT3 showed differences from the consensus framework for the mouse subgroup (subgroup VI) to which OKT3 shows most homology. Four positions 1, 3, 46 and 47 were identified and their possible contribution was examined by substituting the mouse amino acid for the human amino acid at each position. Therefore gL221A (gL221+D1Q, Q3V, L46R, L47W, see FIG. 3 and Table 1) was made, cloned in EE6hCMVneo and co-expressed with cH (pJA144). The resultant antibody was well expressed and showed good binding activity. When the related genes gL221B (gL221+D1Q, Q3V) and gL221C (gL221+L46R, L47W) were made and similarly tested, while both genes produced antibody when co-expressed with cH, only the gL221C/cH combination showed good antigen binding. When the gL121A (gL121+D1Q, Q3V, L46R, L47W) gene was made and co-expressed with cH, antibody was produced which also bound to antigen.
15.2. Heavy Chain
15.2.1. Extent of the CDRs
For the heavy chain the loop and hypervariability analyses agree only in CDR3. For CDR1 the loop region extends from residues 26-32 inclusive whereas the Kabat CDR extends from residues 31-35 inclusive. For CDR2 the loop region is from 50-58 inclusive while the hypervariable region covers amino acids 50-65 inclusive. Therefore humanised heavy chains were constructed using the framework from antibody KOL and with various combinations of these CDR choices, including a shorter choice for CDR2 of 50-56 inclusive as there was some uncertainty as to the definition of the end point for the CDR2 loop around residues 56 to 58. The genes were co-expressed with mL or cL initially. In the case of the gH genes with loop choices for CDR1 e.g. gH121, gH131, gH141 very little antibody was produced in the culture supernatants. As no free light chain was detected it was presumed that the antibody was being made and assembled inside the cell but that the heavy chain was aberrant in some way, possibly incorrectly folded, and therefore the antibody was being degraded internally. In some experiments trace amounts of antibody could be detected in 35S labelling studies.
As no net antibody was produced, analysis of these constructs was not pursued further.
When, however, a combination of the loop choice and the Kabat choice for CDR1 was tested (mouse amino acids 26-35 inclusive) and in which residues 31 (Ser to Arg), 33 (Ala to Thr), and 35 (Tyr to His) were changed from the human residues to the mouse residue and compared to the first series, antibody was produced for gH321, kgH331 and kgH341 when co-expressed with cL. Expression was generally low and could not be markedly improved by the insertion of the Kozak consensus sequence 5′ to the ATG of the signal sequence of the gene, as distinct from the case of the gL genes where such insertion led to a 2-5 fold increase in net antibody production. However, only in the case of gH341/mL or kgH341/cL could marginal antigen binding activity be demonstrated. When the kgH341 gene was co-expressed with kgL221A, the net yield of antibody was too low to give a signal above the background level in the antigen binding assay.
15.2.2. Framework Residues
As in the case of the light chain the heavy chain frameworks were re-examined. Possibly because of the lower initial homology between the mouse and human heavy variable domains compared to the light chains, more amino acid positions proved to be of interest. Two genes kgH341A and kgH341B were constructed, with 11 or 8 human residues respectively substituted by mouse residues compared to gH341, and with the CDR2 residue 63 returned to the human amino acid potentially to improve domain packing. Both showed antigen binding when combined with cL or kgL221A, the kgH341A gene with all 11 changes appearing to be the superior choice.
15.3 Interim Conclusions
It has been demonstrated, therefore, for OKT3 that to transfer antigen binding ability to the humanised antibody, mouse residues outside the CDR regions defined by the Kabat hypervariability or structural loop choices are required for both the light and heavy chains. Fewer extra residues are needed for the light chain, possibly due to the higher initial homology between the mouse and human kappa variable regions.
Of the changes seven (1 and 3 from the light chain and 6, 23, 71, 73 and 76 from the heavy chain) are predicted from a knowledge of other antibody structures to be either partly exposed or on the antibody surface. It has been shown here that residues 1 and 3 in the light chain are not absolutely required to be the mouse sequence; and for the heavy chain the gH341B heavy chain in combination with the 221A light chain generated only weak binding activity. Therefore the presence of the 6, 23 and 24 changes are important to maintain a binding affinity similar to that of the murine antibody. It was important, therefore, to further study the individual contribution of othe other 8 mouse residues of the kgH341A gene compared to kgH341.
16. Further CDR-Grafting Experiments
Additional CDR-grafted heavy chain genes were prepared substantially as described above. With reference to Table 2 the further heavy chain genes were based upon the gh341 (plasmid pJA178) and gH341A (plasmid pJA185) with either mouse OKT3 or human KOL residues at 6, 23, 24, 48, 49, 63, 71, 73, 76, 78, 88 and 91, as indicated. The CDR-grafted light chain genes used in these further experiments were gL221, gL221A, gL221B and gL221C as described above.
TABLE 2
OKT3 HEAVY CHAIN CDR GRAFTS
1. gH341 and derivatives
RES NUM 6 23 24 48 49 63 71 73 76 78 88 91
OKT3vh Q  K  A  I  G  F  T  K  S  A  A  Y
gH341 E  S  S  V  A  F  R  N  N  L  G  F JA178
gH341A Q  K  A  I  G  V  T  K  S  A  A  Y JA185
gH341E Q  K  A  I  G  V  T  K  S  A  G  G JA198
gH341* Q  K  A  I  G  V  T  K  N  A  G  F JA207
gH341* Q  K  A  I  G  V  R  N  N  A  G  F JA209
gH341D Q  K  A  I  G  V  T  K  N  L  G  F JA197
gH341* Q  K  A  I  G  V  R  N  N  L  G  F JA199
gH341C Q  K  A  V  A  F  R  N  N  L  G  F JA184
gH341* Q  S  A  I  G  V  T  K  S  A  A  Y JA203
gH341* E  S  A  I  G  V  T  K  S  A  A  Y JA205
gH341B E  S  S  I  G  V  T  K  S  A  A  Y JA183
gH341* Q  S  A  I  G  V  T  K  S  A  G  F JA204
gH341* E  S  A  I  G  V  T  K  S  A  G  F JA206
gH341* Q  S  A  I  G  V  T  K  N  A  G  F JA208
KOL E  S  S  V  A     R  N  N  L  G  F
OKT3 LIGHT CHAIN CDR GRAFTS
2. gL221 and derivatives
(SEQ ID NO: 7, 10, and 11-24)
RES NUM 1 3 46 47
OKT3v1 Q V R   W
GL221 D Q L   L DA221
gL221A Q V R   W DA221A
gL221B Q V L   L DA221B
GL221C D Q R   W DA221C
RE1 D Q L   L (SEQ ID NO: 5, 8, 9, and 25-28)
The CDR-grafted heavy and light chain genes were co-expressed in COS cells either with one another in various combinations but also with the corresponding murine and chimeric heavy and light chain genes substantially as described above. The resultant antibody products were then assayed in binding and blocking assays with HPB-ALL cells as described above.
The results of the assays for various grafted heavy chains co-expressed with the gL221C light chain are given in FIGS. 7 and 8 (for the JA184, JA185, JA197 and JA198 constructs—see Table 2), in FIG. 9 (for the JA183, JA184, JA185 and JA197 constructs) in FIGS. 10a and b (for the chimeric, JA185, JA199, JA204, JA205, JA207, JA208 and JA209 constructs) and in FIGS. 11a and b (for the JA183, JA184, JA185, JA198, JA203, JA205 and JA206 constructs).
The basic grafted product without any human to murine changes in the variable frameworks, i.e. gL221 co-expressed with gh341 (JA178), and also the “fully grafted” product, having most human to murine changes in the grafted heavy chain framework, i.e. gL221C co-expressed with gh341A (JA185), were assayed for relative binding affinity in a competition assay against murine OKT3 reference standard, using HPB-ALL cells. The assay used was as described above in section 3.3. The results obtained are given in FIG. 12 for the basic grafted product and in FIG. 13 for the fully grafted product. These results indicate that the basic grafted product has neglibible binding ability as compared with the OKT3 murine reference standard; whereas the “fully grafted” product has a binding ability very similar to that of the OKT3 murine reference standard.
The binding and blocking assay results indicate the following:
The JA198 and JA207 constructs appear to have the best binding characteristics and similar binding abilities, both substantially the same as the chimeric and fully grafted gH341A products. This indicates that positions 88 and 91 and position 76 are not highly critical for maintaining the OKT3 binding ability; whereas at least some of positions 6, 23, 24, 48, 49, 71, 73 and 78 are more important.
This is borne out by the finding that the JA209 and JA199, although of similar binding ability to one another, are of lower binding ability than the JA198 and JA207 constructs. This indicates the importance of having mouse residues at positions 71, 73 and 78, which are either completely or partially human in the JA199 and JA209 constructs respectively.
Moreover, on comparing the results obtained for the JA205 and JA183 constructs it is seen that there is a decrease in binding going from the JA205 to the JA183 constructs. This indicates the importance of retaining a mouse residue at positions 23, the only position changed between JA205 and JA183.
These and other results lead us to the conclusion that of the 11 mouse framework residues used in the gH341A (JA185) construct, it is important to retain mouse residues at all of positions 6, 23, 24, 48 and 49, and possibly for maximum binding affinity at 71, 73 and 78.
Similar Experiments were carried out to CDR-graft a number of the rodent antibodies including antibodies having specificity for CD4 (OKT4), ICAM-1 (R6-5), TAG72 (B72.3), and TNF α(61E71, 101.4, hTNF1, hTNF2 and hTNF3).
Example 2
CDR-Grafting of a Murine Anti-CD4 T Cell Receptor Antibody, OKT4A
Anti OKT4A CDR-grafted heavy and light chain genes were prepared, expressed and tested substantially as described above in Example 1 for CDR-grafted OKT3. The CDR grafting of OKT4A is described in detail in Ortho patent application PCT/GB 90 . . . of even date herewith entitled “Humanised Antibodies”. The disclosure of this Ortho patent application PCT/GB 90 . . . is incorporated herein by reference. A number of CDR-grafted OKT4 antibodies have been prepared. Presently the CDR-grafted OKT4A of choice is the combination of the grafted light chain LCDR2 and the grafted heavy chain HCDR10.
The Light Chain
The human acceptor framework used for the grafted light chains was RE1. The preferred LCDR2 light chain has human to mouse changes at positions 33, 34, 38, 49 and 89 in addition to the structural loop CDRs. Of these changed positions, positions 33, 34 and 89 fall within the preferred extended CDRs of the present invention (positions 33 and 34 in CDR1 and position 89 in CDR3). The human to murine changes at positions 38 and 49 corresponds to positions at which the amino acid residues are preferably donor murine amino acid residues in accordance with the present invention. A comparison of the amino acid sequences of the donor murine light chain variable domain and the RE1 human acceptor light chain variable further reveals that the murine and human residues are identical at all of positions 46, 48 and 71 and at all of positions 2, 4, 6, 35, 36, 44, 47, 62, 64-69, 85, 87, 98, 99 and 101 and 102. However the amino acid residue at position 58 in LCDR2 is the human RE1 framework residue not the mouse OKT4 residue as would be preferred in accordance with the present invention.
The Heavy Chain
The human acceptor framework used for the grafted heavy chains was KOL.
The preferred CDR graft HCDR10 heavy chain has human to mouse changes at positions 24, 35, 57, 58, 60, 88 and 91 in addition to the structural loop CDRs.
Of these positions, positions 35 (CDR1) and positions 57, 58 and 60 (CDR2) fall within the preferred extended CDRs of the present invention. Also the human to mouse change at position 24 corresponds to a position at which the amino acid residue is a donor murine residue in accordance with the present invention. Moreover, the human to mouse changes at positions 88 and 91 correspond to positions at which the amino acid residues are optionally donor murine residues.
Moreover, a comparison of the murine OKT4A and human KOL heavy chain variable amino acid sequences reveals that the murine and human residues are identical at all of positions 23, 49, 71, 73 and 78 and at all of positions 2, 4, 6, 25, 36, 37, 39, 47, 48, 93, 94, 103, 104, 106 and 107.
Thus the OKT4A CDR-grafted heavy chain HCDR10 corresponds to a particularly preferred embodiment according to the present invention.
Example 3
CDR-Grafting of an Anti-Mucin Specific Murine Antibody, B72.3
The cloning of the genes coding for the anti-mucin specific murine monoclonal antibody B72.3 and the preparation of B72.3 mouse-human chimeric antibodies has been described previously (ref 13 and WO 89/01783). CDR-grafted versions of B72.3 were prepared as follows.
  • (a) B72.3 Light Chain
    • CDR-grafting of this light chain was accomplished by direct transfer of the murine CDRs into the framework of the human light chain RE1. The regions transferred were:
CDR Number Residues
1 24-34
2 50-56
3 90-96
    •  The activity of the resulting grafted light chain was assessed by co-expression in COS cells, of genes for the combinations:
      • B72.3 cH/B72.3 cL
    • and
      • B72.3 cH/B72.3 gL
    •  Supernatants were assayed for antibody concentration and for the ability to bind to microtiter plates coated with mucin. The results obtained indicated that, in combination with the B72.3 cH chain, B72.3 cL and B72.3 gL had similar binding properties.
Comparison of the murine B72.3 and REI light chain amino acid sequence reveals that the residues are identical at positions 46, 58 and 71 but are different at positions 48.
Thus changing the human residue to the donor mouse residue at position 48 may further improve the binding characteristics of the CDR-grafted light chain, (B72.3 gL) in accordance with the present invention.
  • (b) B72.3 heavy chain
    • i. Choice of framework
    • At the outset it was necessary to make a choice of human framework. Simply put, the question was as follows: Was it necessary to use the framework regions from an antibody whose crystal structure was known or could the choice be made on some other criteria?
    • For B72.3 heavy chain, it was reasoned that, while knowledge of structure was important, transfer of the CDRs from mouse to human frameworks might be facilitated if the overall homology between the donor and receptor frameworks was maximised. Comparison of the B72.3 heavy chain sequence with those in Kabat (ref. 4) for human heavy chains showed clearly that B72.3 had poor homology for KOL and NEWM (for which crystal structures are available) but was very homologous to the heavy chain for EU.
    • On this basis, EU was chosen for the CDR-grafting and the following residues transferred as CDRs.
CDR Number Residues
1 27-36
2 50-63
3  93-102
Also it was noticed that the FR4 region of EU was unlike that of any other human (or mouse) antibody. Consequently, in the grafted heavy chain genes this was also changed to produce a “consensus” human sequence. (Preliminary experiments showed that grafted heavy chain genes containing the EU FR4 sequence expressed very poorly in transient expression systems.)
    • ii. Results with grafted heavy chain genes
    • Expression of grafted heavy chain genes containing all human framework regions with either gL or cL genes produced a grafted antibody with little ability to bind to mucin. The grafted antibody had about 1% the activity of the chimeric antibody. In these experiments, however, it was noted that the activity of the grafted antibody could be increased to ˜10% of B72.3 by exposure to pHs of 2-3.5.
    • This observation provided a clue as to how the activity of the grafted antibody could be improved without acid treatment. It was postulated that acid exposure brought about the protonation of an acidic residue (pKa of aspartic acid=3.86 and of glutamine acid=4.25) which in turn caused a change in structure of the CDR loops, or allowed better access of antigen. From comparison of the sequences of B72.3 (ref. 13) and EU (refs. 4 and 5), it was clear that, in going from the mouse to human frameworks, only two positions had been changed in such a way that acidic residues had been introduced. These positions are at residues 73 and 81, where K to E and Q to E changes had been made, respectively.
    • Which of these positions might be important was determined by examining the crystal structure of the KOL antibody. In KOL heavy chain, position 81 is far removed from either of the CDR loops.
    • Position 73, however, is close to both CDRs 1 and 3 of the heavy chain and, in this position it was possible to envisage that a K to E change in this region could have a detrimental effect on antigen binding.
    • iii. Framework changes in B72.3 gH gene
    • On the basis of the above analysis, E73 was mutated to a lysine (K). It was found that this change had a dramatic effect on the ability of the grafted Ab to bind to mucin. Further the ability of the grafted B72.3 produced by the mutated gH/gL combination to bind to mucin was similar to that of the B72.3 chimeric antibody.
    • iv. Other framework changes
    • In the course of the above experiments, other changes were made in the heavy chain framework regions. Within the accuracy of the assays used, none of the changes, either along or together, appeared beneficial.
    • v. Other
    • All assays used measured the ability of the grafted Ab to bind to mucin and, as a whole, indicated that the single framework change at position 73 is sufficient to generate an antibody with similar binding properties to B72.3.
    • Comparison of the B72.3 murine and EU heavy chain sequences reveals that the mouse and human residues are identical at positions 23, 24, 71 and 78.
    • Thus the mutated CDR-grafted B72.3 heavy chain corresponds to a preferred embodiment of the present invention.
Example 4
CDR-Grafting of a Murine Anti-ICAM-1 Monoclonal Antibody
A murine antibody, R6-5-D6 (EP 0314863) having specificity for Intercellular Adhesion Molecule 1 (ICAM-1) was CDR-grafted substantially as described above in previous examples. This work is described in greater detail in co-pending application, British Patent Application No. 9009549.8, the disclosure of which is incorporated herein by reference.
The human EU framework was used as the acceptor framework for both heavy and light chains. The CDR-grafted antibody currently of choice is provided by co-expression of grafted light chain gL221A and grafted heavy chain gH341D which has a binding affinity for ICAM 1 of about 75% of that of the corresponding mouse-human chimeric antibody.
Light Chain
gL221A has murine CDRs at positions 24-34 (CDR1), 50-56 (CDR2) and 89-97 (CDR3). In addition several framework residues are also the murine amino acid. These residues were chosen after consideration of the possible contribution of these residues to domain packing and stability of the conformation of the antigen binding region. The residues which have been retained as mouse are at positions 2, 3, 48 (7), 60, 84, 85 and 87. Comparison of the murine anti-ICAM 1 and human EU light chain amino acid sequences reveals that the murine and human residues are identical at positions 46, 58 and 71.
Heavy Chain
gH341D has murine CDRs at positions 26-35 (CDR1), 50-56 (CDR2) and 94-100B (CDR3). In addition murine residues were used in gH341D at positions 24, 48, 69, 71, 73, 80, 88 and 91. Comparison of the murine anti-ICAM 1 and human EU heavy chain amino acid sequences are identical at positions 23, 49 and 78.
Example 5
CDR-Grafting of Murine Anti-TNFa antibodies
A number of murine anti-TNFa monoclonal antibodies were CDR-grafted substantially as described above in previous examples. These antibodies include the murine monoclonal antibodies designated 61 E71, hTNF1, hTNF3 and 101.4 A brief summary of the CDR-grafting of each of these antibodies is given below.
61E71
A similar analysis as described above (Example 1, Section 12.1.) was done for 61E71 and for the heavy chain 10 residues were identified at 23, 24, 48, 49, 68, 69, 71, 73, 75 and 88 as residues to potentially retain as murine. The human frameworks chosen for CDR-grafting of this antibody, and the hTNF3 and 101.4 antibodies were RE1 for the light chain and KOL for the heavy chain. Three genes were built, the first of which contained 23, 24, 48, 49, 71 and 73 [gH341(6)] as murine residues. The second gene also had 75 and 88 as murine residues [gH341(8)] while the third gene additionally had 68, 69, 75 and 88 as murine residues [gH341(10)]. Each was co-expressed with gL221, the minimum grafted light chain (CDRs only). The gL221/gH341(6) and gL221/gH341 (8) antibodies both bound as well to TNF as murine 61E71. The gL221/gH341(10) antibody did not express and this combination was not taken further.
Subsequently the gL221/gH341(6) antibody was assessed in an L929 cell competition assay in which the antibody competes against the TNF receptor on L929 cells for binding to TNF in solution. To this assay the gL221/gH341(6) antibody was approximately 10% as active as murine 61E71.
hTNF1
hTNF1 is a monoclonal antibody which recognises an epitope on human TNF-. The EU human framework was used for CDR-grafting of both the heavy and light variable domains.
Heavy Chain
In the CDR-grafted heavy chain (ghTNF1) mouse CDRs were used at positions 26-35 (CDR1), 50-65 (CDR2) and 95-102 (CDR3). Mouse residues were also used in the frameworks at positions 48, 67, 69, 71, 73, 76, 89, 91, 94 and 108. Comparison of the TNF1 mouse and EU human heavy chain residues reveals that these are identical at positions 23, 24, 29 and 78.
Light Chain
In the CDR-grafted light chain (gLhTNF1) mouse CDRs wre used at positions 24-34 (CDR1), 50-56 (CDR2) and 89-97 (CDR3). In addition mouse residues were used in the frameworks at positions 3, 42, 48, 49, 83, 106 and 108. Comparison of the hTNF1 mouse and EU human light chain residues reveals that these are identical at positions 46, 58 and 71.
The grafted hTNF1 heavy chain was co-expressed with the chimeric light chain and the binding ability of the product compared with that of the chimeric light chain/chimeric heavy chain product in a TNF binding assay. The grafted heavy chain product appeared to have binding ability for TNF slightly better than the fully chimeric product.
Similarly, a grafted heavy chain/grafted light chain product was co-expressed and compared with the fully chimeric product and found to have closely similar binding properties to the latter product.
hTNF3
hTNF3 recognises an epitope on human TNF-α. The sequence of hTNF3 shows only 21 differences compared to 61E71 in the light and heavy chain variable regions, 10 in the light chain (2 in the CDRs at positions 50, 96 and 8 in the framework at 1, 19, 40, 45, 46, 76, 103 and 106) and 11 in the heavy chain (3 in the CDR regions at positions 52, 60 and 95 and 8 in the framework at 1, 10, 38, 40, 67, 73, 87 and 105). The light and heavy chains of the 61E71 and hTNF3 chimeric antibodies can be exchanged without loss of activity in the direct binding assay. However 61E71 is an order of magnitude less able to compete with the TNF receptor on L929 cells for TNF-a compared to hTNF3. Based on the 61E71 CDR grafting data gL221 and gH341(+23, 24, 48, 49 71 and 73 as mouse) genes have been built for hTNF3 and tested and the resultant grafted antibody binds well to TNF-a, but competes very poorly in the L929 assay. It is possible that in this case also the framework residues identified for OKT3 programme may improve the competitive binding ability of this antibody.
101.4
101.4 is a further murine monoclonal antibody able to recognise human TNF-a. The heavy chain of this antibody shows good homology to KOL and so the CDR-grafting has been based on RE1 for the light chain and KOL for the heavy chain. Several grafted heavy chain genes have been constructed with conservative choices for the CDR's (gH341) and which have one or a small number of non-CDR residues at positions 73, 78 or 77-79 inclusive, as the mouse amino acids. These have been co-expressed with cL or gL221. In all cases binding to TNF equivalent to the chimeric antibody is seen and when co-expressed with cL the resultant antibodies are able to compete well in the L929 assay. However, with gL221 the resultant antibodies are at least an order of magnitude less able to compete for TNF against the TNF receptor on L929 cells.
Mouse residues at other positions in the heavy chain, for example, at 23 and 24 together or at 76 have been demonstrated to provide no improvement to the competitive ability of the grafted antibody in the L929 assay.
A number of other antibodies including antibodies having specificity for interleukins e.g. IL1 and cancer markers such as carcinoembryonic antigen (CEA) e.g. the monoclonal antibody A5B7 (ref 21), have been successfully CDR-grafted according to the present invention. It will be appreciated that the foregoing examples are given by way of illustration only and are not intended to limit the scope of the claimed invention. Changes and modifications may be made to the methods described whilst still falling within the spirit and scope of the invention.
REFERENCES
  • 1. Kohler & Milstein, Nature, 265, 295-497, 1975.
  • 2. Chatenoud et al, (1986), J. Immunol. 137, 830-838.
  • 3. Jeffers et al, (1986), Transplantation, 41, 572-578.
  • 4. Begent et al, Br. J. Cancer 62: 487 (1990).
  • 5. Verhoeyen et al, Science, 239, 1534-1536, 1988.
  • 6. Riechmann et al, Nature, 332, 323-324, 1988.
  • 7. Kabat, E. A., Wu, T. T., Reid-Miller, M., Perry, H. M., Gottesman, K. S., 1987, in Sequences of Proteins of Immunological Interest, US Department of Health and Human Services, NIH, USA.
  • 8. Wu, T. T., and Kabat, E. A., 1970, J. Exp. Med. 132 211-250.
  • 9. Queen et al, (1989), Proc. Natl. Acad. Sci. USA, 86, 10029-10033 and WO 90/07861
  • 10. Maniatis et al, Molecular Cloning, Cold Spring Harbor, N.Y, 1989.
  • 11. Primrose and Old, Principles of Gene Manipulation, Blackwell, Oxford, 1980.
  • 12. Sanger, F., Nicklen, S., Coulson, A. R., 1977, Proc. Natl. Acad. Sci. USA, 74 5463
  • 13. Kramer, W., Drutsa, V., Jansen, H. -W., Kramer, B., Plugfelder, M., Fritz, H. -J., 1984, Nucl. Acids Res. 12, 9441
  • 14. Whittle, N., Adair, J., Lloyd, J. C., Jenkins, E., Devine, J., Schlom, J., Raubitshek, A., Colcher, D., Bodmer, M., 1987, Protein Engineering 1, 499.
  • 15. Sikder, S. S., Akolkar, P. N., Kaledas, P. M., Morrison, S. L., Kabat, E. A., 1985, J. Immunol. 135, 4215.
  • 16. Wallick, S. C., Kabat, E. A., Morrison, S. L., 1988, J. Exp. Med. 168, 1099
  • 17. Bebbington, C. R., Published International Patent Application WO 89/01036.
  • 18. Granthan and Perrin 1986, Immunology Today 7, 160.
  • 19. Kozak, M., 1987, J. Mol. Biol. 196, 947.
  • 20. Jones, T. P., Dear, P. H., Foote, J., Neuberger, M. S., Winter, G., 1986, Nature, 321, 522
  • 21. Harwood et al, Br. J. Cancer, 54, 75-82 (1986).

Claims (19)

The invention claimed is:
1. A humanised antibody molecule having affinity for an antigen and comprising a composite heavy chain and a complementary light chain, said composite heavy chain having a variable domain including complementarity determining regions (CDRs), wherein, according to the Kabat numbering system, in said composite heavy chain at least residues 26 to 35, 50 to 58 and 95 to 102 in the CDRs and at least residues 48, 49, 71, 73, 76, 78, 88, and 91 in the framework regions are non-human donor, provided that said heavy chain is not a chimeric antibody heavy chain having a donor variable domain and a human constant domain.
2. A humanised antibody molecule having affinity for a predetermined antigen and comprising a composite heavy chain and a complementary light chain, said composite heavy chain having a variable domain including complementarity determining regions (CDRs) and framework regions, wherein, according to the Kabat numbering system, in said composite heavy chain: said CDRs are non-human donor at residues 31 to 35, 50 to 58, and 95 to 102; and said framework regions are non-human donor at:
a) residue 6;
b) one or more of residues 23 and 24;
c) one or more of residues 48 and 49;
d) one or more of residues 71 and 73;
e) residue 75;
f) one or more of residues 75, 76, and 78 76 and 78; and
f)g) one or more of residues 88 and 91,
provided that said heavy chain is not a chimeric antibody heavy chain having a donor variable domain and a human constant domain.
3. The antibody molecule of claim 2 wherein residue 2 of said composite heavy chain is donor.
4. The antibody molecule of claim 2 wherein residue 72 of said composite heavy chain is donor.
5. The antibody molecule of claim 2 wherein residue 108 of said composite heavy chain is donor.
6. The antibody molecule of claim 2 wherein residue 110 of said composite heavy chain is donor.
7. A humanised antibody molecule having affinity for an antigen and comprising a composite heavy chain and a complementary light chain, said composite heavy chain having a variable domain including complementarity determining regions (CDRs), wherein, according to the Kabat numbering system, in said composite heavy chain at least residues 31 to 35, 50 to 58 and 95 to 102 in the CDRs, and at least residues 6, 24, 48, 49, 71, 72, 73, and 78 in the framework regions are non-human donor, provided that said heavy chain is not a chimeric antibody heavy chain having a donor variable domain and a human constant domain.
8. A humanised antibody molecule having affinity for an antigen and comprising a composite heavy chain and a complementary light chain, said composite heavy chain having a variable domain including complementarity determining regions (CDRs), wherein, according to the Kabat numbering system, in said composite heavy chain at least residues 31 to 35, 50 to 58 and 95 to 102 in the CDRs, and at least residues 6, 24, 48, 49, 71, 73, 78, and 108 in the framework regions are non-human donor, provided that said heavy chain is not a chimeric antibody heavy chain having a donor variable domain and a human constant domain.
9. A humanised antibody molecule having affinity for an antigen and comprising a composite heavy chain and a complementary light chain, said composite heavy chain having a variable domain including complementarity determining regions (CDRs), wherein, according to the Kabat numbering system, in said composite heavy chain at least residues 31 to 35, 50 to 58 and 95 to 102 in the CDRs, and at least residues 6, 24, 48, 49, 71, 73, 78, and 110 in the framework regions are non-human donor, provided that said heavy chain is not a chimeric antibody heavy chain having a donor variable domain and a human constant domain.
10. A humanised antibody molecule having affinity for an antigen and comprising a composite heavy chain and a complementary light chain, said composite heavy chain having a variable domain including complementarity determining regions (CDRs), wherein, according to the Kabat numbering system, in said composite heavy chain at least residues 31 to 35, 50 to 58 and 95 to 102 in the CDRs, and at least residues 6, 24, 48, 49, 71, 73, 76, 78, 88, and 91 in the framework regions are non-human donor, provided that said heavy chain is not a chimeric antibody heavy chain having a donor variable domain and a human constant domain.
11. The humanised antibody molecule of claim 10, wherein residue 2 of said composite heavy chain is donor.
12. The humanised antibody molecule of claim 10, wherein residue 72 of said composite heavy chain is donor.
13. The humanised antibody molecule of claim 10, wherein residue 108 of said composite heavy chain is donor.
14. The humanised antibody molecule of claim 10, wherein residue 110 of said composite heavy chain is donor.
15. A humanised antibody molecule having affinity for an antigen and comprising a composite heavy chain and a complementary light chain, said composite heavy chain having a variable domain including complementarity determining regions (CDRs), wherein, according to the Kabat numbering system, in said composite heavy chain at least residues 31 to 35, 50 to 58 and 95 to 102 in the CDRs, and at least residues 6, 24, 48, 49, 71, 73, 76, and 78 in the framework regions are non-human donor, provided that said heavy chain is not a chimeric antibody heavy chain having a donor variable domain and a human constant domain.
16. The humanised antibody molecule of claim 15, wherein residue 2 of said composite heavy chain is donor.
17. The humanised antibody molecule of claim 15, wherein residue 72 of said composite heavy chain is donor.
18. The humanised antibody molecule of claim 15, wherein residue 108 of said composite heavy chain is donor.
19. The humanised antibody molecule of claim 15, wherein residue 110 of said composite heavy chain is donor.
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USRE50178E1 (en) * 1989-12-21 2024-10-22 UCB Biopharma SRL Humanised antibodies
US12383553B2 (en) 2014-03-27 2025-08-12 Children's Medical Center Corporation Method for detecting or treating triple negative breast cancer

Families Citing this family (1521)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6750325B1 (en) * 1989-12-21 2004-06-15 Celltech R&D Limited CD3 specific recombinant antibody
US5859205A (en) 1989-12-21 1999-01-12 Celltech Limited Humanised antibodies
US7084260B1 (en) * 1996-10-10 2006-08-01 Genpharm International, Inc. High affinity human antibodies and human antibodies against human antigens
US6800738B1 (en) 1991-06-14 2004-10-05 Genentech, Inc. Method for making humanized antibodies
US6407213B1 (en) 1991-06-14 2002-06-18 Genentech, Inc. Method for making humanized antibodies
WO1994004679A1 (en) * 1991-06-14 1994-03-03 Genentech, Inc. Method for making humanized antibodies
GB9115364D0 (en) 1991-07-16 1991-08-28 Wellcome Found Antibody
EP0678122B1 (en) * 1993-01-12 1999-07-28 Biogen, Inc. Recombinant anti-vla4 antibody molecules
US6074642A (en) 1994-05-02 2000-06-13 Alexion Pharmaceuticals, Inc. Use of antibodies specific to human complement component C5 for the treatment of glomerulonephritis
US8771694B2 (en) * 1994-08-12 2014-07-08 Immunomedics, Inc. Immunoconjugates and humanized antibodies specific for B-cell lymphoma and leukemia cells
US7803904B2 (en) * 1995-09-01 2010-09-28 Millennium Pharmaceuticals, Inc. Mucosal vascular addressing and uses thereof
US5833987A (en) * 1995-06-07 1998-11-10 Trustees Of Dartmouth College Treatment of T cell mediated autoimmune disorders
WO1996040921A1 (en) * 1995-06-07 1996-12-19 Ortho Farmaceutical Corporation Cdr-grafted anti-tissue factor antibodies and methods of use thereof
US7060808B1 (en) * 1995-06-07 2006-06-13 Imclone Systems Incorporated Humanized anti-EGF receptor monoclonal antibody
JP4436457B2 (en) * 1995-08-18 2010-03-24 モルフォシス アイピー ゲーエムベーハー Protein / (poly) peptide library
US6090382A (en) * 1996-02-09 2000-07-18 Basf Aktiengesellschaft Human antibodies that bind human TNFα
CN103275221B (en) 1996-02-09 2016-08-17 艾伯维生物技术有限公司 People's antibody in conjunction with human TNF alpha
US7129061B1 (en) * 1996-08-07 2006-10-31 Biogen Idec Ma Inc. Tumor necrosis factor related ligand
US7147851B1 (en) 1996-08-15 2006-12-12 Millennium Pharmaceuticals, Inc. Humanized immunoglobulin reactive with α4β7 integrin
US7790856B2 (en) * 1998-04-07 2010-09-07 Janssen Alzheimer Immunotherapy Humanized antibodies that recognize beta amyloid peptide
US7179892B2 (en) * 2000-12-06 2007-02-20 Neuralab Limited Humanized antibodies that recognize beta amyloid peptide
US7964192B1 (en) 1997-12-02 2011-06-21 Janssen Alzheimer Immunotherapy Prevention and treatment of amyloidgenic disease
TWI239847B (en) * 1997-12-02 2005-09-21 Elan Pharm Inc N-terminal fragment of Abeta peptide and an adjuvant for preventing and treating amyloidogenic disease
US20080050367A1 (en) * 1998-04-07 2008-02-28 Guriq Basi Humanized antibodies that recognize beta amyloid peptide
US7588766B1 (en) 2000-05-26 2009-09-15 Elan Pharma International Limited Treatment of amyloidogenic disease
US6761888B1 (en) * 2000-05-26 2004-07-13 Neuralab Limited Passive immunization treatment of Alzheimer's disease
DK1034298T3 (en) * 1997-12-05 2012-01-30 Scripps Research Inst Humanization of murine antibody
US20030224001A1 (en) * 1998-03-19 2003-12-04 Goldstein Neil I. Antibody and antibody fragments for inhibiting the growth of tumors
WO1999058680A2 (en) * 1998-05-08 1999-11-18 Stichting Sanquin Bloedvoorziening Method for diagnosis and treatment of haemophilia a patients with an inhibitor
ZA200007412B (en) * 1998-05-15 2002-03-12 Imclone Systems Inc Treatment of human tumors with radiation and inhibitors of growth factor receptor tyrosine kinases.
US6696550B2 (en) 1998-07-23 2004-02-24 Millennium Pharmaceuticals, Inc. Humanized anti-CCR2 antibodies and methods of use therefor
US6727349B1 (en) * 1998-07-23 2004-04-27 Millennium Pharmaceuticals, Inc. Recombinant anti-CCR2 antibodies and methods of use therefor
US6312689B1 (en) 1998-07-23 2001-11-06 Millennium Pharmaceuticals, Inc. Anti-CCR2 antibodies and methods of use therefor
EP1113810B1 (en) * 1998-09-14 2008-12-31 Board of Regents, The University of Texas System Methods of treating multiple myeloma and myeloma-induced bone resorption using antagonists of integrin / receptor binding
US7618630B2 (en) * 1998-09-14 2009-11-17 Board Of Regents, The University Of Texas System Methods of treating multiple myeloma and myeloma-induced bone resorption using integrin antagonists
US7553487B2 (en) * 1998-12-14 2009-06-30 Genetics Institute, Llc Method and compositions for treating asthma
DE69933696T2 (en) 1998-12-14 2007-08-23 Genetics Institute, LLC, Cambridge Cytokine receptor CHAIN
BR0007556A (en) 1999-01-15 2001-10-23 Biogen Inc Tweak and tweak receptor antagonists and their use to treat immune disorders
US6303321B1 (en) 1999-02-11 2001-10-16 North Shore-Long Island Jewish Research Institute Methods for diagnosing sepsis
EP3031917A1 (en) 1999-04-09 2016-06-15 Kyowa Hakko Kirin Co., Ltd. Method for controlling the activity of immunologically functional molecule
CN1200734C (en) * 1999-05-14 2005-05-11 伊姆克罗尼系统公司 Treatment of refractory human tumors with epidermal growth factor antagonists
US7166573B1 (en) * 1999-05-28 2007-01-23 Ludwig Institute For Cancer Research Breast, gastric and prostate cancer associated antigens and uses therefor
SK17232001A3 (en) 1999-06-01 2002-09-10 Biogen, Inc. A blocking monoclonal antibody to vla-1 and its use for the treatment of inflammatory disorders
EP1218538A2 (en) 1999-06-30 2002-07-03 Ludwig Institute For Cancer Research Cancer associated antigens and uses therefor
US7605238B2 (en) * 1999-08-24 2009-10-20 Medarex, Inc. Human CTLA-4 antibodies and their uses
AT411997B (en) * 1999-09-14 2004-08-26 Baxter Ag FACTOR IX / FACTOR IXA ACTIVATING ANTIBODIES AND ANTIBODY DERIVATIVES
CA2386088A1 (en) 1999-10-19 2001-04-26 Ludwig Institute For Cancer Research Mage-a12 antigenic peptides and uses thereof
GB0001448D0 (en) * 2000-01-21 2000-03-08 Novartis Ag Organic compounds
JP2003520828A (en) * 2000-01-27 2003-07-08 ジェネティクス インスティテュート,エルエルシー Antibodies to CTLA4 (CD152), conjugates containing the same, and uses thereof
US20040002068A1 (en) 2000-03-01 2004-01-01 Corixa Corporation Compositions and methods for the detection, diagnosis and therapy of hematological malignancies
WO2001070266A2 (en) 2000-03-17 2001-09-27 Millennium Pharmaceuticals, Inc. Method of inhibiting stenosis and restenosis with a mixture of antibodies anti cd18 and anti ccr2
US20010046496A1 (en) * 2000-04-14 2001-11-29 Brettman Lee R. Method of administering an antibody
US6835545B2 (en) 2000-05-08 2004-12-28 President And Fellows Of Harvard College Methods, products and treatments for diabetes
US7439330B2 (en) * 2000-05-08 2008-10-21 President And Fellows Of Harvard College Anti-glycated CD59 antibodies and uses thereof
EP1935431A3 (en) 2000-05-15 2008-08-13 Health Research, Inc. Cancer treatments by using a combination of an antibody against her2 and interleukin-2
WO2001092338A1 (en) 2000-06-01 2001-12-06 The Brigham And Women's Hospital, Inc. Diagnosis of endometrial precancers
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
US7163681B2 (en) * 2000-08-07 2007-01-16 Centocor, Inc. Anti-integrin antibodies, compositions, methods and uses
EP1311291A4 (en) * 2000-08-09 2007-07-25 Imclone Systems Inc Treatment of hyperproliferative diseases with epidermal growth factor receptor antagonists
GB0020685D0 (en) * 2000-08-22 2000-10-11 Novartis Ag Organic compounds
US20020119148A1 (en) * 2000-09-01 2002-08-29 Gerritsen Mary E. ErbB4 antagonists
US6946292B2 (en) 2000-10-06 2005-09-20 Kyowa Hakko Kogyo Co., Ltd. Cells producing antibody compositions with increased antibody dependent cytotoxic activity
EP1326897A2 (en) * 2000-10-13 2003-07-16 Biogen, Inc. Humanized anti-lt-beta-r antibodies
GB0029360D0 (en) * 2000-12-01 2001-01-17 Univ Nottingham Humanised antibodies and uses thereof
US7700751B2 (en) 2000-12-06 2010-04-20 Janssen Alzheimer Immunotherapy Humanized antibodies that recognize β-amyloid peptide
PE20020574A1 (en) * 2000-12-06 2002-07-02 Wyeth Corp HUMANIZED ANTIBODIES THAT RECOGNIZE THE AMYLOID PEPTIDE BETA
US9249229B2 (en) * 2000-12-08 2016-02-02 Alexion Pharmaceuticals, Inc. Polypeptides and antibodies derived from chronic lymphocytic leukemia cells and uses thereof
US20060057651A1 (en) * 2000-12-08 2006-03-16 Bowdish Katherine S Polypeptides and antibodies derived from chronic lymphocytic leukemia cells and uses thereof
JP4280803B2 (en) * 2000-12-08 2009-06-17 アレクシオン ファーマシューティカルズ, インコーポレイテッド Chronic lymphocytic leukemia cell line and its use for producing antibodies
US7408041B2 (en) * 2000-12-08 2008-08-05 Alexion Pharmaceuticals, Inc. Polypeptides and antibodies derived from chronic lymphocytic leukemia cells and uses thereof
US20020147312A1 (en) * 2001-02-02 2002-10-10 O'keefe Theresa Hybrid antibodies and uses thereof
NZ527977A (en) * 2001-02-12 2005-10-28 Medarex Inc Human monoclonal antibodies to FC alpha receptor (CD89)
US20080008704A1 (en) * 2001-03-16 2008-01-10 Mark Rubin Methods of treating colorectal cancer with anti-epidermal growth factor antibodies
CN1561345B (en) * 2001-04-13 2011-09-14 比奥根艾迪克Ma公司 Antibodies against VLA-1
ATE533508T1 (en) 2001-04-26 2011-12-15 Biogen Idec Inc CRIPTO-BLOCKING ANTIBODIES AND THEIR USE
US6794501B2 (en) * 2001-05-04 2004-09-21 Ludwig Institute For Cancer Research Colon cancer antigen panel
US7803382B2 (en) * 2001-05-04 2010-09-28 Ludwig Institute For Cancer Research Ltd. Method for inducing immune response to NY-CO-58
US7304034B2 (en) 2001-05-15 2007-12-04 The Feinstein Institute For Medical Research Use of HMGB fragments as anti-inflammatory agents
CA2385745C (en) 2001-06-08 2015-02-17 Abbott Laboratories (Bermuda) Ltd. Methods of administering anti-tnf.alpha. antibodies
GB2376466A (en) * 2001-06-14 2002-12-18 Mark Frewin TRX1 antibody
US7541443B2 (en) * 2001-06-14 2009-06-02 Tolerrx, Inc. Anti-CD4 antibodies
ATE502050T1 (en) * 2001-06-26 2011-04-15 Agen Biomedical Ltd HUMANIZED ANTIBODIES DERIVED FROM DD 3B6/22 WITH SPECIFICITY FOR THE D-DIMER FRAGMENT OF FIBRIN
US20030013081A1 (en) 2001-06-26 2003-01-16 Olson William C. Uses of DC-SIGN and DC-SIGNR for inhibiting hepatitis C virus infection
US7321026B2 (en) * 2001-06-27 2008-01-22 Skytech Technology Limited Framework-patched immunoglobulins
AUPR617901A0 (en) * 2001-07-06 2001-08-02 Pacmab Pty Ltd Method for treating multiple myeloma
US7393656B2 (en) 2001-07-10 2008-07-01 The Board Of Trustees Of The Leland Stanford Junior University Methods and compositions for risk stratification
WO2004006955A1 (en) 2001-07-12 2004-01-22 Jefferson Foote Super humanized antibodies
WO2003010282A2 (en) * 2001-07-26 2003-02-06 Eli Lilly And Company Interleukin-1 beta antibodies
US7247304B2 (en) * 2001-08-23 2007-07-24 Genmab A/S Methods of treating using anti-IL-15 antibodies
EP1431310A4 (en) * 2001-09-25 2005-03-23 Immuno Biological Lab Co Ltd Recombinant anti-osteopontin antibody and use thereof
US7521053B2 (en) 2001-10-11 2009-04-21 Amgen Inc. Angiopoietin-2 specific binding agents
AR036833A1 (en) * 2001-10-18 2004-10-06 Bayer Corp HUMAN ANTIBODIES THAT JOIN MN AND HAVE NEUTRALIZING ACTIVITY OF CELLULAR ADHESION.
US20040151721A1 (en) 2001-10-19 2004-08-05 O'keefe Theresa Humanized anti-CCR2 antibodies and methods of use therefor
EP2990394A1 (en) 2001-11-30 2016-03-02 Biogen MA Inc. Antibodies against monocyte chemotactic proteins
GB0130543D0 (en) * 2001-12-20 2002-02-06 Univ Cambridge Tech Human antibodies and their use
KR100668538B1 (en) * 2002-01-09 2007-01-16 메다렉스, 인코포레이티드 Human monoclonal antibodies against CD300
US8435529B2 (en) 2002-06-14 2013-05-07 Immunomedics, Inc. Combining radioimmunotherapy and antibody-drug conjugates for improved cancer therapy
US8491896B2 (en) * 2002-06-14 2013-07-23 Immunomedics, Inc. Anti-pancreatic cancer antibodies
CA2475395C (en) * 2002-02-26 2011-08-02 Rita De Santis Anti-human tenascin monoclonal antibody
US8188231B2 (en) 2002-09-27 2012-05-29 Xencor, Inc. Optimized FC variants
US20040132101A1 (en) 2002-09-27 2004-07-08 Xencor Optimized Fc variants and methods for their generation
US20070148171A1 (en) * 2002-09-27 2007-06-28 Xencor, Inc. Optimized anti-CD30 antibodies
US20080260731A1 (en) * 2002-03-01 2008-10-23 Bernett Matthew J Optimized antibodies that target cd19
US7317091B2 (en) * 2002-03-01 2008-01-08 Xencor, Inc. Optimized Fc variants
US20090042291A1 (en) * 2002-03-01 2009-02-12 Xencor, Inc. Optimized Fc variants
US7662925B2 (en) * 2002-03-01 2010-02-16 Xencor, Inc. Optimized Fc variants and methods for their generation
US20100311954A1 (en) * 2002-03-01 2010-12-09 Xencor, Inc. Optimized Proteins that Target Ep-CAM
US20080254027A1 (en) * 2002-03-01 2008-10-16 Bernett Matthew J Optimized CD5 antibodies and methods of using the same
MY139983A (en) * 2002-03-12 2009-11-30 Janssen Alzheimer Immunotherap Humanized antibodies that recognize beta amyloid peptide
KR101098109B1 (en) 2002-03-13 2011-12-26 더 리전츠 오브 더 유니버시티 오브 캘리포니아 ANTI αVβ6 ANTIBODIES
WO2003080675A2 (en) * 2002-03-22 2003-10-02 Amrad Operations Pty Ltd MONOCLONAL ANTIBODY AGAINST INTERLEUKIN-13 RECEPTOR ALPHA 1 (IL-13Rα1)
ES2327830T3 (en) * 2002-03-29 2009-11-04 Schering Corporation ANTI-INTERLEUQUINA-5 HUMAN MONOCLONAL ANTIBODIES AND METHODS AND COMPOSITIONS CONTAINING THEM.
KR101000842B1 (en) 2002-04-09 2010-12-14 바이오겐 아이덱 엠에이 인코포레이티드 How to treat TVE-related conditions
CN1652820A (en) * 2002-04-12 2005-08-10 梅达雷克斯公司 Treatment using CTLA-4 antibody
US20040009172A1 (en) * 2002-04-26 2004-01-15 Steven Fischkoff Use of anti-TNFalpha antibodies and another drug
DK2336359T3 (en) 2002-05-09 2016-05-30 Brigham & Womens Hospital 1L1RL-1 as cardiovascular disease marker
US20030232387A1 (en) * 2002-06-14 2003-12-18 Millennium Pharmaceuticals, Inc. Antibodies that bind alphaE integrin
CN1675245B (en) * 2002-06-14 2011-01-12 免疫医疗公司 Humanized monoclonal antibody hPAM4
US9599619B2 (en) 2002-06-14 2017-03-21 Immunomedics, Inc. Anti-pancreatic cancer antibodies
US8821868B2 (en) 2002-06-14 2014-09-02 Immunomedics, Inc. Anti-pancreatic cancer antibodies
US7456260B2 (en) * 2002-06-17 2008-11-25 The United States Of America As Represented By The Secretary Of The Department Of Health And Human Services Humanized antibody
TW200416044A (en) * 2002-07-01 2004-09-01 Biogen Inc Humanized anti-lymphotoxin β receptor antibodies
DK2206517T3 (en) 2002-07-03 2023-11-06 Ono Pharmaceutical Co Immunopotentiating compositions comprising anti-PD-L1 antibodies
US7052694B2 (en) * 2002-07-16 2006-05-30 Mayo Foundation For Medical Education And Research Dendritic cell potentiation
PT1944322E (en) * 2002-07-19 2015-07-01 Abbvie Biotechnology Ltd Treatment of tnf alpha related disorders
JP2006500921A (en) * 2002-07-30 2006-01-12 ブリストル−マイヤーズ スクイブ カンパニー Humanized antibody against human 4-1BB
BRPI0314038B8 (en) 2002-09-06 2021-05-25 Amgen Inc isolated human antibody, isolated nucleic acid molecule, vector, use of an antibody, and pharmaceutical composition
US20060235208A1 (en) * 2002-09-27 2006-10-19 Xencor, Inc. Fc variants with optimized properties
US7820166B2 (en) * 2002-10-11 2010-10-26 Micromet Ag Potent T cell modulating molecules
SI2891666T1 (en) 2002-10-16 2017-11-30 Purdue Pharma L.P. Antibodies that bind cell-associated CA 125/O722P and methods of use thereof
MY150740A (en) * 2002-10-24 2014-02-28 Abbvie Biotechnology Ltd Low dose methods for treating disorders in which tnf? activity is detrimental
JP2006519763A (en) 2002-11-08 2006-08-31 アブリンクス エン.ヴェー. Method of administering therapeutic polypeptides and polypeptides therefor
CA2537263C (en) 2002-11-27 2017-05-30 Minerva Biotechnologies Corporation Techniques and compositions for the diagnosis and treatment of cancer (muc1)
WO2004050836A2 (en) * 2002-11-27 2004-06-17 Biogen Idec Ma Inc. Humanized antibodies against monocyte chemotactic proteins
ATE472556T1 (en) * 2002-12-02 2010-07-15 Amgen Fremont Inc ANTIBODIES DIRECTED AGAINST THE TUMOR NECROSIS FACTOR AND THEIR USES
EP2301966A1 (en) * 2002-12-16 2011-03-30 Genentech, Inc. Immunoglobulin variants and uses thereof
RU2366664C2 (en) * 2002-12-17 2009-09-10 Мерк Патент Гмбх Humanised antibody (h14,18) based on mouse antibody 14,18, contacting gd2, and its fusion with il-2
AU2003303339A1 (en) * 2002-12-20 2004-07-22 Biogen Idec Ma Inc. Lymphotoxin beta receptor agents in combination with chemotherapeutic agents
JP2006515750A (en) * 2002-12-20 2006-06-08 バイオジェン・アイデック・エムエイ・インコーポレイテッド Multivalent lymphotoxin β receptor agonist and treatment using the same
US7488802B2 (en) * 2002-12-23 2009-02-10 Wyeth Antibodies against PD-1
US7101978B2 (en) * 2003-01-08 2006-09-05 Applied Molecular Evolution TNF-α binding molecules
AU2004205684A1 (en) * 2003-01-23 2004-08-05 Genentech, Inc. Methods for producing humanized antibodies and improving yield of antibodies or antigen binding fragments in cell culture
US20040208869A1 (en) * 2003-01-30 2004-10-21 Medimmune, Inc. Uses of anti-integrin alphanubeta3 antibody formulations
AU2004209981B2 (en) * 2003-02-01 2009-02-26 Janssen Sciences Ireland Uc Active immunization to generate antibodies to soluble A-beta
ES2380147T3 (en) 2003-02-11 2012-05-09 Shire Human Genetic Therapies, Inc. Diagnosis and treatment of multiple sulfatases and other deficiencies using a formylglycine generating enzyme (FGE)
US8663650B2 (en) 2003-02-21 2014-03-04 Ac Immune Sa Methods and compositions comprising supramolecular constructs
US8388955B2 (en) * 2003-03-03 2013-03-05 Xencor, Inc. Fc variants
US20070275460A1 (en) * 2003-03-03 2007-11-29 Xencor.Inc. Fc Variants With Optimized Fc Receptor Binding Properties
US8084582B2 (en) 2003-03-03 2011-12-27 Xencor, Inc. Optimized anti-CD20 monoclonal antibodies having Fc variants
US20090010920A1 (en) 2003-03-03 2009-01-08 Xencor, Inc. Fc Variants Having Decreased Affinity for FcyRIIb
EP1622941A2 (en) * 2003-03-20 2006-02-08 ImClone Systems Incorporated Method of producing an antibody to epidermal growth factor receptor
EP1460088A1 (en) 2003-03-21 2004-09-22 Biotest AG Humanized anti-CD4 antibody with immunosuppressive properties
US7354584B2 (en) * 2003-04-11 2008-04-08 Medimmune, Inc. Recombinant IL-9 antibodies
US9051373B2 (en) 2003-05-02 2015-06-09 Xencor, Inc. Optimized Fc variants
PE20050627A1 (en) * 2003-05-30 2005-08-10 Wyeth Corp HUMANIZED ANTIBODIES THAT RECOGNIZE THE BETA AMYLOID PEPTIDE
US7696169B2 (en) * 2003-06-06 2010-04-13 The Feinstein Institute For Medical Research Inhibitors of the interaction between HMGB polypeptides and toll-like receptor 2 as anti-inflammatory agents
US9005613B2 (en) 2003-06-16 2015-04-14 Immunomedics, Inc. Anti-mucin antibodies for early detection and treatment of pancreatic cancer
WO2005000898A2 (en) * 2003-06-27 2005-01-06 Biogen Idec Ma Inc. Use of hydrophobic-interaction-chromatography or hinge-region modifications for the production of homogeneous antibody-solutions
GB0407315D0 (en) * 2003-07-15 2004-05-05 Cambridge Antibody Tech Human antibody molecules
DK1648998T3 (en) 2003-07-18 2015-01-05 Amgen Inc Specific binding agents for hepatocyte growth factor
US20060228350A1 (en) * 2003-08-18 2006-10-12 Medimmune, Inc. Framework-shuffling of antibodies
WO2005042743A2 (en) * 2003-08-18 2005-05-12 Medimmune, Inc. Humanization of antibodies
EP1660534A2 (en) * 2003-08-22 2006-05-31 MedImmune, Inc. Humanization of antibodies
CN1878793A (en) * 2003-09-11 2006-12-13 鉴定医疗有限公司 Monoclonal antibodies against HMGB1
US7297336B2 (en) 2003-09-12 2007-11-20 Baxter International Inc. Factor IXa specific antibodies displaying factor VIIIa like activity
US9714282B2 (en) 2003-09-26 2017-07-25 Xencor, Inc. Optimized Fc variants and methods for their generation
US20060134105A1 (en) * 2004-10-21 2006-06-22 Xencor, Inc. IgG immunoglobulin variants with optimized effector function
US8883147B2 (en) 2004-10-21 2014-11-11 Xencor, Inc. Immunoglobulins insertions, deletions, and substitutions
US8101720B2 (en) * 2004-10-21 2012-01-24 Xencor, Inc. Immunoglobulin insertions, deletions and substitutions
US8399618B2 (en) 2004-10-21 2013-03-19 Xencor, Inc. Immunoglobulin insertions, deletions, and substitutions
WO2005040384A1 (en) * 2003-10-21 2005-05-06 Applied Research Systems Ars Holding N.V. Minimal dna sequence acting as a chromatin insulator and its use in protein expression
DK1682177T3 (en) 2003-11-04 2010-11-01 Novartis Vaccines & Diagnostic Use of antagonist anti-CD40 antibodies to treat chronic lymphocytic leukemia
EP1844815B1 (en) 2003-11-04 2011-09-14 Novartis Vaccines and Diagnostics, Inc. Combination therapy comprising anti-CD20 and anti-CD40 antibodies for the treatment of B cell-related cancers
CA2544852A1 (en) 2003-11-04 2005-05-19 Chiron Corporation Methods of therapy for solid tumors expressing the cd40 cell-surface antigen
ES2333971T3 (en) 2003-11-04 2010-03-03 Novartis Vaccines And Diagnostics, Inc. ANTI-CD40 MONOCLONAL ANTIBODIES ANTAGONISTS AND PROCEDURES FOR USE.
WO2005044855A2 (en) 2003-11-04 2005-05-19 Chiron Corporation Use of antagonist anti-cd40 monoclonal antibodies for treatment of multiple myeloma
DE602004026470D1 (en) 2003-11-05 2010-05-20 Roche Glycart Ag FC RECEPTOR AND EFFECTOR FUNCTION
EP2251357A1 (en) 2003-11-07 2010-11-17 Ablynx N.V. Camelidae single domain antibodies VHH directed against epidermal growth factor receptor and uses therefor
CA2545166A1 (en) 2003-11-11 2005-05-19 Chugai Seiyaku Kabushiki Kaisha Humanized anti-cd47 antibody
EP1689783B1 (en) 2003-11-25 2010-05-19 The Government Of The United States, As Represented by The Secretary Of Health And Human Services Mutated anti-cd22 antibodies and immunoconjugates
ES2436170T3 (en) * 2003-12-03 2013-12-27 The Scripps Research Institute Antibodies and peptides specific for integrin alfa II beta3
WO2005056759A2 (en) 2003-12-04 2005-06-23 Xencor, Inc. Methods of generating variant proteins with increased host string content and compositions thereof
US20060003412A1 (en) * 2003-12-08 2006-01-05 Xencor, Inc. Protein engineering with analogous contact environments
US20070249809A1 (en) * 2003-12-08 2007-10-25 Xencor, Inc. Protein engineering with analogous contact environments
US20050249723A1 (en) * 2003-12-22 2005-11-10 Xencor, Inc. Fc polypeptides with novel Fc ligand binding sites
US7435799B2 (en) * 2004-01-08 2008-10-14 Applied Molecular Evolution TNF-α binding molecules
AU2005207003C1 (en) * 2004-01-20 2013-06-13 Humanigen, Inc. Antibody specificity transfer using minimal essential binding determinants
CA2555306A1 (en) * 2004-02-06 2005-08-18 Nymox Corporation Humanized antibody
US9481878B2 (en) 2004-02-13 2016-11-01 Immunomedics, Inc. Compositions and methods of use of immunotoxins comprising ranpirnase (Rap) show potent cytotoxic activity
US20110020273A1 (en) * 2005-04-06 2011-01-27 Ibc Pharmaceuticals, Inc. Bispecific Immunocytokine Dock-and-Lock (DNL) Complexes and Therapeutic Use Thereof
US8883160B2 (en) * 2004-02-13 2014-11-11 Ibc Pharmaceuticals, Inc. Dock-and-lock (DNL) complexes for therapeutic and diagnostic use
US8551480B2 (en) 2004-02-13 2013-10-08 Immunomedics, Inc. Compositions and methods of use of immunotoxins comprising ranpirnase (Rap) show potent cytotoxic activity
US9550838B2 (en) 2004-02-13 2017-01-24 Ibc Pharmaceuticals, Inc. Dock-and-lock (DNL) complexes for therapeutic and diagnostic use
US8491914B2 (en) * 2004-02-13 2013-07-23 Ibc Pharmaceuticals, Inc. Dock-and-lock (DNL) complexes for delivery of interference RNA
US8652484B2 (en) 2004-02-13 2014-02-18 Immunomedics, Inc. Delivery system for cytotoxic drugs by bispecific antibody pretargeting
US20110064754A1 (en) * 2005-03-03 2011-03-17 Center For Molecular Medicine And Immunology Immunoconjugates Comprising Poxvirus-Derived Peptides and Antibodies Against Antigen-Presenting Cells for Subunit-Based Poxvirus Vaccines
US8435539B2 (en) * 2004-02-13 2013-05-07 Immunomedics, Inc. Delivery system for cytotoxic drugs by bispecific antibody pretargeting
AU2005214988A1 (en) * 2004-02-17 2005-09-01 Absalus, Inc. Super-humanized antibodies against respiratory syncytial virus
EP1761562B1 (en) * 2004-02-19 2013-09-11 Dyax Corp. Conformation specific antibodies
US7767792B2 (en) 2004-02-20 2010-08-03 Ludwig Institute For Cancer Research Ltd. Antibodies to EGF receptor epitope peptides
PT1735348E (en) * 2004-03-19 2012-07-24 Imclone Llc Human anti-epidermal growth factor receptor antibody
KR20060132006A (en) * 2004-03-23 2006-12-20 비오겐 아이덱 엠에이 아이엔씨. Receptor Coupling Agents and Their Therapeutic Uses
CA2561264A1 (en) * 2004-03-24 2005-10-06 Xencor, Inc. Immunoglobulin variants outside the fc region
JP5020808B2 (en) * 2004-03-29 2012-09-05 ザ・ユニバーシティ・コート・オブ・ザ・ユニバーシティ・オブ・アバディーン Specific binding elements for synaptophysin
CN1961003B (en) 2004-03-31 2013-03-27 健泰科生物技术公司 Humanized anti-TGF-beta antibodies
WO2005094391A2 (en) 2004-04-02 2005-10-13 The Regents Of The University Of California METHODS AND COMPOSITIONS FOR TREATING AND PREVENTING DISEASE ASSOCIATED WITH αVβ5 INTEGRIN
TWI439284B (en) 2004-04-09 2014-06-01 Abbvie Biotechnology Ltd Multiple-variable dose regimen for treating tnfα-related disorders
WO2005111083A2 (en) * 2004-04-29 2005-11-24 Otsuka Pharmaceutical Co., Ltd. Antibodies specific for glycoprotein vi and methods of producing these antibodies
KR20070039911A (en) 2004-06-01 2007-04-13 도만티스 리미티드 Bispecific Fusion Antibodies with Enhanced Serum Half-Life
EP1753783B1 (en) * 2004-06-03 2014-08-06 Novimmune SA Anti-cd3 antibodies and methods of use thereof
AR049390A1 (en) * 2004-06-09 2006-07-26 Wyeth Corp ANTIBODIES AGAINST HUMAN INTERLEUQUINE-13 AND USES OF THE SAME
US7501121B2 (en) * 2004-06-17 2009-03-10 Wyeth IL-13 binding agents
US20090098142A1 (en) * 2004-06-09 2009-04-16 Kasaian Marion T Methods and compositions for treating and monitoring treatment of IL-13-associated disorders
US20060099203A1 (en) * 2004-11-05 2006-05-11 Pease Larry R B7-DC binding antibody
US20150010550A1 (en) 2004-07-15 2015-01-08 Xencor, Inc. OPTIMIZED Fc VARIANTS
BRPI0510674A (en) 2004-07-15 2007-12-26 Xencor Inc optimized fc variants
CA2573819A1 (en) * 2004-07-15 2006-02-23 The General Hospital Corporation Heterocyclic dye compounds for in vivo imaging and diagnosis of alzheimer's disease
NZ552485A (en) * 2004-08-05 2009-11-27 Genentech Inc Humanized anti-cmet antagonists
CA2478458A1 (en) * 2004-08-20 2006-02-20 Michael Panzara Treatment of pediatric multiple sclerosis
WO2006027346A2 (en) * 2004-09-06 2006-03-16 Altana Pharma Ag Novel pyrazolopyrimidines
WO2006031994A2 (en) * 2004-09-14 2006-03-23 Xencor, Inc. Monomeric immunoglobulin fc domains
TWI309240B (en) * 2004-09-17 2009-05-01 Hoffmann La Roche Anti-ox40l antibodies
JP2008514730A (en) * 2004-10-01 2008-05-08 メダレックス, インク. Method of treating CD30 positive lymphoma
WO2006041970A2 (en) * 2004-10-08 2006-04-20 Abbott Biotechnology Ltd. Treatment of respiratory syncytial virus (rsv) infection
US7785591B2 (en) * 2004-10-14 2010-08-31 Morphosys Ag Identification and characterization of function-blocking anti-ED-B-fibronectin antibodies
US8129130B2 (en) 2004-10-22 2012-03-06 The Feinstein Institute For Medical Research High affinity antibodies against HMGB1 and methods of use thereof
AU2005333602B2 (en) * 2004-10-22 2012-04-12 Medimmune, Llc High affinity antibodies against HMGB1 and methods of use thereof
US7964706B2 (en) * 2004-10-22 2011-06-21 Medimmune, Llc High affinity antibodies against HMGB1 and methods of use thereof
EP1817340B1 (en) 2004-11-12 2012-05-16 Xencor, Inc. Fc variants with altered binding to fcrn
US8367805B2 (en) * 2004-11-12 2013-02-05 Xencor, Inc. Fc variants with altered binding to FcRn
US8546543B2 (en) 2004-11-12 2013-10-01 Xencor, Inc. Fc variants that extend antibody half-life
US20070135620A1 (en) * 2004-11-12 2007-06-14 Xencor, Inc. Fc variants with altered binding to FcRn
WO2007001457A2 (en) * 2004-11-12 2007-01-04 Xencor, Inc. Antibodies operably linked to selected chemoattractants
US8802820B2 (en) 2004-11-12 2014-08-12 Xencor, Inc. Fc variants with altered binding to FcRn
PT2343380T (en) 2004-11-16 2019-09-18 Humanigen Inc Immunoglobulin variable region cassette exchange
WO2006055871A2 (en) * 2004-11-19 2006-05-26 Biogen Idec Ma Inc. Treatment for multiple sclerosis
JP5185624B2 (en) 2004-12-02 2013-04-17 ドマンティス リミテッド Bispecific antibodies targeting serum albumin and GLP-1 or PYY
CN102747141A (en) * 2004-12-08 2012-10-24 安万特药物公司 Method for measuring resistance or sensitivity to docetaxel
WO2006066049A2 (en) * 2004-12-15 2006-06-22 Neuralab Limited Humanized antibodies that recognize beta amyloid peptide
PE20061401A1 (en) * 2004-12-15 2006-12-23 Neuralab Ltd Aß ANTIBODIES TO IMPROVE COGNITION
EP1838348B1 (en) * 2004-12-15 2013-06-26 Janssen Alzheimer Immunotherapy Humanized amyloid beta antibodies for use in improving cognition
MY146381A (en) 2004-12-22 2012-08-15 Amgen Inc Compositions and methods relating relating to anti-igf-1 receptor antibodies
NO346624B1 (en) 2004-12-28 2022-11-07 Univ Di Genova Monoclonal antibody against NKG2A
TWI306862B (en) * 2005-01-03 2009-03-01 Hoffmann La Roche Antibodies against il-13 receptor alpha 1 and uses thereof
WO2006074399A2 (en) * 2005-01-05 2006-07-13 Biogen Idec Ma Inc. Multispecific binding molecules comprising connecting peptides
US7833725B2 (en) 2005-01-06 2010-11-16 President And Fellows Of Harvard College Mass spectrometric methods and products
EP1858925A2 (en) * 2005-01-12 2007-11-28 Xencor, Inc. Antibodies and fc fusion proteins with altered immunogenicity
ATE541859T1 (en) * 2005-01-27 2012-02-15 Novimmune Sa HUMAN ANTI-INTERFERON-GAMMA ANTIBODIES AND METHOD OF USE THEREOF
UA95068C2 (en) 2005-02-07 2011-07-11 Глікарт Біотехнолоджі Аг Antigen binding molecules that bind egfr, vectors encoding same, and uses thereof
US8444973B2 (en) * 2005-02-15 2013-05-21 Duke University Anti-CD19 antibodies and uses in B cell disorders
CA2597924C (en) * 2005-02-15 2018-10-02 Duke University Anti-cd19 antibodies and uses in oncology
US20060280738A1 (en) * 2005-06-08 2006-12-14 Tedder Thomas F Anti-CD19 antibody therapy for transplantation
CA2597945C (en) 2005-02-17 2016-07-12 Biogen Idec Ma Inc. Treating neurological disorders
SG170006A1 (en) 2005-02-18 2011-04-29 Medarex Inc Monoclonal antibodies against cd30 lacking fucosyl residues
US20160355591A1 (en) 2011-05-02 2016-12-08 Immunomedics, Inc. Subcutaneous anti-hla-dr monoclonal antibody for treatment of hematologic malignancies
US10058621B2 (en) 2015-06-25 2018-08-28 Immunomedics, Inc. Combination therapy with anti-HLA-DR antibodies and kinase inhibitors in hematopoietic cancers
US7612180B2 (en) 2005-03-03 2009-11-03 Immunomedics, Inc. Humanized L243 antibodies
US7678371B2 (en) * 2005-03-04 2010-03-16 Biogen Idec Ma Inc. Methods of humanizing immunoglobulin variable regions through rational modification of complementarity determining residues
JP2008532559A (en) 2005-03-19 2008-08-21 メディカル リサーチ カウンシル Treatment and prevention of viral infection or improvement of treatment and prevention
KR20070114324A (en) * 2005-03-25 2007-11-30 글리카트 바이오테크놀로지 아게 Antigen-binding molecule directed to MCSP and having increased Fc receptor binding affinity and effector action
ES2720288T3 (en) 2005-03-30 2019-07-19 Minerva Biotechnologies Corp Proliferation of cells expressing MUC1
WO2006105448A2 (en) 2005-03-30 2006-10-05 Minerva Biotechnologies Corporation Proliferation of muc1 expressing cells
WO2006106905A1 (en) 2005-03-31 2006-10-12 Chugai Seiyaku Kabushiki Kaisha Process for production of polypeptide by regulation of assembly
US20090214544A1 (en) * 2005-04-25 2009-08-27 Medarex Method of treating cd30 positive lymphomas
JP5047947B2 (en) * 2005-05-05 2012-10-10 デューク ユニバーシティ Anti-CD19 antibody treatment for autoimmune disease
RU2007145509A (en) * 2005-05-09 2009-06-20 Гликарт Биотехнологи Аг (Ch) ANTIGEN BINDING MOLECULES HAVING MODIFIED FC SITES AND VARIABLE BINDING WITH FC RECEPTORS
CA3151350A1 (en) 2005-05-09 2006-11-16 E. R. Squibb & Sons, L.L.C. Human monoclonal antibodies to programmed death 1 (pd-1) and methods for treating cancer using anti-pd-1 antibodies alone or in combination with other immunotherapeutics
EP1879573B1 (en) 2005-05-10 2012-12-19 Incyte Corporation Modulators of indoleamine 2,3-dioxygenase and methods of using the same
JP5339901B2 (en) 2005-05-10 2013-11-13 バイオジェン・アイデック・エムエイ・インコーポレイテッド Treatment and evaluation of inflammatory injury
US8088908B2 (en) * 2005-05-10 2012-01-03 City Of Hope Humanized anti-prostate stem cell antigen monoclonal antibody
BRPI0610058A2 (en) 2005-05-16 2010-05-25 Abbott Biotech Ltd use of tnf inhibitor for treatment of erosive polyarthritis
RU2447085C2 (en) * 2005-05-18 2012-04-10 МорфоСис АГ Anti-gm-csf antibodies and using them
US8333970B2 (en) 2005-05-18 2012-12-18 Novartis Ag Methods of monitoring the efficacy of anti-CD40 antibodies in treating a subject having an inflammatory or autoimmune disease
RU2464276C2 (en) 2005-05-18 2012-10-20 Аблинкс Н.В. Improved nanobodies against tumour necrosis factor-alpha
BRPI0611414B8 (en) * 2005-05-27 2021-05-25 Biogen Idec Inc antibody or antigen-binding fragment thereof that binds to human tweak, pharmaceutical composition and its uses
RU2415151C2 (en) 2005-06-07 2011-03-27 Эсбатек Аг STABLE AND SOLUBLE ANTIBODIES, INHIBITING TNFα
WO2006138219A2 (en) 2005-06-13 2006-12-28 Biogen Idec Ma Inc. Methods of diagnosis / prognosis of inflammatory conditions
TR201902033T4 (en) 2005-06-30 2019-03-21 Janssen Biotech Inc Anti-IL-23 antibodies, compositions, methods and uses.
CA3201163A1 (en) * 2005-07-01 2007-01-11 E. R. Squibb & Sons, L.L.C. Human monoclonal antibodies to programmed death ligand 1 (pd-l1)
CN104072614B (en) 2005-07-08 2017-04-26 生物基因Ma公司 Anti-alpha[v]beta[6] antibodies and uses thereof
US7557190B2 (en) 2005-07-08 2009-07-07 Xencor, Inc. Optimized proteins that target Ep-CAM
US7947464B2 (en) * 2005-08-02 2011-05-24 Centenary Institute Of Cancer Medicine And Cell Biology Method for identifying regulatory T cells
CN101287493A (en) * 2005-08-18 2008-10-15 根马布股份公司 Therapy with cd4 binding peptides and radiation
US20070041905A1 (en) * 2005-08-19 2007-02-22 Hoffman Rebecca S Method of treating depression using a TNF-alpha antibody
CA2619298C (en) 2005-08-26 2017-07-04 Glycart Biotechnology Ag Modified antigen binding molecules with altered cell signaling activity
DK1931709T3 (en) * 2005-10-03 2017-03-13 Xencor Inc FC VARIETIES WITH OPTIMIZED FC RECEPTOR BINDING PROPERTIES
WO2007044616A2 (en) 2005-10-06 2007-04-19 Xencor, Inc. Optimized anti-cd30 antibodies
AR058140A1 (en) * 2005-10-24 2008-01-23 Wyeth Corp PROTEIN PRODUCTION METHOD USING ANTI-SENESCENCE COMPOUNDS
AU2006316629A1 (en) * 2005-11-17 2007-05-31 Millennium Pharmaceuticals, Inc. Humanized immunoglobulin reactive with alpha 4 beta 7 integrin
US8110194B2 (en) 2005-12-07 2012-02-07 Medarex, Inc. CTLA-4 antibody dosage escalation regimens
RU2492185C2 (en) 2005-12-13 2013-09-10 Астразенека Аб Binding proteins, specific with respect to insulin-like growth factors, and their application
HUE049832T2 (en) 2005-12-29 2020-10-28 Janssen Biotech Inc Human anti-il-23 antibodies, compositions, method and uses
EP3101033B1 (en) 2006-01-12 2019-01-02 Alexion Pharmaceuticals, Inc. Antibodies to ox-2/cd200 and uses thereof
US20090175886A1 (en) * 2006-01-17 2009-07-09 Medarex, Inc. Monoclonal antibodies against cd30 lacking in fucosyl and xylosyl residues
EP2441770A1 (en) 2006-02-10 2012-04-18 The University of Cincinnati Phosphatase inhibitor protein-1 as a regulator of cardiac function
AR059432A1 (en) * 2006-02-10 2008-04-09 Genentech Inc ANTI-FGF19 ANTIBODIES AND METHODS USING THESE
ZA200806448B (en) * 2006-02-13 2010-01-27 Genentech Inc Methods and compositions for targeting relt
TW200744634A (en) 2006-02-21 2007-12-16 Wyeth Corp Methods of using antibodies against human IL-22
TWI417301B (en) 2006-02-21 2013-12-01 Wyeth Corp Antibodies against human il-22 and uses therefor
US7985548B2 (en) * 2006-03-03 2011-07-26 The United States Of America As Represented By The Department Of Health And Human Services Materials and methods directed to asparagine synthetase and asparaginase therapies
EP2650306A1 (en) * 2006-03-06 2013-10-16 Aeres Biomedical Limited Humanized Anti-CD22 antibodies and their use in treatment of oncology, transplantation and autoimmune disease
GB0605702D0 (en) * 2006-03-21 2006-05-03 Biotransformations Ltd Materials and methods for immune cell stimulation
AU2007245164A1 (en) * 2006-03-28 2007-11-08 Biogen Idec Ma Inc. Anti-IGF-IR antibodies and uses thereof
EP2009101B1 (en) 2006-03-31 2017-10-25 Chugai Seiyaku Kabushiki Kaisha Antibody modification method for purifying bispecific antibody
EP2006381B1 (en) 2006-03-31 2016-02-03 Chugai Seiyaku Kabushiki Kaisha Method for controlling blood pharmacokinetics of antibodies
AR059922A1 (en) * 2006-04-01 2008-05-07 Galaxy Biotech Llc HUMANIZED MONOCLONAL ANTIBODIES FOR THE GROWTH FACTOR OF HEPATOCITS
KR20150064254A (en) 2006-04-05 2015-06-10 애브비 바이오테크놀로지 리미티드 Antibody purification
EP2007426A4 (en) 2006-04-10 2010-06-16 Abbott Biotech Ltd Uses and compositions for treatment of psoriatic arthritis
US20080118496A1 (en) * 2006-04-10 2008-05-22 Medich John R Uses and compositions for treatment of juvenile rheumatoid arthritis
US20090317399A1 (en) * 2006-04-10 2009-12-24 Pollack Paul F Uses and compositions for treatment of CROHN'S disease
US9605064B2 (en) 2006-04-10 2017-03-28 Abbvie Biotechnology Ltd Methods and compositions for treatment of skin disorders
EP2010214A4 (en) * 2006-04-10 2010-06-16 Abbott Biotech Ltd Uses and compositions for treatment of rheumatoid arthritis
US8784810B2 (en) * 2006-04-18 2014-07-22 Janssen Alzheimer Immunotherapy Treatment of amyloidogenic diseases
US20080131374A1 (en) * 2006-04-19 2008-06-05 Medich John R Uses and compositions for treatment of rheumatoid arthritis
SMP200800064B (en) 2006-04-21 2009-11-06 Novartis Ag Pharmaceutical compositions of anti-cd40 antagonist antibodies
JP5496658B2 (en) * 2006-05-25 2014-05-21 バイオジェン・アイデック・エムエイ・インコーポレイテッド How to treat a stroke
EP2025749B8 (en) * 2006-05-31 2012-05-23 Astellas Pharma Inc. Humanized anti-human osteopontin antibody
US20100172902A1 (en) * 2006-05-31 2010-07-08 Hanwha Chemical Corporation Method for treating a vcam-1 mediated disease
JP2009536641A (en) * 2006-05-31 2009-10-15 ハンワ ケミカル コーポレイション VCAM-1-specific monoclonal antibody
NZ573818A (en) 2006-06-02 2011-09-30 Aveo Pharmaceuticals Inc Hepatocyte growth factor (hgf) binding proteins
AU2007254853B2 (en) 2006-06-02 2011-11-17 Aveo Pharmaceuticals, Inc. Hepatocyte growth factor (HGF) binding proteins
AU2007254831B2 (en) 2006-06-02 2012-03-22 Regeneron Pharmaceuticals, Inc. High affinity antibodies to human IL-6 receptor
CA2653387A1 (en) * 2006-06-06 2007-12-21 Tolerrx, Inc. Administration of anti-cd3 antibodies in the treatment of autoimmune diseases
CA2655903A1 (en) * 2006-06-19 2008-08-07 Tolerx, Inc. Ilt3 binding molecules and uses therefor
US8206709B2 (en) 2006-06-30 2012-06-26 Novo Nordisk A/S Anti-NKG2A antibodies and uses thereof
KR20090027241A (en) 2006-07-10 2009-03-16 바이오겐 아이덱 엠에이 인코포레이티드 Compositions and Methods for Inhibiting Growth of SMAAD4-Deficient Cancers
EP2479284B1 (en) 2006-07-13 2017-09-20 University of Iowa Research Foundation Methods and reagents for treatment and diagnosis of vascular disorders and age-related macular degeneration
RU2009107277A (en) * 2006-08-03 2010-09-10 Астразенека Аб (Se) ANTIBODIES AIMED AT αVβ6 AND THEIR APPLICATION
MX2009001110A (en) * 2006-08-03 2009-05-11 Vaccinex Inc Anti-il-6 monoclonal antibodies and uses thereof.
AR062223A1 (en) 2006-08-09 2008-10-22 Glycart Biotechnology Ag MOLECULES OF ADHESION TO THE ANTIGEN THAT ADHER TO EGFR, VECTORS THAT CODE THEM, AND THEIR USES OF THESE
EP2059536B1 (en) 2006-08-14 2014-01-08 Xencor, Inc. Optimized antibodies that target cd19
CL2007002567A1 (en) 2006-09-08 2008-02-01 Amgen Inc ISOLATED PROTEINS FROM LINK TO ACTIVINE TO HUMAN.
JP5562031B2 (en) 2006-09-18 2014-07-30 ゼンコー・インコーポレイテッド Optimized antibody targeting HM1.24
EP2762886A1 (en) 2006-09-29 2014-08-06 Translational Therapeutics, Inc. EIF4E Regulon-based diagnostics
EP2076287A2 (en) * 2006-10-12 2009-07-08 Wyeth Methods and compositions with reduced opalescence
EP2068922B1 (en) * 2006-10-19 2012-06-27 CSL Limited Anti-il-13r alpha 1 antibodies and their uses thereof
EP1916259A1 (en) 2006-10-26 2008-04-30 Institut National De La Sante Et De La Recherche Medicale (Inserm) Anti-glycoprotein VI SCFV fragment for treatment of thrombosis
KR101475960B1 (en) * 2006-10-26 2014-12-23 가부시키가이샤 진 테크노 사이언스 Antibodies against the amino acid sequence RGD of extracellular matrix proteins and their preparation and uses
DK2502938T3 (en) * 2006-10-27 2015-04-20 Genentech Inc Antibodies and immunoconjugates and uses thereof
EP2064315B1 (en) * 2006-11-03 2015-05-13 Wyeth LLC Glycolysis-inhibiting substances in cell culture
CL2007003291A1 (en) * 2006-11-15 2008-07-04 Medarex Inc ISOLATED HUMAN MONOCLONAL ANTIBODY THAT LINKS THE BTLA PROTEIN OR FRAGMENTS OF THE SAME; NUCLEIC ACID THAT CODIFIES IT; METHOD OF PRODUCTION; COMPOSITION AND IMMUNOCUJUGADO THAT UNDERSTANDS THEM; AND METHOD TO INHIBIT THE GROWTH OF TUMOR CELLS AND
US8945565B2 (en) 2006-12-01 2015-02-03 Selexys Pharmaceuticals Corporation Methods of treating inflammatory or thrombotic conditions with anti-P-selectin antibodies
US20110212096A1 (en) 2006-12-01 2011-09-01 Scott Rollins Anti-p-selectin antibodies and methods of their use and identification
LT2662091T (en) * 2006-12-01 2018-12-10 Novartis Ag Anti-P-selectin antibodies and methods of using the same to treat inflammatory diseases
EP2102241A2 (en) 2006-12-15 2009-09-23 Ablynx N.V. Amino acid sequences that modulate the interaction between cells of the immune system
CN101679519A (en) * 2006-12-22 2010-03-24 先灵公司 Antibodies to CD200R
ITMI20070139A1 (en) * 2007-01-30 2008-07-31 St Microelectronics Srl SELF-ADAPTIVE SOFT IGNITION OF POWER SWITCHING DEVICES
US7883705B2 (en) 2007-02-14 2011-02-08 Kyowa Hakko Kirin Co., Ltd. Anti FGF23 antibody and a pharmaceutical composition comprising the same
JP2010518858A (en) 2007-02-23 2010-06-03 シェーリング コーポレイション Engineered anti-IL-23P19 antibody
US20090081237A1 (en) 2007-03-12 2009-03-26 Dana-Farber Cancer Institute Prognostic, diagnostic, and cancer therapeutic uses of FANCI and FANCI modulating agents
EP2546355A1 (en) 2007-03-14 2013-01-16 Washington University Methods for identifying diabetes and obesity therapeutics
EP2138576A4 (en) * 2007-03-16 2011-02-23 Kyowa Hakko Kirin Co Ltd Anti-claudin-4 antibody
MX2009010611A (en) * 2007-04-03 2010-03-26 Micromet Ag Cross-species-specific bispecific binders.
US7807168B2 (en) * 2007-04-10 2010-10-05 Vaccinex, Inc. Selection of human TNFα specific antibodies
CA2684323A1 (en) * 2007-04-18 2008-10-30 Janssen Alzheimer Immunotherapy Prevention and treatment of cerebral amyloid angiopathy
US8003097B2 (en) * 2007-04-18 2011-08-23 Janssen Alzheimer Immunotherapy Treatment of cerebral amyloid angiopathy
TW200902708A (en) * 2007-04-23 2009-01-16 Wyeth Corp Methods of protein production using anti-senescence compounds
EP2137215A2 (en) * 2007-04-23 2009-12-30 Wyeth Methods and compositions for treating and monitoring treatment of il-13-associated disorders
US8445643B2 (en) * 2007-04-24 2013-05-21 Bio-Support Co., Ltd. Anti-IRC85 monoclonal antibody; and composition comprising the same for preventing and treating tuberculosis or enteritis disease; and the use thereof
US20100322949A1 (en) 2007-04-26 2010-12-23 Ludwig Institute For Cancer Research Ltd. Methods for diagnosing and treating astrocytomas
EP2162552A4 (en) 2007-05-11 2010-06-30 Univ Johns Hopkins BIOMARKERS FOR MELANOMES
SG183742A1 (en) 2007-05-21 2012-09-27 Alderbio Holdings Llc Antibodies to il-6 and use thereof
US8252286B2 (en) 2007-05-21 2012-08-28 Alderbio Holdings Llc Antagonists of IL-6 to prevent or treat thrombosis
US9701747B2 (en) 2007-05-21 2017-07-11 Alderbio Holdings Llc Method of improving patient survivability and quality of life by anti-IL-6 antibody administration
US8404235B2 (en) 2007-05-21 2013-03-26 Alderbio Holdings Llc Antagonists of IL-6 to raise albumin and/or lower CRP
US8178101B2 (en) 2007-05-21 2012-05-15 Alderbio Holdings Inc. Use of anti-IL-6 antibodies having specific binding properties to treat cachexia
US7906117B2 (en) * 2007-05-21 2011-03-15 Alderbio Holdings Llc Antagonists of IL-6 to prevent or treat cachexia, weakness, fatigue, and/or fever
WO2008144753A2 (en) 2007-05-21 2008-11-27 Alder Biopharmaceuticals, Inc. Antibodies to tnf alpha and use thereof
US8062864B2 (en) 2007-05-21 2011-11-22 Alderbio Holdings Llc Nucleic acids encoding antibodies to IL-6, and recombinant production of anti-IL-6 antibodies
US8999337B2 (en) 2007-06-11 2015-04-07 Abbvie Biotechnology Ltd. Methods for treating juvenile idiopathic arthritis by inhibition of TNFα
US8048420B2 (en) 2007-06-12 2011-11-01 Ac Immune S.A. Monoclonal antibody
US8613923B2 (en) 2007-06-12 2013-12-24 Ac Immune S.A. Monoclonal antibody
PL2631248T3 (en) * 2007-06-15 2018-06-29 Medigene Ag Treatment of tumors using specific anti-L1 antibody
US7580304B2 (en) * 2007-06-15 2009-08-25 United Memories, Inc. Multiple bus charge sharing
CN102131828B (en) 2007-06-18 2015-06-17 默沙东有限责任公司 Antibody against human programmed death receptor PD-1
CL2008001887A1 (en) 2007-06-29 2008-10-03 Amgen Inc PROTEINS OF UNION TO ANTIGEN THAT JOIN THE RECEPTOR ACTIVATED BY PROTEASES 2 (PAR-2); NUCLEIC ACID THAT CODES THEM; VECTOR AND GUEST CELL; METHOD OF PRODUCTION; AND COMPOSITION THAT UNDERSTANDS THEM.
US10202442B2 (en) 2007-07-25 2019-02-12 Philogen S.P.A. Antigen associated with lung cancers and lymphomas
AU2008279618B2 (en) * 2007-07-25 2014-05-22 Alexion Pharmaceuticals, Inc. Methods and compositions for treating autoimmune disease
EA017995B1 (en) * 2007-07-25 2013-04-30 Филоджен С.П.А. An antigen associated with lung cancers and lymphomas
PL2182983T3 (en) 2007-07-27 2014-10-31 Janssen Alzheimer Immunotherap Treatment of amyloidogenic diseases with humanised anti-abeta antibodies
US8236307B2 (en) 2007-08-03 2012-08-07 Genentech, Inc. Humanized anti-FGF19 antagonists and methods using same
EP2022848A1 (en) 2007-08-10 2009-02-11 Hubrecht Institut A method for identifying, expanding, and removing adult stem cells and cancer stem cells
JP5749009B2 (en) * 2007-08-13 2015-07-15 バスジーン セラピューティクス, インコーポレイテッドVasgenetherapeutics, Inc. Cancer therapeutic agent using humanized antibody binding to EphB4
CA2696402A1 (en) 2007-08-21 2009-02-26 Nodality, Inc. Methods for diagnosis, prognosis and methods of treatment
JOP20080381B1 (en) 2007-08-23 2023-03-28 Amgen Inc Antigen Binding Proteins to Proprotein Convertase subtillisin Kexin type 9 (pcsk9)
EP2615113A3 (en) 2007-08-23 2013-11-13 Amgen Inc. Antigen binding proteins to proprotein convertase subtilisin kexin type 9 (PCSK9)
WO2009032145A1 (en) * 2007-08-28 2009-03-12 Biogen Idec Ma Inc. Anti-igf-1r antibodies and uses thereof
CN101842116A (en) * 2007-08-28 2010-09-22 比奥根艾迪克Ma公司 Compositions binding multiple epitopes of IGF-1R
US7982016B2 (en) 2007-09-10 2011-07-19 Amgen Inc. Antigen binding proteins capable of binding thymic stromal lymphopoietin
US8728477B2 (en) * 2007-09-19 2014-05-20 Immune Pharmaceuticals Ltd. Nucleotide and protein sequences of an antibody directed against an epitope common to human acidic and basic ferritins, monoclonal antibodies or antibody-like molecules comprising these sequences and uses thereof
BRPI0817257A2 (en) * 2007-09-24 2015-06-16 Univ Vanderbilt Monoclonal antibodies to respiratory syncytial virus and their uses
JP5334319B2 (en) 2007-09-26 2013-11-06 中外製薬株式会社 Method for modifying isoelectric point of antibody by amino acid substitution of CDR
ES2566957T3 (en) 2007-09-26 2016-04-18 Chugai Seiyaku Kabushiki Kaisha Constant region of modified antibody
US8088593B2 (en) 2007-10-02 2012-01-03 Theranos, Inc. Modular point-of-care devices, systems, and uses thereof
ATE553778T1 (en) * 2007-10-02 2012-05-15 Inst Nat Sante Rech Med ANTIBODIES SPECIFIC TO HUMAN HEPCIDIN
SI2238166T1 (en) 2007-10-05 2014-03-31 Genentech, Inc. Use of anti-amyloid beta antibody in ocular diseases
JO3076B1 (en) * 2007-10-17 2017-03-15 Janssen Alzheimer Immunotherap Immunotherapy regimes dependent on apoe status
ES2646228T3 (en) 2007-10-30 2017-12-12 Philogen S.P.A. An antigen associated with rheumatoid arthritis
AU2008345242B2 (en) 2007-10-31 2014-02-27 Xencor, Inc. Fc variants with altered binding to FcRn
EP3211011A1 (en) 2007-11-16 2017-08-30 Nuvelo, Inc. Antibodies to lrp6
US8637435B2 (en) * 2007-11-16 2014-01-28 Merck Sharp & Dohme Corp. Eukaryotic cell display systems
DK3002298T3 (en) 2007-11-21 2019-10-28 Univ Oregon Health & Science ANTI-FACTOR XI MONOCLONAL ANTIBODIES AND PROCEDURES FOR USE THEREOF
NZ586100A (en) * 2007-12-13 2012-07-27 Monsanto Technology Llc Compositions and methods for early pregnancy diagnosis using antibodies for pregancy-associated glycoproteins (PAGs)
TWI468174B (en) 2007-12-14 2015-01-11 Novo Nordisk As Antibodies against human kng2d and uses thereof
CA2711771C (en) * 2008-01-11 2017-01-24 Gene Techno Science Co., Ltd. Humanized anti-.alpha.9 integrin antibodies and the uses thereof
DK2242769T3 (en) 2008-01-11 2017-02-06 Adheron Therapeutics Inc ANTI-CADHERIN-11 EC1 DOMAIN ANTIBODIES FOR TREATMENT OF INFLAMMATORY LED DISEASES
RU2537139C2 (en) 2008-01-15 2014-12-27 Эбботт Гмбх Унд Ко.Кг Protein powder compositions and methods for preparing them
WO2009092805A1 (en) 2008-01-24 2009-07-30 Novo Nordisk A/S Humanized anti-human nkg2a monoclonal antibody
HUE032025T2 (en) 2008-01-31 2017-08-28 Inserm - Inst Nat De La Sante Et De La Rech Medicale Antibodies against human cd39 and use thereof for inhibiting t regulatory cells activity
JO2913B1 (en) 2008-02-20 2015-09-15 امجين إنك, Antibodies directed to angiopoietin-1 and angiopoietin-2 and uses thereof
JP5731827B2 (en) 2008-03-03 2015-06-10 グライコフィ, インコーポレイテッド Surface display of recombinant proteins in lower eukaryotes
AU2009221729A1 (en) * 2008-03-06 2009-09-11 Genentech, Inc. Combination therapy with c-met and HER antagonists
ES2610327T3 (en) * 2008-03-13 2017-04-27 Biotest Ag Dosing regimen of anti-CD4 antibodies for the treatment of autoimmune diseases
BRPI0909048A2 (en) * 2008-03-13 2015-11-24 Biotest Ag pharmaceutical composition and method of treating an autoimmune disease
ES2569217T3 (en) * 2008-03-13 2016-05-09 Biotest Ag Agent to treat diseases
US8568717B2 (en) * 2008-04-03 2013-10-29 Vib Vzw Single domain antibodies capable of modulating BACE activity
US9908943B2 (en) 2008-04-03 2018-03-06 Vib Vzw Single domain antibodies capable of modulating BACE activity
US8835147B2 (en) 2008-04-04 2014-09-16 Massachusetts Institute Of Technology Cellular production of glucaric acid through recombinant expression of uronate dehydrogenase and myo-inositol oxygenase
US20110191868A1 (en) 2008-04-10 2011-08-04 Massachusetts Institute Of Technology Methods for identification and use of agents targeting cancer stem cells
JP2011516549A (en) * 2008-04-11 2011-05-26 バイオジェン アイデック マサチューセッツ インコーポレイテッド Therapeutic combination of anti-IGF-1R antibody with other compounds
ES2566750T3 (en) 2008-04-16 2016-04-15 The Johns Hopkins University Method to determine the risk of prostate cancer recurrence
AU2008201871A1 (en) * 2008-04-16 2009-11-26 Deutsches Krebsforschungszentrum Stiftung Des Oeffentlichen Rechts Inhibition of angiogenesis and tumor metastasis
EP2280997A2 (en) * 2008-04-18 2011-02-09 Xencor, Inc. Human equivalent monoclonal antibodies engineered from nonhuman variable regions
US9365644B2 (en) * 2008-04-23 2016-06-14 Epitomics, Inc. Anti-TNFα antibody
CN102027013B (en) * 2008-04-24 2015-01-14 株式会社遗传科技 Specific humanized antibody of amino acid sequence RGD of extracellular matrix protein and its application
US20100260668A1 (en) * 2008-04-29 2010-10-14 Abbott Laboratories Dual Variable Domain Immunoglobulins and Uses Thereof
CA2722466A1 (en) * 2008-04-29 2009-11-05 Tariq Ghayur Dual variable domain immunoglobulins and uses thereof
EP2620448A1 (en) * 2008-05-01 2013-07-31 Amgen Inc. Anti-hepcidin antibodies and methods of use
US9296810B2 (en) 2008-05-02 2016-03-29 Novartis Ag Fibronectin-based binding molecules and uses thereof
NZ589436A (en) * 2008-06-03 2012-12-21 Abbott Lab Dual variable domain immunoglobulins and uses thereof
RU2010153580A (en) * 2008-06-03 2012-07-20 Эбботт Лэборетриз (Us) IMMUNOGLOBULINS WITH TWO VARIABLE DOMAINS AND THEIR APPLICATION
US8383351B2 (en) * 2008-06-11 2013-02-26 Oxford Brookes University Antibody to inhibin/ activin β-B subunit
US8188235B2 (en) 2008-06-18 2012-05-29 Pfizer Inc. Antibodies to IL-6 and their uses
HRP20170615T1 (en) 2008-06-25 2017-07-28 Esbatech, An Alcon Biomedical Research Unit Llc Stable and soluble antibodies inhibiting vegf
EP2307457B2 (en) 2008-06-25 2022-06-22 Novartis AG Stable and soluble antibodies inhibiting tnf
EP3628686B1 (en) 2008-06-25 2021-07-21 Novartis AG Humanization of rabbit antibodies using a universal antibody framework
WO2009157623A1 (en) * 2008-06-25 2009-12-30 Korea Research Institute Of Bioscience And Biotechnology Cd9-specific human antibodies
MY171866A (en) 2008-07-08 2019-11-05 Incyte Holdings Corp 1,2,5-oxadiazoles as inhibitors of indoleamine 2,3-dioxygenase
CN102149825B (en) * 2008-07-08 2015-07-22 Abbvie公司 Prostaglandin E2 dual variable domain immunoglobulins and uses thereof
US8067339B2 (en) * 2008-07-09 2011-11-29 Merck Sharp & Dohme Corp. Surface display of whole antibodies in eukaryotes
TW201016233A (en) * 2008-07-15 2010-05-01 Genentech Inc Methods of treating autoimmune diseases using CD4 antibodies
US20110097339A1 (en) * 2008-07-18 2011-04-28 Domantis Limited Compositions monovalent for CD28 binding and methods of use
EP2321352B1 (en) * 2008-07-18 2016-01-06 Bristol-Myers Squibb Company Compositions monovalent for cd28 binding and methods of use
TW201018482A (en) * 2008-08-08 2010-05-16 Glaxo Wellcome Mfg Pte Ltd Novel treatment
CA2734919C (en) * 2008-08-27 2016-08-16 Schering Corporation Lyophilized formulations of engineered anti-il-23p19 antibodies
CA2735940A1 (en) * 2008-09-05 2010-03-11 Xoma Technology Ltd. Methods for treating or preventing il-1.beta. related diseases
WO2010039533A2 (en) 2008-09-23 2010-04-08 Wyeth Methods for predicting production of activating signals by cross-linked binding proteins
AU2009296392B2 (en) 2008-09-26 2016-06-02 Dana-Farber Cancer Institute, Inc. Human anti-PD-1, PD-L1, and PD-L2 antibodies and uses therefor
RU2531548C2 (en) * 2008-09-29 2014-10-20 Биотест Аг Composition for treating disease
WO2010040766A1 (en) 2008-10-07 2010-04-15 INSERM (Institut National de la Santé et de la Recherche Médicale) Neutralizing antibodies and fragments thereof directed against platelet factor-4 variant 1 (pf4v1)
CN102272290B (en) 2008-10-09 2018-08-14 米纳瓦生物技术公司 Method for inducing pluripotency in a cell
MX345226B (en) 2008-10-29 2017-01-20 Ablynx Nv Formulations of single domain antigen binding molecules.
JP6113404B2 (en) 2008-10-29 2017-04-12 アブリンクス エン.ヴェー. Purification method of single domain antigen binding molecule
US9067981B1 (en) 2008-10-30 2015-06-30 Janssen Sciences Ireland Uc Hybrid amyloid-beta antibodies
US8309306B2 (en) * 2008-11-12 2012-11-13 Nodality, Inc. Detection composition
US9212223B2 (en) 2008-11-25 2015-12-15 Alderbio Holdings Llc Antagonists of IL-6 to prevent or treat thrombosis
US8420089B2 (en) 2008-11-25 2013-04-16 Alderbio Holdings Llc Antagonists of IL-6 to raise albumin and/or lower CRP
US8323649B2 (en) 2008-11-25 2012-12-04 Alderbio Holdings Llc Antibodies to IL-6 and use thereof
US8337847B2 (en) 2008-11-25 2012-12-25 Alderbio Holdings Llc Methods of treating anemia using anti-IL-6 antibodies
CA2744400C (en) 2008-11-25 2019-01-15 Alder Biopharmaceuticals, Inc. Antibodies to il-6 and use thereof
US9452227B2 (en) 2008-11-25 2016-09-27 Alderbio Holdings Llc Methods of treating or diagnosing conditions associated with elevated IL-6 using anti-IL-6 antibodies or fragments
US8992920B2 (en) 2008-11-25 2015-03-31 Alderbio Holdings Llc Anti-IL-6 antibodies for the treatment of arthritis
PT4209510T (en) * 2008-12-09 2024-04-02 Hoffmann La Roche Anti-pd-l1 antibodies and their use to enhance t-cell function
JO3672B1 (en) 2008-12-15 2020-08-27 Regeneron Pharma High Affinity Human Antibodies to PCSK9
US8133979B2 (en) 2008-12-16 2012-03-13 Hoffmann-La Roche Inc. Antibodies against human angiopoietin 2
KR20110114664A (en) 2009-01-16 2011-10-19 메사추세츠 인스티튜트 오브 테크놀로지 Diagnosis and Treatment of Autism Spectrum Disorders
EP2389583A1 (en) 2009-01-22 2011-11-30 Ludwig Institute for Cancer Research, Ltd. Methods and compositions for diagnosis and treatment of malignant and non-malignant gammopathies
US20110165063A1 (en) * 2009-01-29 2011-07-07 Abbott Laboratories Il-1 binding proteins
WO2010087994A2 (en) 2009-01-30 2010-08-05 Whitehead Institute For Biomedical Research Methods for ligation and uses thereof
EP2394159B1 (en) * 2009-02-04 2018-09-26 Molecular Innovations Assays for detecting prorenin, and antibodies used therein
US20100233733A1 (en) * 2009-02-10 2010-09-16 Nodality, Inc., A Delaware Corporation Multiple mechanisms for modulation of the pi3 kinase pathway
DK2398498T3 (en) * 2009-02-17 2019-01-07 Ucb Biopharma Sprl ANTIBODY MOLECULES WITH SPECIFICITY FOR HUMAN OX40
GB0903325D0 (en) * 2009-02-26 2009-04-08 Univ Aberdeen Antibody molecules
PL2406284T3 (en) 2009-03-10 2017-09-29 Biogen Ma Inc. Anti-bcma antibodies
US20120064096A1 (en) 2009-03-17 2012-03-15 Universite De La Mediterranee BTLA Antibodies and Uses Thereof
EP2409991B1 (en) 2009-03-19 2017-05-03 Chugai Seiyaku Kabushiki Kaisha Antibody constant region variant
TWI682995B (en) 2009-03-19 2020-01-21 日商中外製藥股份有限公司 Antibody constant region alteration
MY162752A (en) 2009-03-20 2017-07-14 Amgen Inc Alpha-4-beta-7 heterodimer specific antagonist antibody
US8242248B2 (en) * 2009-03-23 2012-08-14 Nodality, Inc. Kits for multiparametric phospho analysis
RU2542394C2 (en) * 2009-03-24 2015-02-20 ТЕВА БИОФАРМАСЬЮТИКАЛЗ ЮЭсЭй, ИНК. Humanised anti-light antibodies and using them
CA2754646A1 (en) 2009-03-31 2010-10-07 Roche Glycart Ag Treatment of cancer with a humanized anti-egfr igg1 antibody and irinotecan
CN102573907A (en) * 2009-04-17 2012-07-11 比奥根艾迪克Ma公司 Compositions and methods to treat acute myelogenous leukemia
US9181339B2 (en) 2009-04-20 2015-11-10 Oxford Bio Therapeutics Ltd. Antibodies specific to cadherin-17
US9074002B2 (en) 2009-04-27 2015-07-07 Cold Spring Harbor Laboratory PTP1B inhibitors
EP2799453B1 (en) 2009-04-29 2019-04-03 The Henry M. Jackson Foundation for the Advancement of Military Medicine, Inc. ERG2 monoclonal antibodies and their therapeutic use
AU2010242830C1 (en) * 2009-05-01 2014-02-13 Abbvie Inc. Dual variable domain immunoglobulins and uses thereof
US20100291106A1 (en) * 2009-05-06 2010-11-18 Novartis Ag Compositions and methods for antibodies targeting complement protein c3b
WO2010128265A2 (en) 2009-05-07 2010-11-11 Stallergenes S.A. Use of igg1 immunoglobulins and/or ligands of the cd32 receptor for treating inflammatory diseases and incidents via the mucosa
WO2010129917A2 (en) 2009-05-08 2010-11-11 Vaccinex, Inc. Anti-cd100 antibodies and methods for using the same
WO2010138709A1 (en) 2009-05-28 2010-12-02 Government Of The United States Of America, As Represented By The Secretary, Department Of Health & Human Services Anti-tnf induced apoptosis (atia) diagnostic markers and therapies
EA201190275A1 (en) * 2009-05-28 2012-11-30 Глаксо Груп Лимитед PROTEIN CONNECTING INTERLEUKIN-13 (IL-13)
MX2011012696A (en) 2009-05-29 2012-03-29 Morphosys Ag A collection and methods for its use.
EP2440934B1 (en) 2009-06-08 2014-07-16 Vib Vzw Screening for compounds that modulate gpr3-mediated beta-arrestin signaling and amyloid beta peptide generation
EP3118222A1 (en) 2009-06-15 2017-01-18 Vib Vzw Bace1 inhibitory antibodies
AU2010268690B2 (en) 2009-07-03 2011-11-10 Avipep Pty Ltd Immuno-conjugates and methods for producing them
EA022788B1 (en) 2009-07-03 2016-03-31 Бионор Иммуно Ас Novel therapeutic and diagnostic means
SG177583A1 (en) 2009-07-09 2012-02-28 Hoffmann La Roche In vivo tumor vasculature imaging
CA2767409C (en) 2009-07-24 2018-10-30 The Regents Of The University Of California Methods and compositions for treating and preventing disease associated with .alpha.v.beta.5 integrin
TW201109438A (en) * 2009-07-29 2011-03-16 Abbott Lab Dual variable domain immunoglobulins and uses thereof
US20120231013A1 (en) 2009-07-31 2012-09-13 Black Roy A Polypeptides that bind tissue inhibitor of metalloproteinase type three (timp-3), compositions and methods
WO2011020783A2 (en) * 2009-08-17 2011-02-24 Roche Glycart Ag Targeted immunoconjugates
CA2771781C (en) 2009-08-28 2019-01-15 Vlst Corporation Antikine antibodies that bind to multiple cc chemokines
CN102741293B (en) 2009-08-31 2015-04-01 罗切格利卡特公司 Affinity-matured humanized anti CEA monoclonal antibodies
WO2011025542A1 (en) 2009-08-31 2011-03-03 Ludwig Institute For Cancer Research Ltd. Seromic analysis of ovarian cancer
CN102612524A (en) * 2009-09-01 2012-07-25 雅培制药有限公司 Dual variable domain immunoglobulins and uses thereof
US9493578B2 (en) 2009-09-02 2016-11-15 Xencor, Inc. Compositions and methods for simultaneous bivalent and monovalent co-engagement of antigens
WO2011031986A1 (en) 2009-09-10 2011-03-17 The United States Of America, As Represented By The Secretary, Department Of Health And Human Services Office Of Technology Transfer, National Institutes Of Health Assays for soluble il-15 receptor alpha
RU2012114005A (en) 2009-09-11 2013-10-20 Те Гавернмент Оф Те Юнайтед Стейтс Оф Америка Эз Репризентед Бай Те Секретари Оф Те Департмент Хелт Энд Хьюман Сервисез IMPROVED EXOTOXIN A PSEUDOMONAS WITH REDUCED IMMUNOGENITY
WO2011038139A1 (en) 2009-09-23 2011-03-31 Amgen Inc. Treatment of ovarian cancer using a specific binding agent of human angiopoietin-2 in combination with a taxane
KR101809761B1 (en) 2009-09-24 2017-12-15 가부시키가이샤 진 테크노 사이언스 Humanized antibodies specific for amino acid sequence rgd of an extracellular matrix protein and the uses thereof
JP5837821B2 (en) 2009-09-24 2015-12-24 中外製薬株式会社 Antibody constant region variants
US8926976B2 (en) * 2009-09-25 2015-01-06 Xoma Technology Ltd. Modulators
MX2012004090A (en) * 2009-10-09 2012-04-20 Sanofi Sa Polypeptides for binding to the "receptor for advanced glycation endproducts" as well as compositions and methods involving the same.
WO2011047083A1 (en) 2009-10-13 2011-04-21 Oxford Biotherapeutics Ltd. Antibodies against epha10
WO2011047262A2 (en) * 2009-10-15 2011-04-21 Abbott Laboratories Dual variable domain immunoglobulins and uses thereof
CA2778401C (en) * 2009-10-21 2019-08-13 Hiroshima University Integrin alpha 8-beta 1-specific monoclonal antibody
EA201792376A3 (en) 2009-10-23 2018-08-31 Милленниум Фармасьютикалз, Инк. ANTI-GCC MOLECULES ANTIBODIES AND RELATED COMPOSITIONS AND METHODS
UY32979A (en) 2009-10-28 2011-02-28 Abbott Lab IMMUNOGLOBULINS WITH DUAL VARIABLE DOMAIN AND USES OF THE SAME
WO2011051327A2 (en) 2009-10-30 2011-05-05 Novartis Ag Small antibody-like single chain proteins
WO2011063198A2 (en) 2009-11-20 2011-05-26 St. Jude Children's Research Hospital Methods and compositions for modulating the activity of the interleukin-35 receptor complex
US9724410B2 (en) 2009-11-24 2017-08-08 Alderbio Holdings Llc Anti-IL-6 antibodies or fragments thereof to treat or inhibit cachexia, associated with chemotherapy toxicity
US9775921B2 (en) 2009-11-24 2017-10-03 Alderbio Holdings Llc Subcutaneously administrable composition containing anti-IL-6 antibody
GB0920944D0 (en) 2009-11-30 2010-01-13 Biotest Ag Agents for treating disease
WO2011067420A1 (en) 2009-12-04 2011-06-09 Vib Vzw Arf6 as a new target for treating alzheimer's disease
US8324352B2 (en) * 2009-12-07 2012-12-04 Decimmune Therapeutics, Inc. Anti-inflammatory antibodies and uses therefor
AU2010328046C1 (en) 2009-12-10 2018-01-18 Regeneron Pharmaceuticals, Inc. Mice that make heavy chain antibodies
EP3309176B1 (en) 2009-12-14 2025-10-01 Ablynx N.V. Immunoglobulin single variable domain antibodies against ox40l, constructs and their therapeutic use
US8765432B2 (en) 2009-12-18 2014-07-01 Oligasis, Llc Targeted drug phosphorylcholine polymer conjugates
US9315581B2 (en) 2009-12-23 2016-04-19 A Vipep Pty Limited Immuno-conjugates and methods for producing them
JP4881428B2 (en) * 2009-12-25 2012-02-22 株式会社東芝 Electronics
WO2011080322A1 (en) 2009-12-30 2011-07-07 Institut National De La Sante Et De La Recherche Medicale (Inserm) Method of prognosing the outcome of acquired hemophilia and of treatment of hemophilia
JO3417B1 (en) 2010-01-08 2019-10-20 Regeneron Pharma Stabilized formulations containing anti-interleukin-6 receptor (il-6r) antibodies
AU2011203890B2 (en) * 2010-01-11 2013-05-30 Center For Molecular Medicine And Immunology Enhanced cytotoxicity of anti-CD74 and anti-HLA-DR antibodies with interferon-gamma
US8362210B2 (en) 2010-01-19 2013-01-29 Xencor, Inc. Antibody variants with enhanced complement activity
EP2526421B1 (en) * 2010-01-22 2018-11-21 Immunomedics, Inc. Detection of early-stage pancreatic adenocarcinoma
CA2787994C (en) 2010-01-26 2021-01-12 National Jewish Health Diagnosis and prognosis of idiopathic interstitial pneumonia by rs35705950 snp in muc5b gene promoter
WO2011097527A2 (en) 2010-02-04 2011-08-11 Xencor, Inc. Immunoprotection of therapeutic moieties using enhanced fc regions
US20110189178A1 (en) * 2010-02-04 2011-08-04 Xencor, Inc. Immunoprotection of Therapeutic Moieties Using Enhanced Fc Regions
EP2354159A1 (en) 2010-02-05 2011-08-10 RWTH Aachen CCL17 inhibitors for use in T helper cell-driven diseases
WO2011101328A2 (en) 2010-02-18 2011-08-25 Roche Glycart Ag Treatment with a humanized igg class anti egfr antibody and an antibody against insulin like growth factor 1 receptor
TWI552760B (en) * 2010-02-24 2016-10-11 雷那特神經科學股份有限公司 Antagonist anti-il-7 receptor antibodies and methods
US10435458B2 (en) 2010-03-04 2019-10-08 Chugai Seiyaku Kabushiki Kaisha Antibody constant region variants with reduced Fcgammar binding
GB201003701D0 (en) 2010-03-05 2010-04-21 Cilian Ag System for the expression of a protein
CN107098958B (en) 2010-03-26 2021-11-05 达特茅斯大学理事会 VISTA regulatory T cell mediator proteins, VISTA binding agents and uses thereof
US20150231215A1 (en) 2012-06-22 2015-08-20 Randolph J. Noelle VISTA Antagonist and Methods of Use
US10745467B2 (en) 2010-03-26 2020-08-18 The Trustees Of Dartmouth College VISTA-Ig for treatment of autoimmune, allergic and inflammatory disorders
EP2560994B1 (en) 2010-04-08 2016-10-12 JN Biosciences LLC Antibodies to cd122
RU2568051C2 (en) 2010-04-09 2015-11-10 Авео Фармасьютикалз, Инк. ANTI-ErbB3 ANTIBODIES
EP2558503B1 (en) 2010-04-14 2015-12-09 National Research Council of Canada Compositions and methods for brain delivery of analgesic peptides
US8383793B2 (en) 2010-04-15 2013-02-26 St. Jude Children's Research Hospital Methods and compositions for the diagnosis and treatment of cancer resistant to anaplastic lymphoma kinase (ALK) kinase inhibitors
EP4032912B1 (en) 2010-04-16 2025-05-28 Biogen MA Inc. Anti-vla-4 antibodies
WO2011156617A2 (en) 2010-06-09 2011-12-15 Aveo Pharmaceuticals, Inc. Anti-egfr antibodies
CA2803391C (en) 2010-06-22 2021-11-09 Neogenix Oncology, Inc. Npc1 antibodies that bind a muc5ac epitope
WO2012003472A1 (en) 2010-07-02 2012-01-05 Aveo Pharmaceuticals, Inc. Anti-notch1 antibodies
US8603478B2 (en) 2010-07-06 2013-12-10 Aveo Pharmaceuticals, Inc. Anti-RON antibodies
CA2803900A1 (en) 2010-07-09 2012-01-12 Exelixis, Inc. Combinations of kinase inhibitors for the treatment of cancer
AU2011279044B2 (en) 2010-07-15 2013-12-19 Adheron Therapeutics, Inc. Humanized antibodies targeting the EC1 domain of Cadherin-11 and related compositions and methods
JP2013536175A (en) 2010-07-16 2013-09-19 アブリンクス エン.ヴェー. Modified single domain antigen binding molecules and uses thereof
AU2011282476B2 (en) 2010-07-20 2015-08-20 Cephalon Australia Pty Ltd Anti-IL-23 heterodimer specific antibodies
EP2596025B1 (en) 2010-07-23 2018-06-20 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for cancer management targeting co-029
DK3029066T3 (en) 2010-07-29 2019-05-20 Xencor Inc ANTIBODIES WITH MODIFIED ISOELECTRIC ITEMS
EP2412724A1 (en) 2010-07-29 2012-02-01 Centre National de la Recherche Scientifique (C.N.R.S) Regulation of Glypican 4 activity to modulate the fate of stem cells and uses thereof
US9512199B2 (en) 2010-07-30 2016-12-06 Novartis Ag Fibronectin cradle molecules and libraries thereof
CA2806909C (en) 2010-07-30 2019-12-17 Ac Immune S.A. Safe and functional humanized antibodies
KR20130100118A (en) 2010-08-03 2013-09-09 아비에 인코포레이티드 Dual variable domain immunoglobulins and uses therof
US9051370B2 (en) * 2010-08-10 2015-06-09 Glycotope Gmbh Humanized EGFR antibodies
EP2420250A1 (en) 2010-08-13 2012-02-22 Universitätsklinikum Münster Anti-Syndecan-4 antibodies
EA201390242A1 (en) 2010-08-16 2013-07-30 Амген Инк. ANTIBODIES CONNECTING MYOSTATINS, COMPOSITIONS AND METHODS
NZ604510A (en) 2010-08-17 2013-10-25 Csl Ltd Dilutable biocidal compositions and methods of use
US9068006B2 (en) 2010-08-25 2015-06-30 President And Fellows Of Harvard College Glycated CD59 peptides, their preparation, and uses thereof
RU2013113225A (en) 2010-08-26 2014-10-10 Эббви Инк. IMMUNOGLOBULINS WITH TWO VARIABLE DOMAINS AND THEIR APPLICATION
US9963504B2 (en) 2010-09-02 2018-05-08 Vaccinex, Inc. Anti-CXCL13 antibodies and methods of using the same
ES2719624T3 (en) 2010-09-23 2019-07-11 Prec Biologics Inc Peptidomimetics of colon and pancreas cancer
KR20140016240A (en) 2010-09-27 2014-02-07 제스타겐, 에스.아. Compositions and methods for treating neoplasia
GB201016494D0 (en) * 2010-09-30 2010-11-17 Queen Mary Innovation Ltd Polypeptide
EP3219731A1 (en) 2010-10-01 2017-09-20 Oxford BioTherapeutics Ltd Anti-ror1 antibodies
US9066986B2 (en) 2010-10-01 2015-06-30 National Research Council Of Canada Anti-CEACAM6 antibodies and uses thereof
UY33679A (en) 2010-10-22 2012-03-30 Esbatech STABLE AND SOLUBLE ANTIBODIES
US9771416B2 (en) 2010-10-25 2017-09-26 National Research Council Of Canada Clostridium difficile-specific antibodies and uses thereof
EP2636736B1 (en) 2010-10-29 2016-03-23 Daiichi Sankyo Company, Limited Novel anti-dr5 antibody
EP2635674A4 (en) 2010-11-05 2014-11-05 Transbio Ltd Markers of endothelial progenitor cells and uses thereof
KR20130135869A (en) * 2010-11-10 2013-12-11 니폰 가야꾸 가부시끼가이샤 Anti single-strand type-iv collagen polypeptide antibody, and pharmaceutical, or agent for diagnosing, preventing or treating tumors, containing same
TWI629355B (en) 2010-11-17 2018-07-11 中外製藥股份有限公司 Multispecific antigen-binding molecule capable of replacing blood coagulation factor VIII
WO2012066129A1 (en) 2010-11-19 2012-05-24 Morphosys Ag A collection and methods for its use
AU2011329647B2 (en) 2010-11-19 2015-10-22 Eisai R&D Management Co., Ltd. Neutralizing anti-CCL20 antibodies
AU2011332810A1 (en) 2010-11-23 2013-06-13 Alderbio Holdings Llc Anti-IL-6 antibodies for the treatment of oral mucositis
KR20240025059A (en) 2010-11-30 2024-02-26 추가이 세이야쿠 가부시키가이샤 Cytotoxicity-inducing therapeutic agent
WO2012075111A1 (en) 2010-11-30 2012-06-07 Novartis Ag Uses of anti-cd40 antibodies in combination therapy for b cell-related cancers
EP2646468B1 (en) 2010-12-01 2018-07-25 AlderBio Holdings LLC Anti-ngf compositions and use thereof
US8440797B2 (en) 2010-12-06 2013-05-14 Dainippon Sumitomo Pharma Co., Ltd. Human monoclonal antibody
PT3461847T (en) 2010-12-06 2020-12-24 Seagen Inc Humanized antibodies to liv-1 and use of same to treat cancer
WO2012080769A1 (en) 2010-12-15 2012-06-21 INSERM (Institut National de la Santé et de la Recherche Médicale) Anti-cd277 antibodies and uses thereof
US20130273062A1 (en) 2010-12-22 2013-10-17 Orega Biotech Antibodies against human cd39 and use thereof
EP2471554A1 (en) 2010-12-28 2012-07-04 Hexal AG Pharmaceutical formulation comprising a biopharmaceutical drug
JOP20210044A1 (en) 2010-12-30 2017-06-16 Takeda Pharmaceuticals Co Anti-CD38 . antibody
JP5945282B2 (en) 2011-01-21 2016-07-05 セラノス, インコーポレイテッド System and method for maximizing sample usage
WO2012101125A1 (en) 2011-01-24 2012-08-02 INSERM (Institut National de la Santé et de la Recherche Médicale) Specific antibodies against human cxcl4 and uses thereof
AR084937A1 (en) 2011-01-28 2013-07-10 Sanofi Sa HUMAN ANTIBODIES AGAINST PCSK9 FOR USE IN TREATMENT METHODS BASED ON PARTICULAR DOSAGE REGIMES
CA3042620A1 (en) 2011-02-02 2012-11-29 Emory University Antagonism of the vip signaling pathway
JP2014510265A (en) 2011-02-02 2014-04-24 アムジェン インコーポレイテッド Methods and compositions for inhibition of IGF-IR
FR2971250A1 (en) * 2011-02-07 2012-08-10 Univ Nantes ANTI-GB3 ANTIBODIES USEFUL IN THE TREATMENT OF DISEASES ASSOCIATED WITH ANGIOGENESIS
WO2012107589A1 (en) 2011-02-11 2012-08-16 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment and prevention of hcv infections
EP2675485A4 (en) 2011-02-15 2014-10-15 Immunomedics Inc Anti-mucin antibodies for early detection and treatment of pancreatic cancer
WO2012110500A1 (en) 2011-02-15 2012-08-23 Vib Vzw Means and methods for improvement of synaptic dysfunction disorders
WO2012112842A2 (en) 2011-02-17 2012-08-23 The Government Of The United States Of America, As Represented By The Secretary, Department Of Health & Human Services Compositions and methods for treating poliovirus
WO2012110843A1 (en) 2011-02-18 2012-08-23 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for promoting fibrinolysis and thrombolysis
EA029300B1 (en) 2011-03-02 2018-03-30 Роше Гликарт Аг Antibody which binds membrane-bound human carcinoembryonic antigen, production and use thereof
US10139420B2 (en) 2011-03-09 2018-11-27 ISNERM (Institut National de la Sante et de la Recherche Medicale) Methods for treating vaso-occlusive crisis using non-modified annexin V
AU2012225246B2 (en) * 2011-03-10 2016-01-21 Omeros Corporation Generation of anti-FN14 monoclonal antibodies by ex-vivo accelerated antibody evolution
PT2683406T (en) 2011-03-11 2019-07-08 Beth Israel Deaconess Medical Ct Inc Anti-cd40 antibodies and uses thereof
PL2686347T3 (en) * 2011-03-16 2018-10-31 Argenx Bvba Antibodies to cd70
JP6196163B2 (en) 2011-03-17 2017-09-13 ミネルバ バイオテクノロジーズ コーポレーション Methods for producing pluripotent stem cells
KR20140018299A (en) 2011-03-30 2014-02-12 아블린쓰 엔.브이. Methods of treating immune disorders with single domain antibodies against tnf-alpha
SG193428A1 (en) 2011-03-31 2013-10-30 Inst Nat Sante Rech Med Antibodies directed against icos and uses thereof
US20140010886A1 (en) 2011-04-07 2014-01-09 Georgia Tech Research Corporation Compositions comprising saccharide binding moieties and methods for targeted therapy
SG194111A1 (en) 2011-04-07 2013-11-29 Amgen Inc Novel egfr binding proteins
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
US20140157443A1 (en) 2011-04-14 2014-06-05 St. Jude Children's Research Hospital Methods and compositions for detecting and modulating a novel mtor complex
US9062106B2 (en) 2011-04-27 2015-06-23 Abbvie Inc. Methods for controlling the galactosylation profile of recombinantly-expressed proteins
UA116189C2 (en) 2011-05-02 2018-02-26 Мілленніум Фармасьютікалз, Інк. COMPOSITION OF ANTI-α4β7 ANTIBODY
KR102493433B1 (en) 2011-05-02 2023-01-27 밀레니엄 파머슈티컬스 인코퍼레이티드 FORMULATION FOR ANTI-α4β7 ANTIBODY
RU2636038C2 (en) * 2011-05-04 2017-11-17 Омерос Корпорейшн Compositions for inhibition of masp-2-dependent complement activation
AU2012253896B2 (en) 2011-05-06 2016-09-22 The Government Of The United States Of America As Represented By The Secretary Of The Department Of Health And Human Services Recombinant immunotoxin targeting mesothelin
JOP20200043A1 (en) 2011-05-10 2017-06-16 Amgen Inc Ways to treat or prevent cholesterol disorders
CA2840175C (en) * 2011-05-19 2021-11-16 The Regents Of The University Of Michigan Integrin alpha-2 binding agents and use thereof to inhibit cancer cell proliferation
WO2012156532A1 (en) 2011-05-19 2012-11-22 INSERM (Institut National de la Santé et de la Recherche Médicale) Anti-human-her3 antibodies and uses thereof
EA034747B1 (en) 2011-05-20 2020-03-17 Олдербайо Холдингз Ллк Method of preventing or inhibiting photophobia or light aversion using anti-cgrp antibodies
CN108359008B (en) 2011-05-20 2022-03-29 H.伦德贝克公司 Use of anti-CGRP or anti-CGRP-R antibodies or antibody fragments for the treatment or prevention of chronic and acute forms of diarrhea
EA201891284A1 (en) 2011-05-20 2018-11-30 Олдербайо Холдингз Ллк ANTIBODY COMPOSITIONS AGAINST CGRP AND THEIR APPLICATION
KR102046666B1 (en) 2011-05-25 2019-11-19 이나뜨 파르마 Anti-kir antibodies for the treatment of inflammatory disorders
WO2012163848A1 (en) 2011-05-27 2012-12-06 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of crohn's disease
CN103687621A (en) * 2011-06-08 2014-03-26 印第安纳大学研究与技术公司 Monoclonal Antibodies and Antigens for Diagnosis and Treatment of Lung Diseases and Injuries
MX2013014388A (en) 2011-06-09 2014-08-21 Health Pseudomonas exotoxin a with less immunogenic t cell and/or b cell epitopes.
EP3150632B1 (en) 2011-06-10 2020-04-08 Her Majesty The Queen in right of Canada, as represented by the Minister of National Defence Anti-ricin antibodies and uses thereof
WO2012172102A1 (en) * 2011-06-17 2012-12-20 Novo Nordisk A/S Selective elimination of erosive cells
WO2012175692A1 (en) 2011-06-22 2012-12-27 INSERM (Institut National de la Santé et de la Recherche Médicale) Anti-axl antibodies and uses thereof
CA2839508A1 (en) 2011-06-22 2012-12-27 Inserm (Institut National De La Sante Et De La Recherche Medicale) Anti-axl antibodies and uses thereof
EP2726494B1 (en) 2011-06-28 2017-01-04 Whitehead Institute For Biomedical Research Using sortases to install click chemistry handles for protein ligation
UA114478C2 (en) 2011-06-28 2017-06-26 Берлін-Хемі Аг ANTIBODY THAT SPECIFICALLY Binds to BST1
CN103781493A (en) 2011-06-30 2014-05-07 霍夫曼-拉罗奇有限公司 Anti-c-met antibody formulations
EP2543679A1 (en) 2011-07-08 2013-01-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies for the treatment and prevention of thrombosis
EP2543677A1 (en) 2011-07-08 2013-01-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies for the treatment and prevention of thrombosis
EP2543678A1 (en) 2011-07-08 2013-01-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies for the treatment and prevention of thrombosis
LT2731677T (en) * 2011-07-11 2018-07-10 Glenmark Pharmaceuticals S.A. Antibodies that bind to ox40 and their uses
EP2734546A1 (en) 2011-07-18 2014-05-28 Amgen Inc. Apelin antigen-binding proteins and uses thereof
US20140308275A1 (en) 2011-07-27 2014-10-16 Inserm (Institut National De La Sante Et De La Recherche Medicale Methods for diagnosing and treating myhre syndrome
AR087305A1 (en) 2011-07-28 2014-03-12 Regeneron Pharma STABILIZED FORMULATIONS CONTAINING ANTI-PCSK9 ANTIBODIES, PREPARATION METHOD AND KIT
WO2013022855A1 (en) 2011-08-05 2013-02-14 Xencor, Inc. Antibodies with modified isoelectric points and immunofiltering
US20140271680A1 (en) 2011-08-12 2014-09-18 Universite Paris-Est Creteil Val De Marne Methods and pharmaceutical compositions for treatment of pulmonary hypertension
EP3348575A1 (en) 2011-08-16 2018-07-18 Emory University Jaml specific binding agents, antibodies, and uses related thereto
EP2744931B1 (en) 2011-08-18 2018-05-02 Affinity Biosciences Pty Ltd Soluble polypeptides
MY170725A (en) 2011-09-09 2019-08-27 Univ Osaka Dengue-virus serotype neutralizing antibodies
US20140170735A1 (en) 2011-09-25 2014-06-19 Elizabeth A. Holmes Systems and methods for multi-analysis
US8435738B2 (en) 2011-09-25 2013-05-07 Theranos, Inc. Systems and methods for multi-analysis
US9268915B2 (en) 2011-09-25 2016-02-23 Theranos, Inc. Systems and methods for diagnosis or treatment
US9632102B2 (en) 2011-09-25 2017-04-25 Theranos, Inc. Systems and methods for multi-purpose analysis
US9619627B2 (en) 2011-09-25 2017-04-11 Theranos, Inc. Systems and methods for collecting and transmitting assay results
US8840838B2 (en) 2011-09-25 2014-09-23 Theranos, Inc. Centrifuge configurations
US9664702B2 (en) 2011-09-25 2017-05-30 Theranos, Inc. Fluid handling apparatus and configurations
US8475739B2 (en) 2011-09-25 2013-07-02 Theranos, Inc. Systems and methods for fluid handling
EP3301110A1 (en) 2011-09-16 2018-04-04 The USA, as represented by The Secretary, Department of Health and Human Services Pseudomonas exotoxin a with less immunogenic b cell epitopes
ITMI20111669A1 (en) * 2011-09-16 2013-03-17 St Microelectronics Srl GRADUAL IGNITION IN A COMBUSTION ENGINE IGNITION SYSTEM
MX2014003313A (en) 2011-09-23 2014-07-09 Amgen Res Munich Gmbh Bispecific binding molecules for 5t4 and cd3.
US9810704B2 (en) 2013-02-18 2017-11-07 Theranos, Inc. Systems and methods for multi-analysis
US9250229B2 (en) 2011-09-25 2016-02-02 Theranos, Inc. Systems and methods for multi-analysis
US10012664B2 (en) 2011-09-25 2018-07-03 Theranos Ip Company, Llc Systems and methods for fluid and component handling
EA035018B1 (en) 2011-09-30 2020-04-17 Тева Фармасьютикал Австралия Пти Лтд. ANTIBODIES AGAINST TL1a AND USES THEREOF
WO2013050441A1 (en) 2011-10-05 2013-04-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical composition for inhibiting or preventing platelet aggregation
US10851178B2 (en) 2011-10-10 2020-12-01 Xencor, Inc. Heterodimeric human IgG1 polypeptides with isoelectric point modifications
JP6310394B2 (en) 2011-10-10 2018-04-11 ゼンコア インコーポレイテッド Methods for purifying antibodies
TWI589299B (en) 2011-10-11 2017-07-01 再生元醫藥公司 Composition for treating rheumatoid arthritis and method of use thereof
CA2851284A1 (en) 2011-10-13 2013-04-18 The Regents Of The University Of California Treatment of breast cancer with companion diagnostic
JP6466170B2 (en) 2011-10-17 2019-02-06 ミネルバ バイオテクノロジーズ コーポレーション Medium for stem cell growth and induction
EP2768857B1 (en) * 2011-10-19 2020-01-01 NovImmune SA Methods of purifying antibodies
US20140248284A1 (en) 2011-10-20 2014-09-04 Inserm (Institut National De La Sante Et De La Recherche Medicale) Methods for the detection and the treatment of cardiac remodeling
MX360741B (en) 2011-10-28 2018-11-14 Teva Pharmaceuticals Australia Pty Ltd Polypeptide constructs and uses thereof.
PT2771031T (en) 2011-10-28 2018-05-24 Prothena Biosciences Ltd Humanized antibodies that recognize alpha-synuclein
EP2771351B1 (en) 2011-10-28 2017-06-14 Patrys Limited Pat-lm1 epitopes and methods for using same
TWI679212B (en) 2011-11-15 2019-12-11 美商安進股份有限公司 Binding molecules for e3 of bcma and cd3
WO2013078122A1 (en) 2011-11-22 2013-05-30 President And Fellows Of Harvard College Diabetes diagnosis through the detection of glycated proteins in urine
CN103998466A (en) 2011-11-22 2014-08-20 国家医疗保健研究所 Methods and pharmaceutical compositions for reducing airway hyperresponse
EP2785365B1 (en) 2011-11-28 2017-07-19 Institut National de la Sante et de la Recherche Medicale (INSERM) Pharmaceutical composition for use in the treatment of dysfunction associated with aging
US9988439B2 (en) 2011-12-23 2018-06-05 Nicholas B. Lydon Immunoglobulins and variants directed against pathogenic microbes
US9764038B2 (en) 2011-12-23 2017-09-19 Innate Pharma Enzymatic conjugation of antibodies
WO2013096948A1 (en) 2011-12-23 2013-06-27 Lydon Nicholas B Immunoglobulins and variants directed against pathogenic microbes
CN104159920A (en) 2011-12-30 2014-11-19 艾伯维公司 Dual specific binding proteins directed against il-13 and/or il-17
JP6352812B6 (en) 2012-01-20 2018-08-08 ジェンザイム・コーポレーション Anti-CXCR3 antibody
KR102246217B1 (en) 2012-01-27 2021-04-29 프로테나 바이오사이언시즈 리미티드 Humanized antibodies that recognize alpha-synuclein
HRP20200964T1 (en) * 2012-02-13 2020-10-30 Agency For Science, Technology And Research IL-ß NEUTRALIZING HUMAN MONOCLONAL ANTIBODIES
WO2013123114A2 (en) 2012-02-16 2013-08-22 Santarus, Inc. Antibody formulations
SG11201405305PA (en) * 2012-02-29 2014-09-26 Gilead Biologics Inc Antibodies to matrix metalloproteinase 9
EP2820047B1 (en) 2012-03-01 2018-04-25 Amgen Research (Munich) GmbH Long life polypeptide binding molecules
AU2013225812B2 (en) 2012-03-02 2017-11-30 Vaccinex, Inc. Methods for the treatment of B cell-mediated inflammatory diseases
US9592289B2 (en) 2012-03-26 2017-03-14 Sanofi Stable IgG4 based binding agent formulations
MY168077A (en) 2012-03-27 2018-10-11 Green Cross Corp Epitopes of epidermal growth factor receptor surface antigen and use thereof
US10385395B2 (en) 2012-04-11 2019-08-20 The Regents Of The University Of California Diagnostic tools for response to 6-thiopurine therapy
ES2588484T3 (en) * 2012-04-13 2016-11-03 Rottapharm Biotech S.R.L. Anti-ADAMTS-5 antibody, derivatives and uses thereof
US9334319B2 (en) 2012-04-20 2016-05-10 Abbvie Inc. Low acidic species compositions
WO2013158273A1 (en) 2012-04-20 2013-10-24 Abbvie Inc. Methods to modulate c-terminal lysine variant distribution
US9067990B2 (en) 2013-03-14 2015-06-30 Abbvie, Inc. Protein purification using displacement chromatography
EA039663B1 (en) 2012-05-03 2022-02-24 Амген Инк. Use of an anti-pcsk9 antibody for lowering serum cholesterol ldl and treating cholesterol related disorders
WO2013169734A1 (en) 2012-05-07 2013-11-14 Amgen Inc. Anti-erythropoietin antibodies
US20130309223A1 (en) 2012-05-18 2013-11-21 Seattle Genetics, Inc. CD33 Antibodies And Use Of Same To Treat Cancer
US20150140010A1 (en) 2012-05-22 2015-05-21 Inserm 9Institut National De La Sante Et De La R- Echerche Medicale) Methods for diagnosing and treating focal segmental glomerulosclerosis
WO2013176754A1 (en) 2012-05-24 2013-11-28 Abbvie Inc. Novel purification of antibodies using hydrophobic interaction chromatography
US10502737B2 (en) 2012-05-25 2019-12-10 The University Of Vermont And State Agriculture College Anti-thrombotic compositions and methods for assaying platelet reactivity and treatment selection
HK1204557A1 (en) * 2012-05-31 2015-11-27 Sorrento Therapeutics, Inc. Antigen binding proteins that bind pd-l1
EP3967323A3 (en) 2012-06-06 2022-05-04 Bionor Immuno AS Hiv vaccine
KR101566539B1 (en) 2012-06-08 2015-11-05 국립암센터 Novel epitope for switching to Th2 cell and use thereof
BR112014031028A2 (en) 2012-06-11 2017-08-15 Amgen Inc ANTIGEN-BINDING PROTEIN ISOLATED, NUCLLEIC ACID ISOLATED, EXPRESSION VECTOR, HOST CELL, METHOD FOR PRODUCING AN ANTIGEN-BINDING PROTEIN, COMPOSITION, METHOD FOR REDUCING OR BLOCKING THE ACTIVITY OF MYOSTATIN, ACTIVIN A OR GDF-11, METHOD FOR ENHANCEMENT MUSCLE MASS FIRMNESS OR INCREASE THE MUSCLE MASS FIRMITY TO FAT MASS RATIO IN AN INDIVIDUAL IN NEED OF THE MENTIONED TREATMENT, METHOD FOR TREATMENT OR PREVENTION OF A HARMFUL DISEASE OF MUSCLE IN AN INDIVIDUAL SUFFERING FROM THE SAID DISORDER AND DUAL ANTAGONIST RECEPTOR ANTIBODY
WO2013186613A1 (en) * 2012-06-14 2013-12-19 Nasvax Ltd. Humanized antibodies to cluster of differentiation 3 (cd3)
US10301389B2 (en) * 2012-06-15 2019-05-28 Imaginab, Inc. Antigen binding constructs to CD3
US9890215B2 (en) 2012-06-22 2018-02-13 King's College London Vista modulators for diagnosis and treatment of cancer
WO2014039983A1 (en) 2012-09-07 2014-03-13 The Trustees Of Dartmouth College Vista modulators for diagnosis and treatment of cancer
TWI705073B (en) 2012-06-22 2020-09-21 達特茅斯學院基金會 Novel vista-ig constructs and the use of vista-ig for treatment of autoimmune, allergic and inflammatory disorders
WO2014001368A1 (en) 2012-06-25 2014-01-03 Orega Biotech Il-17 antagonist antibodies
WO2014004549A2 (en) 2012-06-27 2014-01-03 Amgen Inc. Anti-mesothelin binding proteins
AU2012385228B2 (en) 2012-07-12 2016-10-06 Hangzhou Dac Biotech Co., Ltd Conjugates of cell binding molecules with cytotoxic agents
AU2013288641B2 (en) 2012-07-13 2017-07-06 Roche Glycart Ag Bispecific anti-VEGF/anti-ANG-2 antibodies and their use in the treatment of ocular vascular diseases
EP2872894B1 (en) 2012-07-13 2019-04-17 Innate Pharma Screening of conjugated antibodies
WO2014013005A1 (en) 2012-07-18 2014-01-23 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for preventing and treating chronic kidney disease (ckd)
US20150175979A1 (en) 2012-07-23 2015-06-25 La Jolla Institute For Allergy And Immunology Ptprs and proteoglycans in autoimmune disease
US9382329B2 (en) 2012-08-14 2016-07-05 Ibc Pharmaceuticals, Inc. Disease therapy by inducing immune response to Trop-2 expressing cells
WO2014028939A2 (en) 2012-08-17 2014-02-20 California Institute Of Technology Targeting phosphofructokinase and its glycosylation form for cancer
HK1211981A1 (en) 2012-09-02 2016-06-03 Abbvie Inc. Methods to control protein heterogeneity
US9512214B2 (en) 2012-09-02 2016-12-06 Abbvie, Inc. Methods to control protein heterogeneity
WO2014033327A1 (en) 2012-09-03 2014-03-06 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies directed against icos for treating graft-versus-host disease
TWI660972B (en) 2012-09-10 2019-06-01 愛爾蘭商尼歐托普生物科學公司 Anti-mcam antibodies and associated methods of use
ES2743423T3 (en) 2012-10-03 2020-02-19 Philogen Spa Conjugated antibodies for use in the treatment of an inflammatory bowel disease
UA118441C2 (en) 2012-10-08 2019-01-25 Протена Біосаєнсиз Лімітед Antibodies recognizing alpha-synuclein
US9309318B2 (en) 2012-10-17 2016-04-12 Amgen, Inc. Compositions relating to anti-IL-21 receptor antibodies
IN2015DN04087A (en) 2012-10-24 2015-10-09 Nat Res Council Canada
CN104245736B (en) * 2012-10-26 2016-12-21 和元生物技术(上海)股份有限公司 The Humanized monoclonal antibodies of anti-human death receptor 5 extracellular region
EP2911681A1 (en) 2012-10-26 2015-09-02 Institut National de la Santé et de la Recherche Médicale (INSERM) Lyve-1 antagonists for preventing or treating a pathological condition associated with lymphangiogenesis
WO2014071074A2 (en) 2012-11-01 2014-05-08 Abbvie Inc. Anti-vegf/dll4 dual variable domain immunoglobulins and uses thereof
JP6445446B2 (en) 2012-11-08 2018-12-26 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 the treatment of bone metastases
EP3564259A3 (en) 2012-11-09 2020-02-12 Innate Pharma Recognition tags for tgase-mediated conjugation
WO2014078866A2 (en) 2012-11-19 2014-05-22 Xencor, Inc. Engineered immunoglobulins with extended in vivo half-life
PL2922875T3 (en) 2012-11-20 2017-08-31 Sanofi Anti-ceacam5 antibodies and uses thereof
ES2701076T3 (en) 2012-11-24 2019-02-20 Hangzhou Dac Biotech Co Ltd Hydrophilic linkers and their uses for the conjugation of drugs to molecules that bind to cells
KR20150094658A (en) 2012-12-10 2015-08-19 바이오젠 엠에이 인코포레이티드 Anti-blood dendritic cell antigen 2 antibodies and uses thereof
EP2935330B1 (en) 2012-12-19 2019-04-24 Aveo Pharmaceuticals, Inc. Anti-notch3 antibodies
CN105073133B (en) 2012-12-21 2021-04-20 Aveo制药公司 Anti-GDF15 antibody
MX2015008534A (en) 2012-12-26 2017-07-04 Oncosynergy Inc ANTI- INTEGRIN ß1 ANTIBODY COMPOSITIONS AND METHODS OF USE THEREOF.
JP6441232B2 (en) 2012-12-27 2018-12-19 サノフイSanofi Anti-LAMP1 antibodies and antibody drug conjugates and uses thereof
CA2896723C (en) 2012-12-28 2024-02-13 Precision Biologics, Inc. Humanized monoclonal antibodies and methods of use for the diagnosis and treatment of colon and pancreas cancer
US10717965B2 (en) 2013-01-10 2020-07-21 Gloriana Therapeutics, Inc. Mammalian cell culture-produced neublastin antibodies
US10487155B2 (en) 2013-01-14 2019-11-26 Xencor, Inc. Heterodimeric proteins
US9701759B2 (en) 2013-01-14 2017-07-11 Xencor, Inc. Heterodimeric proteins
US9605084B2 (en) 2013-03-15 2017-03-28 Xencor, Inc. Heterodimeric proteins
DK2943511T3 (en) 2013-01-14 2019-10-21 Xencor Inc NEW HETERODIMERIC PROTEINS
US11053316B2 (en) 2013-01-14 2021-07-06 Xencor, Inc. Optimized antibody variable regions
US10968276B2 (en) 2013-03-12 2021-04-06 Xencor, Inc. Optimized anti-CD3 variable regions
US10131710B2 (en) 2013-01-14 2018-11-20 Xencor, Inc. Optimized antibody variable regions
WO2014113510A1 (en) 2013-01-15 2014-07-24 Xencor, Inc. Rapid clearance of antigen complexes using novel antibodies
KR102204127B1 (en) 2013-02-01 2021-01-20 키라 바이오테크 피티와이 리미티드 Anti-cd83 antibodies and use thereof
EP2951589A1 (en) 2013-02-01 2015-12-09 INSERM - Institut National de la Santé et de la Recherche Médicale Methods for predicting and preventing metastasis in triple negative breast cancers
CN105431455A (en) 2013-02-01 2016-03-23 圣塔玛丽亚生物疗法公司 Administration of Anti-Activin A Compounds to Subjects
CN117843785A (en) 2013-02-07 2024-04-09 Csl有限公司 IL-11R binding protein and its application
AU2013205589A1 (en) 2013-03-08 2014-09-25 Vaccinex, Inc. Anti-CXCL13 antibodies and associated epitope sequences
ES2858472T3 (en) 2013-03-11 2021-09-30 Amgen Inc Protein formulations
WO2014143205A1 (en) 2013-03-12 2014-09-18 Abbvie Inc. Human antibodies that bind human tnf-alpha and methods of preparing the same
WO2014165115A1 (en) 2013-03-12 2014-10-09 Decimmune Therapeutics, Inc. Humanized anti-n2 antibodies
KR102313513B1 (en) 2013-03-13 2021-10-15 프로테나 바이오사이언시즈 리미티드 Tau immunotherapy
CA2906688A1 (en) 2013-03-14 2014-09-25 Parkash S. Gill Cancer treatment using antibodies that bind cell surface grp78
WO2014151878A2 (en) 2013-03-14 2014-09-25 Abbvie Inc. Methods for modulating protein glycosylation profiles of recombinant protein therapeutics using monosaccharides and oligosacharides
AU2014236135A1 (en) 2013-03-14 2015-09-10 Thomas Jefferson University Androgen receptor down-regulating agents and uses thereof
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
WO2014159579A1 (en) 2013-03-14 2014-10-02 Abbvie Inc. MUTATED ANTI-TNFα ANTIBODIES AND METHODS OF THEIR USE
AR095374A1 (en) 2013-03-15 2015-10-14 Amgen Res Munich Gmbh UNION MOLECULES FOR BCMA AND CD3
TW201512219A (en) 2013-03-15 2015-04-01 Abbvie Inc Dual specific binding proteins directed against IL-1[beta] and/or IL-17
US10611824B2 (en) 2013-03-15 2020-04-07 Innate Pharma Solid phase TGase-mediated conjugation of antibodies
JP6469644B2 (en) 2013-03-15 2019-02-13 アムジエン・インコーポレーテツド Methods and compositions related to anti-CCR7 antigen binding proteins
AU2014236986A1 (en) 2013-03-15 2015-09-03 Biogen Ma Inc. Treatment and prevention of acute kidney injury using anti-alpha v beta 5 antibodies
US10519242B2 (en) 2013-03-15 2019-12-31 Xencor, Inc. Targeting regulatory T cells with heterodimeric proteins
CA2906096C (en) * 2013-03-15 2022-03-15 Omeros Corporation Methods of generating bioactive peptide-bearing antibodies and compositions comprising the same
KR102211176B1 (en) 2013-03-15 2021-02-01 젠코어 인코포레이티드 Heterodimeric proteins
WO2014143739A2 (en) 2013-03-15 2014-09-18 Biogen Idec Ma Inc. Anti-alpha v beta 6 antibodies and uses thereof
US10035859B2 (en) 2013-03-15 2018-07-31 Biogen Ma Inc. Anti-alpha V beta 6 antibodies and uses thereof
US9260527B2 (en) 2013-03-15 2016-02-16 Sdix, Llc Anti-human CXCR4 antibodies and methods of making same
US10858417B2 (en) 2013-03-15 2020-12-08 Xencor, Inc. Heterodimeric proteins
US10544187B2 (en) 2013-03-15 2020-01-28 Xencor, Inc. Targeting regulatory T cells with heterodimeric proteins
US10106624B2 (en) 2013-03-15 2018-10-23 Xencor, Inc. Heterodimeric proteins
US9452228B2 (en) 2013-04-01 2016-09-27 Immunomedics, Inc. Antibodies reactive with an epitope located in the N-terminal region of MUC5AC comprising cysteine-rich subdomain 2 (Cys2)
EP2981554B1 (en) 2013-04-01 2020-07-29 The Regents of The University of California Methods and compositions for treating and preventing disease associated with avb8 integrin
PT2992013T (en) 2013-04-29 2020-03-05 Teva Pharmaceuticals Australia Pty Ltd Anti-cd38 antibodies and fusions to attenuated interferon alpha-2b
US11117975B2 (en) 2013-04-29 2021-09-14 Teva Pharmaceuticals Australia Pty Ltd Anti-CD38 antibodies and fusions to attenuated interferon alpha-2B
EP2994530A4 (en) 2013-05-10 2016-11-16 Whitehead Biomedical Inst PROTEIN MODIFICATION OF LIVING CELLS USING SORTASE
WO2014183885A1 (en) 2013-05-17 2014-11-20 INSERM (Institut National de la Santé et de la Recherche Médicale) Antagonist of the btla/hvem interaction for use in therapy
WO2014192915A1 (en) 2013-05-30 2014-12-04 国立大学法人 千葉大学 Inflammatory disease treatment composition including anti-myosin regulatory light-chain polypeptide antibody
WO2014205187A1 (en) 2013-06-20 2014-12-24 The United States Of America, As Represented By The Secretary, Department Of Health And Human Services Cytolethal distending toxin subunit b conjugated or fused to bacillus anthracis toxin lethal factor
WO2014202773A1 (en) 2013-06-20 2014-12-24 Innate Pharma Enzymatic conjugation of polypeptides
WO2014202775A1 (en) 2013-06-21 2014-12-24 Innate Pharma Enzymatic conjugation of polypeptides
CN105492016B (en) 2013-06-25 2024-12-06 瓦西尼斯公司 Application of semaphorin-4D inhibitory molecules combined with immunomodulatory therapy to inhibit tumor growth and metastasis
EP3013422A1 (en) 2013-06-28 2016-05-04 Amgen Inc. Methods for treating homozygous familial hypercholesterolemia
KR102131371B1 (en) * 2013-07-02 2020-07-08 삼성전자주식회사 Ang-2 specific antibodies and uses thereof
US10513555B2 (en) 2013-07-04 2019-12-24 Prothena Biosciences Limited Antibody formulations and methods
WO2015001082A1 (en) 2013-07-05 2015-01-08 INSERM (Institut National de la Santé et de la Recherche Médicale) Novel alternative splice transcripts for mhc class i related chain alpha (mica) and uses thereof
US9951131B2 (en) 2013-07-12 2018-04-24 Prothena Biosciences Limited Antibodies that recognize IAPP
WO2015004632A1 (en) 2013-07-12 2015-01-15 Neotope Biosciences Limited Antibodies that recognize iapp
WO2015007337A1 (en) 2013-07-19 2015-01-22 Bionor Immuno As Method for the vaccination against hiv
KR102062784B1 (en) 2013-07-23 2020-01-07 바이오콘 리미티드 Methods for controlling fucosylation levels in proteins
US9902767B2 (en) * 2013-07-29 2018-02-27 Samsung Electronics Co., Ltd. Method of blocking vascular leakage using an anti-ANG2 antibody
KR102146845B1 (en) * 2013-07-30 2020-08-21 삼성전자주식회사 Angiopoietin-2 specific antibodies and uses thereof
US10227370B2 (en) 2013-08-02 2019-03-12 California Institute Of Technology Heparan sulfate/heparin mimetics with anti-chemokine and anti-inflammatory activity
AU2014298040B2 (en) 2013-08-02 2018-04-26 Pfizer Inc. Anti-CXCR4 antibodies and antibody-drug conjugates
US9770461B2 (en) 2013-08-02 2017-09-26 California Institute Of Technology Tailored glycopolymers as anticoagulant heparin mimetics
KR20160039682A (en) 2013-08-07 2016-04-11 아스튜트 메디컬 인코포레이티드 Assays for timp2 having improved performance in biological samples
EP4137519A1 (en) 2013-08-09 2023-02-22 The Trustees Of The University Of Pennsylvania Fusion protein comprising ifn-gamma and anti-erbb antibody for the treatment of cancers
EP3916081A3 (en) 2013-08-19 2022-03-23 Biogen MA Inc. Control of protein glycosylation by culture medium supplementation and cell culture process parameters
AU2014312031A1 (en) 2013-08-29 2016-03-24 City Of Hope Cell penetrating conjugates and methods of use thereof
AU2013399485B2 (en) 2013-09-02 2019-07-25 Hangzhou Dac Biotech Co., Ltd Novel cytotoxic agents for conjugation of drugs to cell binding molecule
US11545241B1 (en) 2013-09-07 2023-01-03 Labrador Diagnostics Llc Systems and methods for analyte testing and data management
ES2819217T3 (en) 2013-09-08 2021-04-15 Kodiak Sciences Inc Conjugates of zwitterionic polymers and factor VIII
BR112016005408B1 (en) 2013-09-13 2023-03-21 Beigene Switzerland Gmbh ANTI-PD1, F(AB) OR F(AB)2 ANTIBODIES AND REFERRED USE ANTIBODY FOR TREATMENT OF CANCER OR VIRAL INFECTION
WO2015048330A2 (en) 2013-09-25 2015-04-02 Biogen Idec Ma Inc. On-column viral inactivation methods
EP3757130A1 (en) 2013-09-26 2020-12-30 Costim Pharmaceuticals Inc. Methods for treating hematologic cancers
KR102441231B1 (en) 2013-09-27 2022-09-06 추가이 세이야쿠 가부시키가이샤 Method for preparing polypeptide heteromultimers
US9598667B2 (en) 2013-10-04 2017-03-21 Abbvie Inc. Use of metal ions for modulation of protein glycosylation profiles of recombinant proteins
WO2015051199A2 (en) 2013-10-06 2015-04-09 The United States Of America, As Represented By The Secretary, Department Of Health And Human Services Modified pseudomonas exotoxin a
WO2015054441A1 (en) * 2013-10-09 2015-04-16 Research Development Foundation Monoclonal olfml-3 antibodies and uses thereof
PE20160561A1 (en) 2013-10-11 2016-06-03 Oxford Biotherapeutics Ltd CONJUGATED ANTIBODIES AGAINST LY75 FOR THE TREATMENT OF CANCER
US8946395B1 (en) 2013-10-18 2015-02-03 Abbvie Inc. Purification of proteins using hydrophobic interaction chromatography
US9085618B2 (en) 2013-10-18 2015-07-21 Abbvie, Inc. Low acidic species compositions and methods for producing and using the same
US9181337B2 (en) 2013-10-18 2015-11-10 Abbvie, Inc. Modulated lysine variant species compositions and methods for producing and using the same
NZ630892A (en) 2013-10-21 2016-03-31 Vaccinex Inc Use of semaphorin-4d binding molecules for treating neurodegenerative disorders
BR112016010106A2 (en) 2013-11-06 2017-12-05 Astute Medical Inc best performing igfbp7 assays on biological samples
CA2929386C (en) 2013-11-07 2023-01-03 Inserm (Institut National De La Sante Et De La Recherche Medicale) Neuregulin allosteric anti-her3 antibody
JP2016538286A (en) 2013-11-15 2016-12-08 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 treating pancreatic cancer
US20150139988A1 (en) 2013-11-15 2015-05-21 Abbvie, Inc. Glycoengineered binding protein compositions
US11191832B2 (en) 2013-11-19 2021-12-07 Prothena Biosciences Limited Monitoring immunotherapy of Lewy body disease from constipation symptoms
TR201900665T4 (en) 2013-11-28 2019-02-21 B Creative Sweden Ab Treatment method of diabetic nephropathy.
US9321834B2 (en) 2013-12-05 2016-04-26 Leidos, Inc. Anti-malarial compositions
SG11201604565WA (en) 2013-12-06 2016-07-28 Us Health Thymic stromal lymphopoietin receptor-specific chimeric antigen receptors and methods using same
KR20160097294A (en) 2013-12-09 2016-08-17 뉴욕 유니버시티 Compositions and methods for phagocyte delivery of anti-staphylococcal agents
MX370449B (en) 2013-12-12 2019-12-13 Shanghai hengrui pharmaceutical co ltd Pd-1 antibody, antigen-binding fragment thereof, and medical application thereof.
CN105979965B (en) 2013-12-18 2021-07-09 杰特有限公司 Method of treating wounds
WO2015095809A1 (en) 2013-12-20 2015-06-25 Biogen Idec Ma Inc. Use of perfusion seed cultures to improve biopharmaceutical fed-batch production capacity and product quality
SG10201805933TA (en) 2013-12-24 2018-08-30 Janssen Pharmaceutica Nv Anti-vista antibodies and fragments
US11014987B2 (en) 2013-12-24 2021-05-25 Janssen Pharmaceutics Nv Anti-vista antibodies and fragments, uses thereof, and methods of identifying same
JOP20200094A1 (en) 2014-01-24 2017-06-16 Dana Farber Cancer Inst Inc Antibody Molecules of PD-1 and Their Uses
KR102206029B1 (en) * 2014-01-27 2021-01-20 삼성전자주식회사 Antibody specifically binding to Ang-2 and use thereof
JOP20200096A1 (en) 2014-01-31 2017-06-16 Children’S Medical Center Corp Antibody molecules to tim-3 and uses thereof
WO2015124570A1 (en) 2014-02-18 2015-08-27 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical composition for the treatment of influenza a virus infection
DK3108255T3 (en) 2014-02-18 2020-11-09 Inst Nat Sante Rech Med PROCEDURES AND PHARMACEUTICAL COMPOSITIONS FOR THE TREATMENT OF DISEASES MEDIATED BY NRP-1 / OBR COMPLEX SIGNAL ROUTE
CA2938919C (en) 2014-02-28 2020-12-29 Hangzhou Dac Biotech Co., Ltd Charged linkers and their uses for conjugation
CN106536555B (en) 2014-03-06 2019-10-18 加拿大国家研究委员会 Insulin-like growth factor 1 receptor specific antibody and use thereof
JP6541235B2 (en) 2014-03-06 2019-07-10 ナショナル リサーチ カウンシル オブ カナダ Insulin-like growth factor 1 receptor specific antibodies and their use
KR102355310B1 (en) 2014-03-06 2022-01-24 내셔날 리서치 카운실 오브 캐나다 Insulin-like growth factor 1 receptor-specific antibodies and uses thereof
KR20160131073A (en) 2014-03-12 2016-11-15 프로테나 바이오사이언시즈 리미티드 Anti-laminin4 antibodies specific for lg4-5
TW201623331A (en) 2014-03-12 2016-07-01 普羅帝納生物科學公司 Anti-MCAM antibodies and associated methods of use
US10407506B2 (en) * 2014-03-12 2019-09-10 Prothena Biosciences Limited Anti-MCAM antibodies and associated methods of use
EP3116906A1 (en) 2014-03-12 2017-01-18 Prothena Biosciences Limited Anti-laminin4 antibodies specific for lg1-3
KR20170052526A (en) 2014-03-13 2017-05-12 프로테나 바이오사이언시즈 리미티드 Combination treatment for multiple sclerosis
EA201691765A1 (en) 2014-03-14 2016-12-30 Новартис Аг ANTIBODY MOLECULES AGAINST LAG-3 AND THEIR APPLICATIONS
KR102473544B1 (en) * 2014-03-17 2022-12-01 미쓰비시 타나베 파마 코퍼레이션 Antibody-fynomer conjugates
WO2015140351A1 (en) 2014-03-21 2015-09-24 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for enhancing myelination
EP3122869B2 (en) 2014-03-24 2022-08-10 Biogen MA Inc. Methods for overcoming glutamine deprivation during mammalian cell culture
BR112016022385A2 (en) 2014-03-28 2018-06-19 Xencor, Inc specific antibodies that bind to cd38 and cd3
US10562973B2 (en) 2014-04-08 2020-02-18 Prothena Bioscience Limited Blood-brain barrier shuttles containing antibodies recognizing alpha-synuclein
MX384635B (en) 2014-04-16 2025-03-14 Biosimilars Newco Ltd Stable protein formulations comprising a molar excess of sorbitol
WO2015158851A1 (en) 2014-04-16 2015-10-22 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies for the prevention or the treatment of bleeding episodes
JP2017518737A (en) 2014-04-21 2017-07-13 ミレニアム ファーマシューティカルズ, インコーポレイテッドMillennium Pharmaceuticals, Inc. Anti-pSYK antibody molecules and their use for SYK targeted therapeutics
HUE053287T2 (en) 2014-04-30 2021-06-28 Pfizer Antibody-drug conjugates against PTK-7
UA119352C2 (en) 2014-05-01 2019-06-10 Тева Фармасьютикалз Острейліа Пті Лтд COMBINATION OF LENALIDOMIDE OR POMALIDOMIDE AND STRUCTURES OF ANTI-CD38 ANTIBODY-ATHENED INTERPHERONE ALPHA-2B AND METHOD OF TREATMENT38
WO2015176010A1 (en) 2014-05-15 2015-11-19 The United States Of America, As Represented By The Secretary, Departmentof Health & Human Services Treatment or prevention of an intestinal disease or disorder
EP3146081B1 (en) 2014-05-19 2020-10-28 The Johns Hopkins University Methods for identifying androgen receptor splice variants in subjects having castration resistant prostate cancer
KR102349370B1 (en) 2014-05-26 2022-01-10 삼성전자주식회사 Humanized or Affinity-matured Anti ANG-2 antibody and uses thereof
CN107073109B (en) 2014-06-11 2021-08-06 凯西·A·格林 Use of VISTA agonists and antagonists to inhibit or enhance humoral immunity
MX2016015785A (en) 2014-06-18 2017-04-25 Medimmune Llc Cell culture methods and media comprising n-acetylcysteine.
AU2015276800B2 (en) 2014-06-20 2021-03-04 Aveo Pharmaceuticals, Inc. Treatment of chronic kidney disease and other renal dysfunction using a GDF15 modulator
WO2015196142A1 (en) 2014-06-20 2015-12-23 Aveo Pharmaceuticals, Inc. Treatment of congestive heart failure and other cardiac dysfunction using a gdf15 modulator
US9840553B2 (en) 2014-06-28 2017-12-12 Kodiak Sciences Inc. Dual PDGF/VEGF antagonists
US10414814B2 (en) 2014-07-03 2019-09-17 City Of Hope Tumor-selective CTLA-4 antagonists
KR102130600B1 (en) 2014-07-03 2020-07-08 베이진 엘티디 Anti-PD-L1 Antibodies and Their Use as Therapeutics and Diagnostics
EP3166688B1 (en) 2014-07-08 2024-08-21 New York University Tau imaging ligands and their uses in the diagnosis and treatment of tauopathy
NZ728688A (en) 2014-07-22 2023-06-30 Cb Therapeutics Inc Anti-pd-1 antibodies
WO2016014984A1 (en) 2014-07-24 2016-01-28 Xencor, Inc. Rapid clearance of antigen complexes using novel antibodies
AR101400A1 (en) 2014-07-31 2016-12-14 Amgen Res Munich Gmbh INDIVIDUAL CHAIN INDIVIDUAL CHAIN ANTIBODY CONSTRUCTION WITH IMPROVED FABRIC DISTRIBUTION
AU2015294834B2 (en) 2014-07-31 2021-04-29 Amgen Research (Munich) Gmbh Optimized cross-species specific bispecific single chain antibody constructs
UY36245A (en) 2014-07-31 2016-01-29 Amgen Res Munich Gmbh ANTIBODY CONSTRUCTS FOR CDH19 AND CD3
EP3177649B1 (en) 2014-08-05 2024-02-28 Apollomics Inc. Anti-pd-l1 antibodies
WO2016026978A1 (en) 2014-08-22 2016-02-25 Universite Nice Sophia Antipolis Methods and pharmaceutical compositions for treating drug addiction
US10391168B1 (en) 2014-08-22 2019-08-27 University Of Bern Anti-CD70 combination therapy
EP3186393A4 (en) 2014-08-25 2018-01-10 The Johns Hopkins University Methods and compositions related to prostate cancer therapeutics
US20160075772A1 (en) 2014-09-12 2016-03-17 Regeneron Pharmaceuticals, Inc. Treatment of Fibrodysplasia Ossificans Progressiva
RU2718914C2 (en) 2014-09-13 2020-04-15 Новартис Аг Combined treatment methods using alk inhibitors
WO2016043577A1 (en) 2014-09-16 2016-03-24 Academisch Medisch Centrum Ig-like molecules binding to bmp4
HUE054670T2 (en) 2014-09-25 2021-09-28 Aveo Pharmaceuticals Inc Method for reversing cachexia and increasing survival by administering a GDF15 modulator and an anticancer agent
EP3204411A4 (en) 2014-10-10 2018-03-28 National Research Council of Canada Anti-tau antibody and uses thereof
MA41685A (en) 2014-10-17 2017-08-22 Biogen Ma Inc COPPER SUPPLEMENT FOR THE REGULATION OF GLYCOSYLATION IN A MAMMAL CELL CULTURE PROCESS
CN107208076A (en) 2014-10-17 2017-09-26 科达制药 Butyrylcholine esterase amphoteric ion polymer conjugate
US10040844B2 (en) 2014-10-22 2018-08-07 The Regents Of The University Of California Proteolytic release of cell surface antigens for phage biopanning
US10870704B2 (en) 2014-10-23 2020-12-22 Kira Biotech Pty Limited CD83 binding proteins and uses thereof
IL251822B2 (en) 2014-10-29 2023-03-01 Teva Pharmaceuticals Australia Pty Ltd Interferon alpha2b variants
MA40864A (en) 2014-10-31 2017-09-05 Biogen Ma Inc HYPOTAURINE, GABA, BETA-ALANINE AND CHOLINE FOR THE REGULATION OF THE ACCUMULATION OF RESIDUAL BY-PRODUCTS IN MAMMAL CELL CULTURE PROCESSES
WO2016073747A1 (en) 2014-11-06 2016-05-12 The Trustees Of The University Of Pennsylvania Atomic description of immune complex that causes heparin-induced thrombocytopenia
ES2832802T3 (en) 2014-11-21 2021-06-11 Univ Maryland Systems of directed administration of the specific particulate of a structure
US10259887B2 (en) 2014-11-26 2019-04-16 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
EA037065B1 (en) 2014-11-26 2021-02-01 Ксенкор, Инк. Heterodimeric antibodies that bind cd3 and cd38
ES2886523T3 (en) 2014-11-26 2021-12-20 Xencor Inc Heterodimeric antibodies that bind to CD3 and CD20
US20170319661A1 (en) 2014-12-03 2017-11-09 Inserm (Institut National De La Sante Et De La Recherche Medicale) Methods and Pharmaceutical Compositions Using Orexins (OXA, OXB) for the Treatment of Prostate Cancers
MX2017007136A (en) 2014-12-05 2017-12-04 Immunext Inc Identification of vsig8 as the putative vista receptor and its use thereof to produce vista/vsig8 modulators.
US10093733B2 (en) 2014-12-11 2018-10-09 Abbvie Inc. LRP-8 binding dual variable domain immunoglobulin proteins
TW201629098A (en) 2014-12-19 2016-08-16 艾爾德生物製藥股份有限公司 Humanized anti-ACTH antibody and its use
US10940212B2 (en) 2014-12-19 2021-03-09 Monash University IL-21 agonist antibodies and methods of treatment using same
EP3237446B1 (en) 2014-12-22 2021-05-05 PD-1 Acquisition Group, LLC Anti-pd-1 antibodies
WO2016105450A2 (en) 2014-12-22 2016-06-30 Xencor, Inc. Trispecific antibodies
US10689423B2 (en) 2015-01-13 2020-06-23 City Of Hope CTLA4-binding protein peptide-linker masks
JP7260248B2 (en) 2015-01-16 2023-04-18 シティ・オブ・ホープ cell permeable antibody
TN2018000324A1 (en) 2015-01-23 2020-01-16 Sanofi Sa ANTl-CD3 ANTIBODIES, ANTl-CD123 ANTIBODIES AND BISPECIFIC ANTIBODIES SPECIFICALLY BINDING TO CD3 AND/OR CD123
MA41414A (en) 2015-01-28 2017-12-05 Centre Nat Rech Scient ICOS AGONIST BINDING PROTEINS
TWI711631B (en) 2015-01-28 2020-12-01 愛爾蘭商普羅佘納生物科技有限公司 Anti-transthyretin antibodies
TWI718121B (en) 2015-01-28 2021-02-11 愛爾蘭商普羅佘納生物科技有限公司 Anti-transthyretin antibodies
TWI786505B (en) 2015-01-28 2022-12-11 愛爾蘭商普羅佘納生物科技有限公司 Anti-transthyretin antibodies
US10539572B2 (en) 2015-01-30 2020-01-21 Salk Institute For Biological Studies Compositions and methods for treating age-related diabetes and related disorders
US10266584B2 (en) 2015-02-09 2019-04-23 Inserm (Institut National De La Sante Et De La Recherche Medicale) Antibodies specific to glycoprotein (GP) of Ebolavirus and uses for the treatment and diagnosis of ebola virus infection
EP3256148A1 (en) 2015-02-12 2017-12-20 INSERM - Institut National de la Santé et de la Recherche Médicale Methods for predicting the responsiveness of a patient affected with malignant hematological disease to chemotherapy treatment and methods of treatment of such disease
CA2976446A1 (en) 2015-02-13 2016-08-18 Sorrento Therapeutics, Inc. Antibody therapeutics that bind ctla4
WO2016141387A1 (en) 2015-03-05 2016-09-09 Xencor, Inc. Modulation of t cells with bispecific antibodies and fc fusions
EP3067062A1 (en) 2015-03-13 2016-09-14 Ipsen Pharma S.A.S. Combination of tasquinimod or a pharmaceutically acceptable salt thereof and a pd1 and/or pdl1 inhibitor, for use as a medicament
EP3270965B1 (en) 2015-03-18 2020-05-06 Seattle Genetics, Inc. Cd48 antibodies and conjugates thereof
ES2805743T3 (en) 2015-03-24 2021-02-15 Inst Nat Sante Rech Med Method and pharmaceutical composition for use in the treatment of diabetes
CN107614523A (en) 2015-03-30 2018-01-19 希望之城 mechanical interlocking complex
EP3277725B1 (en) 2015-03-30 2020-11-25 Regeneron Pharmaceuticals, Inc. Heavy chain constant regions with reduced binding to fc gamma receptors
PL3277717T3 (en) 2015-03-31 2021-05-31 Medimmune Limited A novel il33 form, mutated forms of il33, antibodies, assays and methods of using the same
EP3279216A4 (en) 2015-04-01 2019-06-19 Chugai Seiyaku Kabushiki Kaisha PROCESS FOR THE PRODUCTION OF A POLYPEPTIDE HETERO-OLIGOMER
US20180071413A1 (en) 2015-04-07 2018-03-15 Inserm (Institut National De La Sante Et De La Recherche Medicale) Non-invasive imaging of tumor pd-l1 expression
US10851176B2 (en) 2015-04-13 2020-12-01 Inserm (Institut National De La Sante Et De La Recherche Medicale) Methods of administering neutralizing anti-protease nexin-1 antibodies to treat hemophilia A
TWI772258B (en) 2015-04-17 2022-08-01 德商安美基研究(慕尼黑)公司 Bispecific antibody constructs for cdh3 and cd3
WO2016170027A1 (en) 2015-04-22 2016-10-27 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of th17 mediated diseases
AU2016255768B2 (en) 2015-04-29 2022-03-10 Regeneron Pharmaceuticals, Inc. Treatment of fibrodysplasia ossificans progressiva
WO2016177833A1 (en) 2015-05-04 2016-11-10 Bionor Immuno As Dosage regimen for hiv vaccine
EP3292147A1 (en) 2015-05-07 2018-03-14 NovImmune SA Methods and compositions for diagnosis and treatment of disorders in patients with elevated levels of cxcl9 and other biomarkers
US11091543B2 (en) 2015-05-07 2021-08-17 Swedish Orphan Biovitrum Ag Methods, compositions and dosing regimens for treating or preventing interferon-gamma related indications
MX390190B (en) 2015-05-08 2025-03-20 Xencor Inc HETERODIMERIC ANTIBODIES THAT BIND TO CD3 AND TUMOR ANTIGENS.
ES2852973T3 (en) 2015-05-15 2021-09-14 Hope City Chimeric antigen receptor compositions
WO2016187594A1 (en) 2015-05-21 2016-11-24 Harpoon Therapeutics, Inc. Trispecific binding proteins and methods of use
WO2016201282A2 (en) 2015-06-12 2016-12-15 Ludwig Institute For Cancer Research Ltd TGF-β3 SPECIFIC ANTIBODIES AND METHODS AND USES THEREOF
TW201709932A (en) 2015-06-12 2017-03-16 西雅圖遺傳學公司 CD123 antibody and its conjugate
TW201710286A (en) 2015-06-15 2017-03-16 艾伯維有限公司 Binding proteins against VEGF, PDGF, and/or their receptors
WO2016207717A1 (en) 2015-06-24 2016-12-29 Janssen Pharmaceutica Nv Anti-vista antibodies and fragments
NZ737418A (en) 2015-06-30 2025-05-02 Seagen Inc Anti-ntb-a antibodies and related compositions and methods
EP3319990A1 (en) 2015-07-07 2018-05-16 Institut National de la Sante et de la Recherche Medicale (INSERM) Antibodies having specificity to myosin 18a and uses thereof
CN108449940B (en) 2015-07-12 2021-06-08 杭州多禧生物科技有限公司 Conjugated bridging linkers to cell-binding molecules
JO3711B1 (en) 2015-07-13 2021-01-31 H Lundbeck As Antibodies specific for hyperphosphorylated tau and methods of use thereof
GB201512215D0 (en) 2015-07-13 2015-08-19 Lundbeck & Co As H Agents,uses and methods
GB201512203D0 (en) 2015-07-13 2015-08-19 Lundbeck & Co As H Agents,uses and methods
US9839687B2 (en) 2015-07-15 2017-12-12 Suzhou M-Conj Biotech Co., Ltd. Acetylenedicarboxyl linkers and their uses in specific conjugation of a cell-binding molecule
TWI796283B (en) 2015-07-31 2023-03-21 德商安美基研究(慕尼黑)公司 Antibody constructs for msln and cd3
TWI829617B (en) 2015-07-31 2024-01-21 德商安美基研究(慕尼黑)公司 Antibody constructs for flt3 and cd3
TWI717375B (en) 2015-07-31 2021-02-01 德商安美基研究(慕尼黑)公司 Antibody constructs for cd70 and cd3
TW202346349A (en) 2015-07-31 2023-12-01 德商安美基研究(慕尼黑)公司 Antibody constructs for dll3 and cd3
TWI744242B (en) 2015-07-31 2021-11-01 德商安美基研究(慕尼黑)公司 Antibody constructs for egfrviii and cd3
CN108135958B (en) 2015-08-06 2022-03-04 希望之城 Cell penetrating protein-antibody conjugates and methods of use thereof
NZ739721A (en) 2015-08-07 2019-09-27 Imaginab Inc Antigen binding constructs to target molecules
EP3334453A4 (en) 2015-08-13 2019-02-06 New York University SPECIFIC ANTIBODY MOLECULES OF THE ASP421 EPITOPE TRUNCATED FROM THE TAU PROTEIN AND THEIR USES IN THE DIAGNOSIS AND TREATMENT OF TAUOPATHY
US10358503B2 (en) 2015-08-13 2019-07-23 New York University Antibody-based molecules selective for the {P}Ser404 epitope of Tau and their uses in the diagnosis and treatment of tauopathy
EA201890519A1 (en) 2015-08-18 2018-07-31 Ридженерон Фармасьютикалз, Инк. INHIBITING ANTIBODIES AGAINST PCSK9 FOR THE TREATMENT OF PATIENTS WITH HYPERLIPIDEMIA EXPOSING TO LIPOPROTEIN SCARVA
EP4223784A3 (en) 2015-09-02 2023-10-04 The Regents of the University of Colorado, a body corporate Compositions and methods for modulating t-cell mediated immune response
PT3307322T (en) 2015-09-04 2021-04-23 Primatope Therapeutics Inc HUMANIZED ANTI-CP40 ANTIBODIES AND THEIR USES CROSS-REFERENCE RELATED TO ASSOCIATED APPLICATIONS
CA2998716A1 (en) 2015-09-16 2017-03-23 Prothena Biosciences Limited Use of anti-mcam antibodies for treatment or prophylaxis of giant cell arteritis, polymyalgia rheumatica or takayasu's arteritis
WO2017046774A2 (en) 2015-09-16 2017-03-23 Prothena Biosciences Limited Use of anti-mcam antibodies for treatment or prophylaxis of giant cell arteritis, polymyalgia rheumatica or takayasu's arteritis
WO2017050793A1 (en) 2015-09-22 2017-03-30 INSERM (Institut National de la Santé et de la Recherche Médicale) Polypeptides capable of inhibiting the binding between leptin and neuropilin-1
EP4435105A3 (en) 2015-09-29 2025-05-14 Amgen Inc. Asgr inhibitors for reduzing cholesterol levels
WO2017060397A1 (en) 2015-10-09 2017-04-13 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for predicting the survival time of subjects suffering from melanoma metastases
EP3362082A1 (en) 2015-10-16 2018-08-22 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of autoimmune inflammatory diseases
GB201518675D0 (en) 2015-10-21 2015-12-02 Cellcap Technologies Ltd Detection of structural forms of proteins
WO2017072361A1 (en) * 2015-10-30 2017-05-04 Nbe-Therapeutics Ag Anti-ror1 antibodies
CN116333125A (en) 2015-10-30 2023-06-27 银河生物技术有限责任公司 Antibodies that bind death receptor 4 and death receptor 5
CA3004900C (en) 2015-11-18 2021-08-10 Merck Sharp & Dohme Corp. Ctla4 binders
UA121914C2 (en) 2015-11-18 2020-08-10 Мерк Шарп І Доум Корп. Pd1 and/or lag3 binders
RU2755724C2 (en) 2015-11-18 2021-09-20 Мерк Шарп И Доум Корп. Pd1/ctla4-binding substances
HK1253533A1 (en) 2015-11-27 2019-06-21 Csl Limited Cd131 binding proteins and uses thereof
KR20180093010A (en) 2015-12-04 2018-08-20 더 리전트 오브 더 유니버시티 오브 캘리포니아 New Cancer Therapeutic Antibodies
AU2016365742A1 (en) 2015-12-07 2018-06-21 Xencor, Inc. Heterodimeric antibodies that bind CD3 and PSMA
CA3007997A1 (en) 2015-12-10 2017-06-15 City Of Hope Cell penetrating cyanine-coupled antibodies
MX391382B (en) 2015-12-24 2025-03-21 Corvus Pharmaceuticals Inc CANCER TREATMENT METHODS
BR112018009312A8 (en) 2015-12-28 2019-02-26 Chugai Pharmaceutical Co Ltd method for promoting purification efficiency of fc region-containing polypeptide
KR20250057128A (en) 2015-12-30 2025-04-28 코디악 사이언시스 인코포레이티드 Antibodies and conjugates thereof
CN117679499A (en) 2016-01-10 2024-03-12 尼奥克斯医疗有限公司 Methods and compositions for enhancing the efficacy of superantigen-mediated cancer immunotherapy
US10822415B2 (en) 2016-01-28 2020-11-03 Inserm (Institut National De La Santéet De La Recherche Médicale) Methods for enhancing the potency of the immune checkpoint inhibitors
US10918737B2 (en) 2016-01-28 2021-02-16 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical composition for the treatment of cancer
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
LT3411402T (en) 2016-02-03 2022-01-25 Amgen Research (Munich) Gmbh Bcma and cd3 bispecific t cell engaging antibody constructs
EA039859B1 (en) 2016-02-03 2022-03-21 Эмджен Рисерч (Мюник) Гмбх Bispecific antibody constructs binding egfrviii and cd3
DK3411404T3 (en) 2016-02-03 2023-01-30 Amgen Res Munich Gmbh PSMA-AND CD3-BISPECIFIC T CELL-ENGINEERING ANTIBODY CONSTRUCTS
MX2018009800A (en) 2016-02-12 2018-11-09 Janssen Pharmaceutica Nv Anti-vista (b7h5) antibodies.
ES2930077T3 (en) 2016-02-15 2022-12-07 Inst Nat Sante Rech Med Apelin for use in the treatment of postoperative cognitive dysfunction
IL311107A (en) 2016-02-17 2024-04-01 Seagen Inc BCMA antibodies and their use for the treatment of cancer and immune disorders
CN108699154A (en) 2016-02-26 2018-10-23 国家医疗保健研究所 There is the antibody and application thereof of specificity to BTLA
EP3423490A1 (en) 2016-03-01 2019-01-09 H. Hoffnabb-La Roche Ag Obinutuzumab and rituximab variants having reduced adcp
WO2017149513A1 (en) 2016-03-03 2017-09-08 Prothena Biosciences Limited Anti-mcam antibodies and associated methods of use
IL261188B (en) 2016-03-04 2022-08-01 Jn Biosciences Llc An anti-tigit antibody that binds to the tigit polypeptide on one or more amino acid residues
WO2017153953A1 (en) 2016-03-09 2017-09-14 Prothena Biosciences Limited Use of anti-mcam antibodies for treatment or prophylaxis of granulomatous lung diseases
WO2017153955A1 (en) 2016-03-09 2017-09-14 Prothena Biosciences Limited Use of anti-mcam antibodies for treatment or prophylaxis of granulomatous lung diseases
US11072652B2 (en) 2016-03-10 2021-07-27 Viela Bio, Inc. ILT7 binding molecules and methods of using the same
KR102402444B1 (en) 2016-03-15 2022-05-27 엥스띠뛰 나씨오날 드 라 쌍떼 에 드 라 흐쉐르슈 메디깔 (인쎄름) Early and non-invasive methods for assessing the risk of a subject suffering from pancreatic ductal adenocarcinoma and methods of treating such disease
WO2017158396A1 (en) 2016-03-16 2017-09-21 INSERM (Institut National de la Santé et de la Recherche Médicale) Cytidine deaminase inhibitors for the treatment of pancreatic cancer
WO2017162604A1 (en) 2016-03-21 2017-09-28 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for diagnosis and treatment of solar lentigo
KR20180127971A (en) 2016-03-23 2018-11-30 맵스페이스 바이오사이언시즈 (쑤저우) 컴퍼니 리미티드 New anti-PD-L1 antibodies
IL261957B (en) 2016-03-28 2022-07-01 Incyte Corp Pyrrolotriazine compounds as TAM inhibitors
EP3439659A1 (en) 2016-04-06 2019-02-13 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of age-related cardiometabolic diseases
US10202435B2 (en) 2016-04-15 2019-02-12 Alder Biopharmaceuticals, Inc. Anti-PACAP antibodies and uses thereof
US11525000B2 (en) 2016-04-15 2022-12-13 Immunext, Inc. Anti-human VISTA antibodies and use thereof
JOP20170091B1 (en) 2016-04-19 2021-08-17 Amgen Res Munich Gmbh Giving a bispecific formulation that binds to CD33 and CD3 for use in a modality for the treatment of myeloid leukemia
US20190125826A1 (en) 2016-04-22 2019-05-02 Inserm (Institut National De La Santé Et De La Médicale) Methods and pharmaceutical composition for the treatment of inflammatory skin diseases associated with desmoglein-1 deficiency
WO2017189483A1 (en) 2016-04-25 2017-11-02 The Johns Hopkins University Znt8 assays for drug development and pharmaceutical compositions
KR102533675B1 (en) 2016-05-02 2023-05-22 프로테나 바이오사이언시즈 리미티드 Tau recognition antibody
US10889638B2 (en) 2016-05-02 2021-01-12 Prothena Biosciences Limited Antibodies recognizing tau
DK3452507T3 (en) 2016-05-02 2022-11-14 Prothena Biosciences Ltd TAU IMMUNOTHERAPY
ES2941693T3 (en) 2016-05-03 2023-05-24 Inst Nat Sante Rech Med Methods and pharmaceutical compositions for the treatment of tissue lesions
ES2912453T3 (en) 2016-05-06 2022-05-26 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
US11623958B2 (en) 2016-05-20 2023-04-11 Harpoon Therapeutics, Inc. Single chain variable fragment CD3 binding proteins
US10100106B2 (en) 2016-05-20 2018-10-16 Harpoon Therapeutics, Inc. Single domain serum albumin binding protein
WO2017201493A1 (en) * 2016-05-20 2017-11-23 Harpoon Therapeutics, Inc. Single chain variable fragment cd3 binding proteins
US20190292259A1 (en) 2016-05-24 2019-09-26 Inserm (Institut National De La Sante Et De La Recherche Medicale) Methods and pharmaceutical compositions for the treatment of non small cell lung cancer (nsclc) that coexists with chronic obstructive pulmonary disease (copd)
WO2017202813A1 (en) 2016-05-24 2017-11-30 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of pulmonary bacterial infections
WO2017202814A1 (en) 2016-05-24 2017-11-30 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of neuropathological disorders characterized by a loss of cortical neurons
WO2017208210A1 (en) 2016-06-03 2017-12-07 Prothena Biosciences Limited Anti-mcam antibodies and associated methods of use
HUE068801T2 (en) 2016-06-14 2025-01-28 Xencor Inc Bispecific checkpoint inhibitor antibodies
WO2017218750A1 (en) * 2016-06-15 2017-12-21 The Cleveland Clinic Foundation Novel anti-cd6 antibodies for treating t-cell mediated conditions
CN109715663B (en) 2016-06-28 2022-11-25 Xencor股份有限公司 Heterodimeric antibodies binding to somatostatin receptor 2
EP3478715A2 (en) 2016-07-02 2019-05-08 Prothena Biosciences Limited Anti-transthyretin antibodies
EP3478714A2 (en) 2016-07-02 2019-05-08 Prothena Biosciences Limited Anti-transthyretin antibodies
WO2018007924A2 (en) 2016-07-02 2018-01-11 Prothena Biosciences Limited Anti-transthyretin antibodies
US10864203B2 (en) 2016-07-05 2020-12-15 Beigene, Ltd. Combination of a PD-1 antagonist and a RAF inhibitor for treating cancer
MA56165A (en) 2016-07-12 2022-04-20 H Lundbeck As ANTIBODIES SPECIFIC TO HYPERPHOSPHORYLATED TAU PROTEIN AND METHODS OF USE THEREOF
ES2960835T3 (en) 2016-07-12 2024-03-06 Kite Pharma Inc Antigen binding molecules and methods of use thereof
EP3484923A1 (en) 2016-07-15 2019-05-22 Takeda Pharmaceutical Company Limited Methods and materials for assessing response to plasmablast- and plasma cell-depleting therapies
JP7178568B2 (en) 2016-07-18 2022-11-28 ナショナル リサーチ カウンシル オブ カナダ CAR immune cells targeting carcinoembryonic antigen-related cell adhesion molecule 6 for treating cancer
CA3030926A1 (en) 2016-07-19 2018-01-25 Teva Pharmaceuticals Australia Pty Ltd. Anti-cd47 combination therapy
US20190330318A1 (en) 2016-07-25 2019-10-31 Biogen Ma Inc. Anti-hspa5 (grp78) antibodies and uses thereof
WO2018019990A1 (en) 2016-07-28 2018-02-01 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods of treatement of cancer disease by targetting tumor associated macrophage
NL2017267B1 (en) 2016-07-29 2018-02-01 Aduro Biotech Holdings Europe B V Anti-pd-1 antibodies
EP3491022B1 (en) 2016-07-29 2025-09-10 Institut National de la Santé et de la Recherche Médicale (INSERM) Antibodies targeting tumor associated macrophages and uses thereof
EP3494140A1 (en) * 2016-08-04 2019-06-12 GlaxoSmithKline Intellectual Property Development Ltd Anti-icos and anti-pd-1 antibody combination therapy
DK3347379T5 (en) 2016-08-17 2020-06-15 Compugen Ltd ANTI-TIGIT ANTIBODIES, ANTI-ENVIRONMENTAL ANTIBODIES AND COMBINATIONS THEREOF
HUE065528T2 (en) 2016-08-19 2024-06-28 Beigene Switzerland Gmbh Combination of zanubrutinib with an anti-cd20 or an anti-pd-1 antibody for use in treating cancer
US10793632B2 (en) 2016-08-30 2020-10-06 Xencor, Inc. Bispecific immunomodulatory antibodies that bind costimulatory and checkpoint receptors
WO2018045110A1 (en) 2016-08-30 2018-03-08 Xencor, Inc. Bispecific immunomodulatory antibodies that bind costimulatory and checkpoint receptors
CA3034105A1 (en) 2016-09-23 2018-03-29 Csl Limited Coagulation factor binding proteins and uses thereof
TWI779479B (en) 2016-09-28 2022-10-01 美商凱特製藥公司 Antigen binding molecules and methods of use thereof
WO2018067754A1 (en) 2016-10-04 2018-04-12 Fairbanks Pharmaceuticals, Inc. Anti-fstl3 antibodies and uses thereof
MY203000A (en) 2016-10-14 2024-06-01 Xencor Inc Il15/il15r� heterodimeric fc-fusion proteins
WO2018071898A1 (en) 2016-10-14 2018-04-19 Children's Medical Center Corporation Compositions and methods for treating diseases and disorders of the central nervous system
US11286295B2 (en) 2016-10-20 2022-03-29 Sanofi Anti-CHIKV monoclonal antibodies directed against the E2 structural protein
EP3529262B1 (en) 2016-10-21 2021-07-21 INSERM - Institut National de la Santé et de la Recherche Médicale Methods for promoting t cells response
WO2018081578A1 (en) 2016-10-28 2018-05-03 Astute Medical, Inc. Use of antibodies to timp-2 for the improvement of renal function
US11008325B2 (en) 2016-11-14 2021-05-18 Virginia Commonwealth University Inhibitors of cancer invasion, attachment, and/or metastasis
CA3042442C (en) 2016-11-14 2024-01-02 Hangzhou Dac Biotech Co., Ltd Conjugation linkers, cell binding molecule-drug conjugates containing the linkers, methods of making and uses of such conjugates with the linkers
MA46836A (en) 2016-11-15 2019-09-25 H Lundbeck As AGENTS, USES AND METHODS FOR THE TREATMENT OF SYNUCLEINOPATHY
US11401330B2 (en) * 2016-11-17 2022-08-02 Seagen Inc. Glycan-interacting compounds and methods of use
JP7381339B2 (en) 2016-11-22 2023-11-15 デンドロサイト バイオテック ピーティーワイ リミテッド Anti-CD300f antibody and its use
BR112019010602A2 (en) 2016-11-23 2019-12-17 Harpoon Therapeutics Inc trispecific psma proteins and methods of use
KR20210087108A (en) 2016-11-23 2021-07-09 하푼 테라퓨틱스, 인크. Prostate specific membrane antigen binding protein
AU2017370937A1 (en) 2016-12-07 2019-05-30 Biora Therapeutics, Inc. Gastrointestinal tract detection methods, devices and systems
US10980739B2 (en) 2016-12-14 2021-04-20 Progenity, Inc. Treatment of a disease of the gastrointestinal tract with a chemokine/chemokine receptor inhibitor
EP3555127B1 (en) 2016-12-16 2024-12-18 H. Lundbeck A/S Agents, uses and methods
GB201621635D0 (en) * 2016-12-19 2017-02-01 Ucb Biopharma Sprl Crystal structure
GB201621806D0 (en) 2016-12-21 2017-02-01 Philogen Spa Immunocytokines with progressive activation mechanism
US20180244787A1 (en) 2016-12-22 2018-08-30 Sanofi Anti-human cxcr3 antibodies for treatment of vitiligo
US10364286B2 (en) 2016-12-22 2019-07-30 H. Lundbeck A/S Monoclonal anti-alpha-synuclein antibodies for preventing tau aggregation
US20180214542A1 (en) 2016-12-22 2018-08-02 Sanofi Humanized cxcr3 antibodies with depleting activity and methods of use thereof
WO2018122245A1 (en) 2016-12-28 2018-07-05 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods of predicting the survival time of patients suffering from cms3 colorectal cancer
US11267904B2 (en) 2016-12-28 2022-03-08 Sysmex Corporation Method for controlling affinity of antibody for antigen, antibody whose affinity for antigen has been altered, and its production method
WO2018122249A1 (en) 2016-12-28 2018-07-05 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for predicting the survival time of patients suffering from a microsatellite stable colorectal cancer
CN110267985B (en) 2017-01-04 2023-05-23 H.隆德贝克有限公司 Antibodies specific for hyperphosphorylated tau protein for the treatment of ophthalmic diseases
CA3050691A1 (en) 2017-01-17 2018-07-26 Dana-Farber Cancer Institute, Inc. Compositions and methods for treating lysosomal storage diseases and disorders
EP3573989A4 (en) 2017-01-25 2020-11-18 Beigene, Ltd. CRYSTALLINE FORMS OF (S) -7- (1- (BUT-2-YNOYL) -PIPERIDINE-4-YL) -2- (4-PHENOXYPHENYL) -4,5,6,7-TETRAHYDROPYRAZOLO [1,5-A ] PYRIMIDINE-3-CARBOXAMIDE, MANUFACTURING AND USES THEREOF
JOP20190189A1 (en) 2017-02-02 2019-08-01 Amgen Res Munich Gmbh Low ph pharmaceutical composition comprising t cell engaging antibody constructs
WO2018147960A1 (en) 2017-02-08 2018-08-16 Imaginab, Inc. Extension sequences for diabodies
AU2018218324A1 (en) 2017-02-10 2019-08-22 Eutilex Co., Ltd. IFN-γ-Inducible Regulatory T Cell Convertible Anti-Cancer (IRTCA) antibody and uses thereof
WO2018146253A1 (en) 2017-02-10 2018-08-16 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
TWI814525B (en) 2017-02-14 2023-09-01 美商凱特製藥公司 Cd70 binding molecules and methods of use thereof
CA3053774A1 (en) 2017-02-17 2018-08-23 Sanofi Multispecific binding molecules having specificity to dystroglycan and laminin-2
WO2018151841A1 (en) 2017-02-17 2018-08-23 Sanofi Multispecific binding molecules having specificity to dystroglycan and laminin-2
JOP20180014A1 (en) 2017-02-27 2019-01-30 Teijin Pharma Ltd Humanized antibody for the treatment or prevention of cognitive disorders, the process for its production, and the agent for the treatment or prevention of cognitive disorders using it
US11535668B2 (en) 2017-02-28 2022-12-27 Harpoon Therapeutics, Inc. Inducible monovalent antigen binding protein
US11274160B2 (en) 2017-03-02 2022-03-15 INSERM (Institut National de la Santé et de la Recherche Médicale Antibodies having specificity to Nectin-4 and uses thereof
GB201703876D0 (en) 2017-03-10 2017-04-26 Berlin-Chemie Ag Pharmaceutical combinations
CN114940713B (en) 2017-03-15 2024-04-30 清华大学 Anti-TRKB antibodies
EP3596124A1 (en) 2017-03-16 2020-01-22 Innate Pharma Compositions and methods for treating cancer
WO2018167283A1 (en) 2017-03-17 2018-09-20 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for the diagnosis and treatment of pancreatic ductal adenocarcinoma associated neural remodeling
SG11201908280SA (en) 2017-03-30 2019-10-30 Univ Queensland "chimeric molecules and uses thereof"
MA49289A (en) 2017-04-03 2020-02-12 Hoffmann La Roche ANTIBODIES BINDING TO STEAP-1
WO2018185516A1 (en) 2017-04-05 2018-10-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for treating cardiovascular toxicity induced by anti-cancer therapy
CN108690138A (en) * 2017-04-12 2018-10-23 鸿运华宁(杭州)生物医药有限公司 It is a kind of can be with people CD19 or CD20 and people the CD3 bispecific antibody combined and its application
US20200088732A1 (en) 2017-04-13 2020-03-19 INSERM (Institut National de la Santé et de la Recherche Mèdicale) Methods for the diagnosis and treatment of pancreatic ductal adenocarcinoma
CA3059938A1 (en) 2017-04-14 2018-10-18 Kodiak Sciences Inc. Complement factor d antagonist antibodies and conjugates thereof
WO2018189403A1 (en) 2017-04-14 2018-10-18 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for the treatment of cancer
AU2018263935B2 (en) 2017-05-02 2024-09-26 Prothena Biosciences Limited Antibodies recognizing tau
US11918650B2 (en) 2017-05-05 2024-03-05 Amgen Inc. Pharmaceutical composition comprising bispecific antibody constructs for improved storage and administration
AU2018266562A1 (en) 2017-05-12 2019-12-05 Augusta University Research Institute, Inc. Human alpha fetoprotein-specific T cell receptors and uses thereof
CN115028727A (en) 2017-05-12 2022-09-09 哈普恩治疗公司 MSLN-targeting trispecific proteins and methods of use
US11524999B2 (en) 2017-05-12 2022-12-13 The Trustees Of The University Of Pennsylvania Fully humanized anti-platelet factor 4 antibodies that treat heparin-induced thrombocytopenia
US10543271B2 (en) 2017-05-12 2020-01-28 Harpoon Therapeutics, Inc. Mesothelin binding proteins
EP3403649A1 (en) 2017-05-16 2018-11-21 Bayer Pharma Aktiengesellschaft Inhibitors and antagonists of gpr84 for the treatment of endometriosis
CA3060618A1 (en) 2017-05-19 2018-11-22 Wuxi Biologics (Shanghai) Co. Ltd. Novel monoclonal antibodies to cytotoxic t-lymphocyte-associated protein 4 (ctla-4)
US11530273B2 (en) 2017-05-23 2022-12-20 Helmholtz Zentrum München—Deutsches Forschungszentrum für Gesundheit und Umwelt (GmbH) Anti-CD73 monoclonal antibody, encoding nucleic acids and method for producing
EP3406253A1 (en) 2017-05-24 2018-11-28 Bayer Aktiengesellschaft Inhibitors and antagonists of human pycr1
EP3630046B1 (en) 2017-05-30 2024-12-25 The Board of Regents of the University of Oklahoma Anti-doublecortin-like kinase 1 antibodies and methods of use
SG10202111336RA (en) 2017-06-01 2021-11-29 Compugen Ltd Triple combination antibody therapies
AU2018283314B2 (en) 2017-06-15 2025-05-29 Miradx Biomarkers for predicting tumor response to and toxicity of immunotherapy
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
KR102757960B1 (en) 2017-06-26 2025-01-22 베이진 엘티디 Immunotherapy for hepatocellular carcinoma (HCC)
WO2019006472A1 (en) 2017-06-30 2019-01-03 Xencor, Inc. Targeted heterodimeric fc fusion proteins containing il-15/il-15ra and antigen binding domains
SG10201913147WA (en) 2017-07-11 2020-02-27 Compass Therapeutics Llc Agonist antibodies that bind human cd137 and uses thereof
US11892457B2 (en) 2017-07-12 2024-02-06 The Johns Hopkins University Proteoliposome-based ZnT8 self-antigen for type 1 diabetes diagnosis
US20190048073A1 (en) 2017-07-20 2019-02-14 Pfizer Inc. Anti-gd3 antibodies and antibody-drug conjugates
US10894833B2 (en) 2017-07-20 2021-01-19 H. Lundbeck A/S Agents, uses and methods for treatment
EP3658581A1 (en) 2017-07-24 2020-06-03 INSERM (Institut National de la Santé et de la Recherche Médicale) Antibodies and peptides to treat hcmv related diseases
US11926664B2 (en) 2017-07-25 2024-03-12 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for modulating monocytopoiesis
WO2019025299A1 (en) 2017-07-31 2019-02-07 F. Hoffmann-La Roche Ag Three-dimensional structure-based humanization method
US11535667B2 (en) * 2017-08-28 2022-12-27 Systimmune, Inc. Anti-CD3 antibodies and methods of making and using thereof
SI3681911T1 (en) 2017-09-11 2025-01-31 Monash University Binding proteins to the human thrombin receptor, par4
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
US11572409B2 (en) 2017-09-21 2023-02-07 Imcheck Therapeutics Sas Antibodies having specificity for BTN2 and uses thereof
US10844371B2 (en) 2017-09-22 2020-11-24 Kite Pharma, Inc. Antigen binding molecules and methods of use thereof
WO2019067592A1 (en) 2017-09-27 2019-04-04 University Of Georgia Research Foundation Treatment and detection of infection and disease associated with different fungal pathogens
US11761963B2 (en) 2017-09-27 2023-09-19 Alexion Pharmaceuticals, Inc. Biomarker signature for predicting tumor response to anti-CD200 therapy
PT3687996T (en) 2017-09-27 2022-01-21 Incyte Corp SALTS OF PYROLOTRIAZINE DERIVATIVES USEFUL AS INHIBITORS OF TAM
JP2021502955A (en) 2017-09-28 2021-02-04 プロセナ・バイオサイエンシズ・リミテッド Administration regimen for the treatment of synuclein disease
US20200354452A1 (en) 2017-09-29 2020-11-12 City Of Hope Cars and bispecific antibodies for treatment of mantle cell lymphoma
SG11202002490UA (en) 2017-10-06 2020-04-29 Prothena Biosciences Ltd Methods of detecting transthyretin
AU2018347582B2 (en) 2017-10-13 2025-08-28 Harpoon Therapeutics, Inc. Trispecific proteins and methods of use
IL315737A (en) 2017-10-13 2024-11-01 Harpoon Therapeutics Inc B cell maturation antigen binding proteins
AU2018350370B2 (en) 2017-10-18 2023-05-04 Csl Limited Human serum albumin variants and uses thereof
WO2019081456A1 (en) 2017-10-24 2019-05-02 Bayer Aktiengesellschaft Use of activators and stimulators of sgc comprising a beta2 subunit
EP3700932A1 (en) 2017-10-27 2020-09-02 Kite Pharma, Inc. T cell receptor antigen binding molecules and methods of use thereof
US11718679B2 (en) 2017-10-31 2023-08-08 Compass Therapeutics Llc CD137 antibodies and PD-1 antagonists and uses thereof
MA50534A (en) 2017-11-01 2020-09-09 Chugai Pharmaceutical Co Ltd ANTIBODY VARIANT AND ISOFORM WITH REDUCED BIOLOGICAL ACTIVITY
EP3706793A1 (en) 2017-11-08 2020-09-16 Xencor, Inc. Bispecific and monospecific antibodies using novel anti-pd-1 sequences
US10981992B2 (en) 2017-11-08 2021-04-20 Xencor, Inc. Bispecific immunomodulatory antibodies that bind costimulatory and checkpoint receptors
AU2018364630A1 (en) 2017-11-09 2020-05-21 Pinteon Therapeutics Inc. Methods and compositions for the generation and use of humanized conformation-specific phosphorylated tau antibodies
US11851497B2 (en) 2017-11-20 2023-12-26 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
US11786529B2 (en) 2017-11-29 2023-10-17 Beigene Switzerland Gmbh Treatment of indolent or aggressive B-cell lymphomas using a combination comprising BTK inhibitors
WO2019108689A1 (en) 2017-11-29 2019-06-06 Prothena Biosciences Limited Lyophilized formulation of a monoclonal antibody against transthyretin
WO2019106126A1 (en) 2017-12-01 2019-06-06 INSERM (Institut National de la Santé et de la Recherche Médicale) Mdm2 modulators for the diagnosis and treatment of liposarcoma
AU2018375375A1 (en) 2017-12-01 2020-05-28 Seagen Inc. CD47 antibodies and uses thereof for treating cancer
EA202091360A1 (en) 2017-12-01 2020-08-24 Сиэтл Дженетикс, Инк. HUMANIZED ANTI-LIV1 ANTIBODIES FOR BREAST CANCER TREATMENT
CN111315780A (en) 2017-12-11 2020-06-19 安进公司 Continuous Manufacturing Process for Bispecific Antibody Products
SG11202005732XA (en) 2017-12-19 2020-07-29 Xencor Inc Engineered il-2 fc fusion proteins
WO2019121872A1 (en) 2017-12-20 2019-06-27 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for the diagnosis and treatment of liver cancer
US11891439B2 (en) 2017-12-28 2024-02-06 Astute Medical, Inc. Antibodies and assays for CCL14
UY38041A (en) 2017-12-29 2019-06-28 Amgen Inc CONSTRUCTION OF BIESPECFIC ANTIBODY DIRECTED TO MUC17 AND CD3
GB201800649D0 (en) 2018-01-16 2018-02-28 Argenx Bvba CD70 Combination Therapy
WO2019147735A1 (en) * 2018-01-23 2019-08-01 New York University Antibodies specific to delta 1 chain of t cell receptor
JP7542257B2 (en) 2018-01-25 2024-08-30 エイシーエム バイオラブズ プライベート リミテッド Polymersomes containing solubilized encapsulated antigens and methods of making and using same
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
EP3749363A1 (en) 2018-02-08 2020-12-16 Amgen Inc. Low ph pharmaceutical antibody formulation
WO2019158512A1 (en) 2018-02-13 2019-08-22 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for the prognosis and the treatment of glioblastoma
US20200377609A1 (en) 2018-02-14 2020-12-03 Kite Pharma, Inc. Anti-idiotypic antibodies directed to the antigen-binding portion of an bcma-binding molecule
GB201802486D0 (en) 2018-02-15 2018-04-04 Ucb Biopharma Sprl Methods
TWI877770B (en) 2018-02-27 2025-03-21 美商英塞特公司 Imidazopyrimidines and triazolopyrimidines as a2a / a2b inhibitors
EP3758751A4 (en) 2018-02-28 2021-11-17 Wuxi Biologics Ireland Limited. Monoclonal antibody against human lag-3, method for preparing same, and use thereof
JP2021514656A (en) 2018-03-02 2021-06-17 コディアック サイエンシーズ インコーポレイテッドKodiak Sciences Inc. IL-6 antibody and its fusion constructs and conjugates
MX2020009265A (en) 2018-03-05 2020-10-01 Janssen Biotech Inc Methods of treating crohn's disease with anti-il23 specific antibody.
HRP20230744T1 (en) 2018-03-26 2023-10-27 Glycanostics S.R.O. Means and methods for glycoprofiling of a protein
MX2020009991A (en) 2018-03-28 2020-10-14 Axon Neuroscience Se Antibody-based methods of detecting and treating alzheimer's disease.
EP3775206A1 (en) 2018-03-28 2021-02-17 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for treating cancer
KR20200138288A (en) 2018-03-28 2020-12-09 미쓰비시 타나베 파마 코퍼레이션 Drug conjugates of cMET monoclonal binding agents, and uses thereof
US20220025037A1 (en) * 2018-04-03 2022-01-27 Dragonfly Therapeutics, Inc. Antibody variable domains targeting dll3, and use thereof
EP3773911A2 (en) 2018-04-04 2021-02-17 Xencor, Inc. Heterodimeric antibodies that bind fibroblast activation protein
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
BR112020015999A2 (en) 2018-04-06 2020-12-15 Dana-Farber Cancer Institute, Inc. KIR3DL3 AS A HHLA2 RECEPTOR, ANTI-HHLA2 ANTIBODIES AND USES OF THE SAME
WO2019197683A1 (en) 2018-04-13 2019-10-17 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for predicting outcome and treatment of patients suffering from prostate cancer or breast cancer
KR20210003814A (en) 2018-04-18 2021-01-12 젠코어 인코포레이티드 TIM-3 targeting heterodimer fusion protein containing IL-15/IL-15Rα Fc-fusion protein and TIM-3 antigen binding domain
JP2021521784A (en) 2018-04-18 2021-08-30 ゼンコア インコーポレイテッド PD-1 targeted heterodimer fusion proteins containing IL-15 / IL-15RaFc fusion proteins and PD-1 antigen binding domains and their use
WO2019209952A2 (en) 2018-04-23 2019-10-31 Emory University Vip antagonists and uses in treating cancer
EP3784701A4 (en) 2018-04-24 2022-06-08 National Research Council of Canada THE BLOOD-BRAIN BARRIER TRANSMIGRANT THERAPEUTIC COMPOUNDS AND USES THEREOF
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
WO2019207066A1 (en) 2018-04-26 2019-10-31 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for the treatment of sjögren's syndrome
WO2019211370A1 (en) 2018-05-03 2019-11-07 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for treating cancer
WO2019211369A1 (en) 2018-05-03 2019-11-07 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical compositions for treating cancer
CA3100327A1 (en) 2018-05-14 2019-11-21 Harpoon Therapeutics, Inc. Binding moiety for conditional activation of immunoglobulin molecules
SI3793586T1 (en) 2018-05-16 2024-07-31 Csl Limited VARIANTS OF THE SOLUBLE COMPLEMENT TYPE 1 RECEPTOR AND THEIR USES
US11168089B2 (en) 2018-05-18 2021-11-09 Incyte Corporation Fused pyrimidine derivatives as A2A / A2B inhibitors
BR112020024249A2 (en) 2018-06-01 2021-03-02 Compugen Ltd. bispecific anti-pvrig / anti-tigit antibody, composition, nucleic acid composition, expression vector composition, host cell, methods for producing a bispecific anti-pvrig / anti-tigit antibody, for activation of a patient's t cells, for activation of a patient's cytotoxic t cells, for activation of a patient's nk cells, for activation of a patient's delta gamma t cells, for activation of a patient's th1 cells, to decrease or eliminate the number of cells and / or the activity of at least one of the regulatory t cells in a patient, to increase the production of interferon-gamma and / or the secretion of pro-inflammatory cytokines in a patient and to treat cancer in a patient, anti-pvrig antibody, anti antibody -tigit, and, expression vector.
EP3801613A1 (en) 2018-06-04 2021-04-14 Bayer Aktiengesellschaft Inhibitors of shp2
CN112867394B9 (en) 2018-06-04 2024-12-06 马萨诸塞州渤健公司 Anti-VLA-4 antibodies with reduced effector function
WO2019234099A1 (en) 2018-06-06 2019-12-12 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for diagnosing, predicting the outcome and treating a patient suffering from heart failure with preserved ejection fraction
TWI851577B (en) 2018-06-07 2024-08-11 美商思進公司 Camptothecin conjugates
WO2019234221A1 (en) 2018-06-08 2019-12-12 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for stratification and treatment of a patient suffering from chronic lymphocytic leukemia
GB201809746D0 (en) 2018-06-14 2018-08-01 Berlin Chemie Ag Pharmaceutical combinations
EP3806898B1 (en) 2018-06-18 2025-10-08 UCB Biopharma SRL Gremlin-1 antagonist for use in the treatment of cancer
WO2019243252A1 (en) 2018-06-18 2019-12-26 Innate Pharma Compositions and methods for treating cancer
WO2019246445A1 (en) 2018-06-20 2019-12-26 The Research Foundation For The State University Of New York Triazamacrocycle-derived chelator compositions for coordination of imaging and therapy metal ions and methods of using same
EP4349411A3 (en) 2018-06-20 2024-06-19 Incyte Corporation Anti-pd-1 antibodies and uses thereof
US12129298B2 (en) * 2018-06-21 2024-10-29 Daiichi Sankyo Company, Limited Compositions including CD3 antigen binding fragments and uses thereof
US20210355199A1 (en) 2018-06-28 2021-11-18 University Of Virginia Patent Foundation Compositions and methods for detecting and regulating fibronectin-integrin interaction and signaling
AU2019295855A1 (en) 2018-06-29 2021-01-28 City Of Hope CD6 targeted chimeric antigen receptors for treatent of certain autoimmune disorders
AR117600A1 (en) 2018-06-29 2021-08-18 Incyte Corp FORMULATIONS OF AN AXL / MER INHIBITOR
KR20210028204A (en) 2018-07-02 2021-03-11 암젠 인크 Anti-STEAP1 antigen binding protein
WO2020007898A1 (en) 2018-07-04 2020-01-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and compositions for treating brain injury or neurodegenerative disease
CR20240054A (en) 2018-07-05 2024-02-26 Incyte Corp FUSED PYRAZINE DERIVATIVES AS A2A/A2B INHIBITORS (Div. 2021-71)
WO2020018556A1 (en) 2018-07-16 2020-01-23 Amgen Inc. Method of treating multiple myeloma
WO2020021061A1 (en) 2018-07-26 2020-01-30 Pieris Pharmaceuticals Gmbh Humanized anti-pd-1 antibodies and uses thereof
EP3830121A1 (en) 2018-07-30 2021-06-09 Amgen Research (Munich) GmbH Prolonged administration of a bispecific antibody construct binding to cd33 and cd3
MA53333A (en) 2018-07-31 2021-11-03 Amgen Inc PHARMACEUTICAL FORMULATIONS OF MASKED ANTIBODIES
BR112021001237A2 (en) 2018-07-31 2021-04-27 Heidelberg Pharma Research Gmbh humanized antibodies against psma
UY38326A (en) 2018-08-03 2020-01-31 Amgen Inc ANTIBODY CONSTRUCTS FOR CLDN18.2 AND CD3
EP3837286A4 (en) 2018-08-16 2022-08-10 The Johns Hopkins University Antibodies to human znt8
WO2020041758A1 (en) 2018-08-24 2020-02-27 City Of Hope Masked cytokine conjugates
HRP20240821T1 (en) 2018-08-27 2024-09-27 Affimed Gmbh Cryopreserved nk cells preloaded with an antibody construct
EP3850008A1 (en) 2018-09-10 2021-07-21 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
EP3849602A1 (en) 2018-09-10 2021-07-21 INSERM (Institut National de la Santé et de la Recherche Médicale) Combination of her2/neu antibody with heme for treating cancer
US20220105176A1 (en) 2018-09-12 2022-04-07 Acm Biolabs Pte Ltd Polymersomes comprising a covalently bound antigen as well as methods of making and uses thereof
JP2022501388A (en) 2018-09-19 2022-01-06 ラホヤ インスティチュート フォー イミュノロジー PTPRS and proteoglycans in rheumatoid arthritis
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
US12195544B2 (en) 2018-09-21 2025-01-14 Harpoon Therapeutics, Inc. EGFR binding proteins and methods of use
WO2020056522A1 (en) 2018-09-21 2020-03-26 National Research Council Of Canada Intrabodies for reducing fut8 activity
EP3856772A1 (en) 2018-09-25 2021-08-04 Institut National de la Santé et de la Recherche Médicale (INSERM) Use of antagonists of th17 cytokines for the treatment of bronchial remodeling in patients suffering from allergic asthma
CA3114038A1 (en) 2018-09-25 2020-04-02 Harpoon Therapeutics, Inc. Dll3 binding proteins and methods of use
JP7596260B2 (en) 2018-09-28 2024-12-09 アムジエン・インコーポレーテツド Antibodies to soluble BCMA
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
MA53822A (en) 2018-10-03 2021-08-11 Xencor Inc IL-12 HETERODIMER FC FUSION PROTEINS
EP3861022A1 (en) 2018-10-04 2021-08-11 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical composition for the treatment of mucosal inflammatory diseases
JP2022512648A (en) 2018-10-09 2022-02-07 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 Use of αV-integrin (CD51) inhibitors for the treatment of myocardial fibrosis
SG11202103275YA (en) 2018-10-11 2021-04-29 Amgen Inc Downstream processing of bispecific antibody constructs
CN112955462B (en) 2018-10-18 2024-05-07 国家医疗保健研究所 Combination of βIG-H3 antagonist and immune checkpoint inhibitor for the treatment of solid tumors
WO2020086408A1 (en) 2018-10-26 2020-04-30 The United States Of America, As Represented By The Secretary, Department Of Health And Human Services A high-yield perfusion-based transient gene expression bioprocess
WO2020095104A1 (en) 2018-11-05 2020-05-14 Ludwig Institute For Cancer Research Ltd. HUMANIZED AND VARIANT TGF-β3 SPECIFIC ANTIBODIES AND METHODS AND USES THEREOF
CN113613725B (en) 2018-11-05 2025-09-23 路德维格癌症研究所有限公司 Humanized and variant TGF-β1 specific antibodies and methods and uses thereof
BR112021008624A2 (en) 2018-11-08 2021-09-28 Prothena Biosciences Limited ANTIBODIES THAT RECOGNIZE TAU
EP3880716A4 (en) 2018-11-13 2022-08-03 Compass Therapeutics LLC Multispecific binding constructs against checkpoint molecules and uses thereof
US20240252795A1 (en) 2018-11-19 2024-08-01 Biora Therapeutics, Inc. Ingestible device for delivery of therapeutic agent to the gastrointestinal tract
AU2019383017A1 (en) 2018-11-20 2021-06-03 Janssen Biotech, Inc. Safe and effective method of treating psoriasis with anti-IL-23 specific antibody
JP7166457B2 (en) 2018-11-26 2022-11-07 フォーティ セブン, インコーポレイテッド Humanized antibody against c-Kit
JP2022510634A (en) 2018-11-28 2022-01-27 フォーティ セブン, インコーポレイテッド Genetically modified HSPC resistant to removal regimen
TWI848030B (en) 2018-12-18 2024-07-11 比利時商阿根思公司 CD70 combination therapy
GB201820687D0 (en) * 2018-12-19 2019-01-30 Kymab Ltd Antagonists
CN113474048A (en) 2018-12-21 2021-10-01 Aim免疫科技有限公司 Compositions and methods for cancer treatment
CN113490688B (en) 2018-12-26 2025-07-29 希望之城公司 Activatable masked anti-CTLA 4 binding proteins
US20220073626A1 (en) 2019-01-03 2022-03-10 Institut National De La Santé Et De La Recheche Médicale (Inserm) Methods and pharmaceutical compositions for enhancing cd8+ t cell-dependent immune responses in subjects suffering from cancer
MX2021008507A (en) 2019-01-18 2021-09-21 Univ Health Network Lilrb3-binding molecules and uses therefor.
JP7549584B2 (en) 2019-01-23 2024-09-11 ニューヨーク・ユニバーシティ Antibody specific for the delta 1 chain of the T cell receptor
JP2020117502A (en) 2019-01-28 2020-08-06 ファイザー・インク Method of treating signs and symptoms of osteoarthritis
TWI829857B (en) 2019-01-29 2024-01-21 美商英塞特公司 Pyrazolopyridines and triazolopyridines as a2a / a2b inhibitors
CN114206442A (en) 2019-01-31 2022-03-18 赛诺菲生物技术公司 Anti-IL-6 receptor antibody for the treatment of juvenile idiopathic arthritis
KR20210125511A (en) 2019-02-05 2021-10-18 씨젠 인크. Anti-CD228 Antibodies and Antibody-Drug Conjugates
CN113993895A (en) 2019-02-15 2022-01-28 大学保健网 FCMR binding molecules and uses thereof
CA3130240A1 (en) 2019-02-18 2020-08-27 Pfizer Inc. Method of treatment of chronic low back pain
US20220090113A1 (en) 2019-02-18 2022-03-24 Atb Therapeutics Method of producing a binder-toxin fusion protein in a plant cell or a whole plant
CN114173875B (en) 2019-03-01 2025-04-15 Xencor股份有限公司 Heterodimeric antibodies that bind ENPP3 and CD3
WO2020178193A1 (en) 2019-03-01 2020-09-10 INSERM (Institut National de la Santé et de la Recherche Médicale) Method of treatment of sarcoidosis
AU2020231366A1 (en) 2019-03-03 2021-08-12 Prothena Biosciences Limited Antibodies recognizing tau
WO2020185763A1 (en) 2019-03-11 2020-09-17 Memorial Sloan Kettering Cancer Center Cd22 antibodies and methods of using the same
BR112021018611A2 (en) 2019-03-20 2021-11-23 Imcheck Therapeutics Sas ANTIBODIES HAVING SPECIFICITY FOR BTN2 AND USES THEREOF
EP3942026A1 (en) 2019-03-22 2022-01-26 Université de Paris New inhibitors of lrrk2/pp1 interaction
US20220177558A1 (en) 2019-03-25 2022-06-09 INSERM (Institut National de la Santé et de la Recherche Médicale) Treatment of taupathy disorders by targeting new tau species
KR20220047536A (en) 2019-04-01 2022-04-18 레이크파르마, 인코퍼레이티드 BTLA-binding (CD272) antibody for modulation of immune response and treatment of disease
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
WO2020201442A1 (en) 2019-04-03 2020-10-08 Orega Biotech Combination therapies based on pd1 and il-17b inhibitors
EP3946416A2 (en) 2019-04-04 2022-02-09 Bayer Aktiengesellschaft Agonists of adiponectin
CA3133163A1 (en) 2019-04-09 2020-10-15 Matthias Schneider Protein binders for irhom2
MX2021012726A (en) 2019-04-19 2021-11-17 Allogene Therapeutics Inc ANTIBODIES AGAINST 4G7-DERIVED CHIMERIC ANTIGEN RECEPTORS.
BR112021021725A2 (en) 2019-04-30 2021-12-28 Gigagen Inc Recombinant polyclonal proteins and methods of using them
EP3969569A1 (en) 2019-05-14 2022-03-23 INSERM (Institut National de la Santé et de la Recherche Médicale) Regulatory t cells targeted by lymphotoxin alpha blocking agent and uses thereof
US20220213194A1 (en) 2019-05-15 2022-07-07 Neotx Therapeutics Ltd. Cancer treatment
CN113874073A (en) 2019-05-23 2021-12-31 詹森生物科技公司 Methods of treating inflammatory bowel disease with combination therapy of antibodies to IL-23 and TNF α
KR20230061198A (en) 2019-06-04 2023-05-08 사노피 바이오테크놀로지 Compositions and methods for treating pain in a subject with rheumatoid arthritis
JP7661245B2 (en) 2019-06-07 2025-04-14 アムジエン・インコーポレーテツド Bispecific binding constructs
TWI874409B (en) 2019-06-13 2025-03-01 美商安進公司 Automated biomass-based perfusion control in the manufacturing of biologics
BR112021025029A2 (en) 2019-06-13 2022-01-25 Allogene Therapeutics Inc Anti-talen antibodies and their uses
JP2022540395A (en) 2019-06-29 2022-09-15 ハンジョウ ディーエーシー バイオテック シーオー.,エルティディ. Cell-binding molecule-tubulysin derivative conjugate and method for preparing the same
HUE069680T2 (en) 2019-07-01 2025-04-28 Tonix Pharma Ltd Anti-cd154 antibodies and uses thereof
AU2020318975A1 (en) 2019-07-22 2022-03-17 Seagen Inc. Humanized anti-LIV1 antibodies for the treatment of cancer
JP2022543062A (en) 2019-08-01 2022-10-07 インサイト・コーポレイション Dosing Regimens for IDO Inhibitors
WO2021021991A1 (en) 2019-08-01 2021-02-04 Vaccinex,Inc. Combined inhibition of semaphorin-4d and tgfb and compositions therefor
JP2022543259A (en) 2019-08-02 2022-10-11 オレガ・バイオテック Novel IL-17B antibody
EP4007584A1 (en) 2019-08-02 2022-06-08 Institut National de la Santé et de la Recherche Médicale (INSERM) Neutralizing granzyme b for providing cardioprotection in a subject who experienced a myocardial infarction
WO2021023860A1 (en) 2019-08-07 2021-02-11 Db Biotech, As Improved horseradish peroxidase polypeptides
EP4025303A1 (en) 2019-09-04 2022-07-13 Deutsches Zentrum für Neurodegenerative Erkrankungen e.V. (DZNE) Herv inhibitors for use in treating tauopathies
US20220306741A1 (en) 2019-09-10 2022-09-29 Amgen Inc. Purification Method for Bispecific antigen-binding Polypeptides with Enhanced Protein L Capture Dynamic Binding Capacity
US20220290151A1 (en) 2019-09-27 2022-09-15 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of müllerian inhibiting substance inhibitors for treating cancer
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
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
US20240287172A1 (en) 2019-09-30 2024-08-29 Scirhom Gmbh Protein binders to irhom2 epitopes
US12366570B2 (en) 2019-10-01 2025-07-22 The Johns Hopkins University Cell-based ZNT8 assay
US11851466B2 (en) 2019-10-03 2023-12-26 Xencor, Inc. Targeted IL-12 heterodimeric Fc-fusion proteins
AU2020358859A1 (en) 2019-10-04 2022-05-12 Seagen Inc. Anti-PD-L1 antibodies and antibody-drug conjugates
WO2021064184A1 (en) 2019-10-04 2021-04-08 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods and pharmaceutical composition for the treatment of ovarian cancer, breast cancer or pancreatic cancer
EP3804754A1 (en) 2019-10-09 2021-04-14 OSE Immunotherapeutics Cmklr1 agonists having a resolvin e1-like capability and their therapeutic applications
AU2020364071A1 (en) 2019-10-10 2022-05-26 Kodiak Sciences Inc. Methods of treating an eye disorder
US20220396628A1 (en) 2019-10-23 2022-12-15 Kite Pharma, Inc. Anti-idiotypic antigen binding molecules and methods of use thereof
WO2021097344A1 (en) 2019-11-13 2021-05-20 Amgen Inc. Method for reduced aggregate formation in downstream processing of bispecific antigen-binding molecules
AU2020398327A1 (en) 2019-12-03 2022-07-14 Evotec International Gmbh Interferon-associated antigen binding proteins and uses thereof
AU2020397416A1 (en) 2019-12-03 2022-07-14 Evotec International Gmbh Interferon-associated antigen binding proteins for use in treating hepatitis B infection
EP4069301A1 (en) 2019-12-04 2022-10-12 Bayer Aktiengesellschaft Inhibitors of shp2
US20230057899A1 (en) 2019-12-05 2023-02-23 Compugen Ltd. Anti-pvrig and anti-tigit antibodies for enhanced nk-cell based tumor killing
WO2021111636A1 (en) 2019-12-06 2021-06-10 大塚製薬株式会社 Anti-gdf15 antibody
EP4072682A1 (en) 2019-12-09 2022-10-19 Institut National de la Santé et de la Recherche Médicale (INSERM) Antibodies having specificity to her4 and uses thereof
CN115666704B (en) 2019-12-13 2025-09-26 比特比德科有限责任公司 Ingestible device for delivering therapeutic agents to the gastrointestinal tract
AU2020405230A1 (en) 2019-12-20 2022-06-23 Amgen Inc. Mesothelin-targeted CD40 agonistic multispecific antibody constructs for the treatment of solid tumors
EP4081554A1 (en) 2019-12-27 2022-11-02 Affimed GmbH Method for the production of bispecific fcyriii x cd30 antibody construct
EP4084808A1 (en) 2019-12-30 2022-11-09 City of Hope Methods of making and using regulatory t cells and effector t cells having chimeric antigen receptors targeted to cd6, cd19, and/or an il-13r for treatment of autoimmune disorders and cancers
TWI877278B (en) 2019-12-30 2025-03-21 美商思進公司 Methods of treating cancer with nonfucosylated anti-cd70 antibodies
TW202135824A (en) 2020-01-03 2021-10-01 美商英塞特公司 Combination therapy comprising a2a/a2b and pd-1/pd-l1 inhibitors
MX2022008494A (en) 2020-01-08 2022-10-10 Regeneron Pharma TREATMENT OF PROGRESSIVE FIBRODYSPLASIA OSSIFICANS.
WO2021150824A1 (en) 2020-01-22 2021-07-29 Amgen Research (Munich) Gmbh Combinations of antibody constructs and inhibitors of cytokine release syndrome and uses thereof
JP2023513059A (en) 2020-01-31 2023-03-30 ザ クリーブランド クリニック ファウンデーション Anti-Mullerian hormone receptor 2 antibody and method of use
BR102020002165A2 (en) 2020-01-31 2021-11-30 Fundação Oswaldo Cruz ANTIBODY, ITS USE, PHARMACEUTICAL COMPOSITION INCLUDING IT, METHOD OF DIAGNOSING FUNGAL INFECTIONS, DIAGNOSIS KIT OF FUNGAL INFECTIONS AND METHOD FOR TREATMENT OF FUNGAL INFECTIONS.
WO2021156329A1 (en) 2020-02-05 2021-08-12 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods of treatment of cancer disease by targeting an epigenetic factor
EP3862023A1 (en) 2020-02-05 2021-08-11 Hangzhou DAC Biotech Co, Ltd Conjugates of cell-binding molecules with cytotoxic agents
MX2022010175A (en) 2020-02-21 2022-09-12 Harpoon Therapeutics Inc Flt3 binding proteins and methods of use.
EP4110810A1 (en) 2020-02-28 2023-01-04 Orega Biotech Combination therapies based on ctla4 and il-17b inhibitors
MX2022010327A (en) 2020-03-03 2022-11-09 Active Biotech Ab TASQUINIMOD OR A PHARMACEUTICALLY ACCEPTABLE SALT THEREOF FOR USE IN COMBINATION THERAPY.
WO2021175954A1 (en) 2020-03-04 2021-09-10 Imcheck Therapeutics Sas Antibodies having specificity for btnl8 and uses thereof
CN115697343A (en) 2020-03-06 2023-02-03 因赛特公司 Combination therapy comprising AXL/MER and PD-1/PD-L1 inhibitors
EP4118113A1 (en) 2020-03-12 2023-01-18 Amgen Inc. Method for treatment and prophylaxis of crs in patients comprising a combination of bispecifc antibodies binding to cds x cancer cell and tnfalpha or il-6 inhibitor
KR20220155338A (en) 2020-03-19 2022-11-22 암젠 인크 Antibodies to mucin 17 and uses thereof
EP4126952A1 (en) 2020-03-26 2023-02-08 Seagen Inc. Methods of treating multiple myeloma
BR102020007149A8 (en) 2020-04-06 2023-09-26 H Lundbeck As Uses of an anti-cgrp or anti-cgrp-r antibody or a fragment thereof to improve the most bothersome symptom (mbs) and global impression of change (pgic) associated with migraine
WO2021204878A1 (en) 2020-04-08 2021-10-14 INSERM (Institut National de la Santé et de la Recherche Médicale) Use of cdon inhibitors for the treatment of endothelial dysfunction
IL297295A (en) 2020-04-17 2022-12-01 Univ New York Therapeutic musk antibodies
MX2022013405A (en) 2020-04-24 2022-11-14 Sanofi Sa Antitumor combinations containing anti-ceacam5 antibody conjugates and folfox.
MX2022013406A (en) 2020-04-24 2022-11-14 Sanofi Sa Antitumor combinations containing anti-ceacam5 antibody conjugates and cetuximab.
TW202206109A (en) 2020-04-24 2022-02-16 法商賽諾菲公司 Antitumor combinations containing anti-ceacam5 antibody conjugates and folfiri
EP4138925A1 (en) 2020-04-24 2023-03-01 Sanofi Antitumor combinations containing anti-ceacam5 antibody conjugates, trifluridine and tipiracil
CN115956089A (en) * 2020-05-04 2023-04-11 加利福尼亚大学董事会 Inhibitory anti-ENPP 1 antibodies
EP4149558A1 (en) 2020-05-12 2023-03-22 INSERM (Institut National de la Santé et de la Recherche Médicale) New method to treat cutaneous t-cell lymphomas and tfh derived lymphomas
WO2021231976A1 (en) 2020-05-14 2021-11-18 Xencor, Inc. Heterodimeric antibodies that bind prostate specific membrane antigen (psma) and cd3
WO2021236638A1 (en) 2020-05-19 2021-11-25 Amgen Inc. Mageb2 binding constructs
JP2023526529A (en) 2020-05-19 2023-06-21 アンスティテュ・クリー Methods of Diagnosis and Treatment of Cytokine Release Syndrome
AU2021276930A1 (en) 2020-05-21 2023-02-02 Janssen Biotech, Inc. Method of treating inflammatory bowel disease with a combination therapy of antibodies to IL-23 and TNF alpha
AU2021281554A1 (en) 2020-05-29 2022-12-15 Amgen Inc. Adverse effects-mitigating administration of a bispecific antibody construct binding to CD33 and CD3
CR20220611A (en) 2020-06-02 2023-06-07 Arcus Biosciences Inc ANTI-TIGIT ANTIBODIES
US20230235080A1 (en) 2020-06-03 2023-07-27 Bionecure Therapeutics, Inc. Trophoblast cell-surface antigen-2 (trop-2) antibodies
US20230203198A1 (en) 2020-06-04 2023-06-29 Amgen Inc. Bispecific binding constructs
US11702470B2 (en) 2020-06-11 2023-07-18 Imperial College Innovations Limited Use of CXCL13 binding molecules to promote peripheral nerve regeneration
CA3177152A1 (en) 2020-06-12 2021-12-16 David Scott Johnson Recombinant polyclonal proteins targeting covid-19 and methods of use thereof
WO2021255217A1 (en) 2020-06-19 2021-12-23 Heidelberg Pharma Research Gmbh Amatoxin and amatoxin conjugates for use in inhibition of rna virus replication
WO2021259227A1 (en) 2020-06-23 2021-12-30 江苏康缘药业股份有限公司 Anti-cd38 antibody and use thereof
AU2021297540A1 (en) 2020-06-24 2023-02-02 Prothena Biosciences Limited Antibodies recognizing sortilin
CN117597360A (en) 2020-06-25 2024-02-23 瓦西尼斯公司 Application of semaphorin-4D binding molecules in the treatment of RETT syndrome
EP4171527A1 (en) 2020-06-25 2023-05-03 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods of treatment and diagnostic of pathological conditions associated with intense stress
TW202216771A (en) 2020-06-26 2022-05-01 德商拜耳廠股份有限公司 Ccr8 antibodies for therapeutic applications
US20230256114A1 (en) 2020-07-07 2023-08-17 Bionecure Therapeutics, Inc. Novel maytansinoids as adc payloads and their use for the treatment of cancer
WO2022031834A1 (en) 2020-08-05 2022-02-10 Gigagen, Inc. Recombinant polyclonal proteins targeting zika and methods of use thereof
WO2022035998A1 (en) 2020-08-11 2022-02-17 City Of Hope Compositions and uses of sars-cov-2 targeted chimeric antigen receptor modified nk cells
CN116390947A (en) 2020-08-17 2023-07-04 Atb治疗公司 Recombinant immunotoxins comprising a ribosomal toxin or RNAse
WO2022037002A1 (en) 2020-08-21 2022-02-24 上海吉倍生物技术有限公司 Antibody specifically bound to glycosylated ceacam5
BR112023001733A2 (en) 2020-09-04 2023-03-28 Merck Patent Gmbh ANTI-CEACAM5 AND CONJUGATE ANTIBODIES AND THEIR USES
US20230340149A1 (en) 2020-09-07 2023-10-26 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods of treatment of inflammatory bowel diseases
CA3194792A1 (en) 2020-09-15 2022-03-24 Bayer Aktiengesellschaft Novel anti-a2ap antibodies and uses thereof
JP2023543026A (en) 2020-09-28 2023-10-12 シージェン インコーポレイテッド Humanized anti-LIV1 antibodies for the treatment of cancer
JP2023544387A (en) 2020-10-05 2023-10-23 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 GDF3 as a biomarker and biotarget in postischemic cardiac remodeling
CN116368154A (en) 2020-10-08 2023-06-30 阿菲姆德股份有限公司 trispecific binder
WO2022079209A1 (en) 2020-10-15 2022-04-21 INSERM (Institut National de la Santé et de la Recherche Médicale) Tg2 inhibitors for improving mucociliary clearance in respiratory diseases
WO2022084399A1 (en) 2020-10-21 2022-04-28 INSERM (Institut National de la Santé et de la Recherche Médicale) C-terminal sparc fragments for treating cancer
WO2022090801A2 (en) 2020-10-26 2022-05-05 Compugen Ltd. Pvrl2 and/or pvrig as biomarkers for treatment
DE102020128677A1 (en) 2020-10-30 2022-05-05 Rheinisch-Westfälische Technische Hochschule (RWTH) Aachen, Körperschaft des öffentlichen Rechts A new target for the treatment of renal fibrosis
CA3195572A1 (en) 2020-11-04 2022-05-12 Heidelberg Pharma Research Gmbh Composition comprising a combination of immune checkpoint inhibitor and antibody-amatoxin conjugate for use in cancer therapy
WO2022096547A1 (en) 2020-11-05 2022-05-12 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
WO2022096704A1 (en) 2020-11-06 2022-05-12 Amgen Inc. Antigen binding domain with reduced clipping rate
EP4240770A1 (en) 2020-11-06 2023-09-13 Amgen Research (Munich) GmbH Polypeptide constructs selectively binding to cldn6 and cd3
KR20230104256A (en) 2020-11-06 2023-07-07 암젠 인크 Multitargeting bispecific antigen binding molecules of increased selectivity
CN116635421A (en) 2020-11-06 2023-08-22 安进公司 Polypeptide constructs that bind CD3
KR20230113564A (en) 2020-11-06 2023-07-31 인쎄름 (엥스띠뛰 나씨오날 드 라 쌍떼 에 드 라 흐쉐르슈 메디깔) Methods for Diagnosing and Treating Polycystic Ovarian Syndrome (PCOS)
US20240003879A1 (en) 2020-11-27 2024-01-04 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for diagnosis and monitoring of toxic epidermal necrolysis
TW202241436A (en) 2020-11-30 2022-11-01 美商英塞特公司 Combination therapy with an anti-cd19 antibody and parsaclisib
WO2022115120A1 (en) 2020-11-30 2022-06-02 Incyte Corporation Combination therapy with an anti-cd19 antibody and parsaclisib
MX2023006573A (en) 2020-12-03 2023-06-19 Amgen Inc Immunoglobuline constructs with multiple binding domains.
TW202237639A (en) 2020-12-09 2022-10-01 日商武田藥品工業股份有限公司 Compositions of guanylyl cyclase c (gcc) antigen binding agents and methods of use thereof
TW202237638A (en) 2020-12-09 2022-10-01 日商武田藥品工業股份有限公司 Compositions of guanylyl cyclase c (gcc) antigen binding agents and methods of use thereof
WO2022147092A1 (en) 2020-12-29 2022-07-07 Incyte Corporation Combination therapy comprising a2a/a2b inhibitors, pd-1/pd-l1 inhibitors, and anti-cd73 antibodies
US20240059781A1 (en) 2021-01-06 2024-02-22 Tonix Pharma Limited Methods of inducing immune tolerance with modified anti-cd154 antibodies
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
EP4277664A1 (en) 2021-01-13 2023-11-22 Memorial Sloan Kettering Cancer Center Antibody-pyrrolobenzodiazepine derivative conjugate
CA3208974A1 (en) 2021-01-20 2022-07-28 Bioentre Llc Ctla4-binding proteins and methods of treating cancer
KR20230135107A (en) 2021-01-22 2023-09-22 바이엘 악티엔게젤샤프트 LRRC15 antibody and conjugate thereof
US20240226295A9 (en) 2021-02-15 2024-07-11 Takeda Pharmaceutical Company Limited Cell therapy compositions and methods for modulating tgf-b signaling
PE20231503A1 (en) 2021-02-26 2023-09-26 Bayer Ag IL-11 OR IL-11Ra INHIBITORS FOR USE IN THE TREATMENT OF ABNORMAL UTERINE BLEEDING
JP2024510415A (en) 2021-03-01 2024-03-07 スキロム ゲゼルシャフト ミット ベシュレンクテル ハフツング Humanized antibody against iRhom2
WO2022192403A1 (en) 2021-03-09 2022-09-15 Xencor, Inc. Heterodimeric antibodies that bind cd3 and cldn6
US11859012B2 (en) 2021-03-10 2024-01-02 Xencor, Inc. Heterodimeric antibodies that bind CD3 and GPC3
JP2024512478A (en) 2021-03-19 2024-03-19 ハイデルベルク ファルマ リサーチ ゲゼルシャフト ミット ベシュレンクテル ハフツング B lymphocyte-specific amatoxin antibody conjugate
WO2022195504A1 (en) 2021-03-19 2022-09-22 Pfizer Inc. Method of treating osteoarthritis pain with an anti ngf antibody
KR20230162793A (en) 2021-03-26 2023-11-28 얀센 바이오테크 인코포레이티드 Humanized antibodies against paired helical filament tau and uses thereof
US20240174744A1 (en) 2021-03-29 2024-05-30 Scirhom Gmbh Methods of treatment using protein binders to irhom2 epitopes
PE20240357A1 (en) 2021-03-30 2024-02-27 Bayer Ag ANTI-SEMA3A ANTIBODIES AND USES THEREOF
AU2022246675A1 (en) 2021-04-02 2023-10-19 Amgen Inc. Mageb2 binding constructs
BR112023021224A2 (en) 2021-04-12 2024-01-16 Acm Biolabs Pte Ltd POLYMEROSOMES COMPRISING SOLUBLE ENCAPSULATED POLYNUCLEOTIDE AND IONIZABLE LIPID, AS WELL AS METHODS OF PRODUCTION AND USES THEREOF
WO2022218998A1 (en) 2021-04-13 2022-10-20 INSERM (Institut National de la Santé et de la Recherche Médicale) Methods for treating hepatitis b and d virus infection
AU2022269312A1 (en) 2021-05-06 2023-10-19 Amgen Research (Munich) Gmbh Cd20 and cd22 targeting antigen-binding molecules for use in proliferative diseases
EP4347657A1 (en) 2021-05-25 2024-04-10 Seagen Inc. Methods of quantifying anti-cd40 antibodies
EP4347647A1 (en) 2021-06-01 2024-04-10 Institut National de la Santé et de la Recherche Médicale (INSERM) Use of b cell depleting agents for the treatment of rheumatic heart disease
TW202313098A (en) 2021-06-09 2023-04-01 德商埃沃特克國際有限公司 Interferon-associated antigen binding proteins for use for the treatment or prevention of coronavirus infection
US20240287199A1 (en) 2021-06-18 2024-08-29 Alligator Bioscience Ab Novel combination therapies and uses thereof
JP2024527551A (en) 2021-06-29 2024-07-25 シージェン インコーポレイテッド Methods of Treating Cancer Using a Combination of a Nonfucosylated Anti-CD70 Antibody and a CD47 Antagonist
US20240299575A1 (en) 2021-07-01 2024-09-12 Denali Therapeutics Inc. Oligonucleotide conjugates targeted to the transferrin receptor
EP4588524A3 (en) 2021-07-01 2025-09-03 Compugen Ltd. Anti-tigit and anti-pvrig in monotherapy and combination treatments
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
WO2023007374A1 (en) 2021-07-27 2023-02-02 Pfizer Inc. Method of treatment of cancer pain with tanezumab
IL310437A (en) 2021-07-29 2024-03-01 Inst Nat Sante Rech Med Humanized anti-human βig-h3 protein and uses thereof
IL308154A (en) 2021-07-30 2023-12-01 Affimed Gmbh Duplexbodies
AU2022328714A1 (en) 2021-08-20 2024-02-29 The Johns Hopkins University Cell-surface antibody to a specific biomarker of pancreatic beta-cells
WO2023028501A1 (en) 2021-08-23 2023-03-02 Immunitas Therapeutics, Inc. Anti-cd161 antibodies and uses thereof
US20240377402A1 (en) 2021-08-26 2024-11-14 Glycanostics, S.R.O. Glycoprotein biomarkers for diagnosing cancer
KR20240049275A (en) 2021-08-27 2024-04-16 하. 룬드벡 아크티에셀스카브 Treatment of cluster headaches with anti-CGRP antibodies
CN117881784A (en) 2021-08-31 2024-04-12 大正制药株式会社 Anti-growth hormone antibodies
WO2023031366A1 (en) 2021-09-02 2023-03-09 Deutsches Krebsforschungszentrum Stiftung des öffentlichen Rechts Anti-cecam6 antibodies with reduced side-effects
KR20240053007A (en) 2021-09-14 2024-04-23 글리카노스틱스 에스.알.오. Glycoprotein biomarkers for breast cancer diagnosis
EP4401715A1 (en) 2021-09-17 2024-07-24 Institut Curie Bet inhibitors for treating pab1 deficient cancer
TW202327650A (en) 2021-09-23 2023-07-16 美商思進公司 Methods of treating multiple myeloma
JP2024535403A (en) 2021-09-27 2024-09-30 バクシネックス インコーポレーティッド Predictive outcome profiling for the use of anti-semaphorin 4D binding molecules to treat neurodegenerative disorders
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
AU2022358522A1 (en) 2021-09-30 2024-03-28 Seagen Inc. B7-h4 antibody-drug conjugates for the treatment of cancer
UY39967A (en) 2021-10-06 2023-05-15 Immatics Biotechnologies Gmbh Indications for anti-PRAME binders
JP2024539893A (en) 2021-10-27 2024-10-31 イムチェック セラピューティクス エスエーエス Butyrophilin (BTN) 3A activating antibodies for use in methods of treating infectious disorders - Patents.com
EP4426728A1 (en) 2021-11-02 2024-09-11 Visterra, Inc. Fc variants with abolished binding to fcgammar and c1q
EP4426727A2 (en) 2021-11-03 2024-09-11 Hangzhou Dac Biotech Co., Ltd. Specific conjugation of an antibody
IL312060A (en) 2021-11-03 2024-06-01 Affimed Gmbh Bispecific CD16A binders
AU2022381918A1 (en) 2021-11-03 2024-06-13 Affimed Gmbh Bispecific cd16a binders
AU2022382383A1 (en) 2021-11-05 2024-06-20 Eli Lilly And Company Antitumor combinations containing anti-ceacam5 antibody-drug conjugates and anti-vegfr-2 antibodies
US12234294B2 (en) 2021-11-05 2025-02-25 Kiniksa Pharmaceuticals, Gmbh Pharmaceutical composition of a humanized anti-CD40 antibody
EP4448108A1 (en) 2021-11-08 2024-10-23 Immatics Biotechnologies GmbH Adoptive cell therapy combination treatment and compositions thereof
EP4433170A1 (en) 2021-11-18 2024-09-25 Oxford BioTherapeutics Ltd Pharmaceutical combinations
US20250019708A1 (en) 2021-11-19 2025-01-16 Institut Curie Methods for the treatment of hrd cancer and brca-associated cancer
WO2023099763A1 (en) 2021-12-03 2023-06-08 Institut Curie Sirt6 inhibitors for use in treating resistant hrd cancer
EP4453033A1 (en) 2021-12-22 2024-10-30 Incyte Corporation Treatment paradigm for an anti-cd19 antibody therapy
WO2023150181A1 (en) 2022-02-01 2023-08-10 President And Fellows Of Harvard College Methods and compositions for treating cancer
WO2023154906A1 (en) 2022-02-13 2023-08-17 Vaccinex, Inc. Combination therapy with semaphorin-4d blockade and htt-lowering agent for treatment of huntington's disease
KR20240150768A (en) 2022-02-17 2024-10-16 에이티비 테라퓨틱스 Recombinant immunotoxin containing ribosome inactivating protein
AR128745A1 (en) 2022-03-09 2024-06-12 Merck Patent Gmbh ANTI-CEACAM5 ANTIBODIES AND CONJUGATES AND USES THEREOF
JP2025509269A (en) 2022-03-09 2025-04-11 メルク パテント ゲゼルシャフト ミット ベシュレンクテル ハフツング Anti-GD2 Antibodies, Immunoconjugates, and Therapeutic Uses Thereof
CN119173530A (en) 2022-03-11 2024-12-20 詹森药业有限公司 Multispecific antibodies and their uses
IL315541A (en) 2022-03-11 2024-11-01 Janssen Pharmaceutica Nv Multispecific antibodies and uses thereof
WO2023170290A1 (en) 2022-03-11 2023-09-14 Janssen Pharmaceutica Nv Multispecific antibodies and uses thereof
CN119095873A (en) 2022-03-14 2024-12-06 拉姆卡普生物伽马股份公司 Bispecific GPC3xCD28 and GPC3xCD3 antibodies and combinations thereof for targeted killing of GPC3-positive malignant cells
EP4245374A3 (en) 2022-03-18 2024-07-10 Compugen Ltd. Pvrl2 and/or pvrig as biomarkers for treatment
EP4257609A1 (en) 2022-04-08 2023-10-11 iOmx Therapeutics AG Combination therapies based on pd-1 inhibitors and sik3 inhibitors
IL316597A (en) 2022-05-12 2024-12-01 Amgen Res Munich Gmbh Multichain multitargeting bispecific antigen-binding molecules of increased selectivity
WO2023218099A1 (en) 2022-05-13 2023-11-16 argenx BV In utero treatment of a fetus having genetic disease/neuromuscular disease
JP2025518049A (en) 2022-05-26 2025-06-12 コンピュジェン リミテッド Anti-TIGIT antibody preparation
WO2023240287A1 (en) 2022-06-10 2023-12-14 Bioentre Llc Combinations of ctla4 binding proteins and methods of treating cancer
DE102022115364A1 (en) 2022-06-21 2023-12-21 Rheinisch-Westfälische Technische Hochschule (RWTH) Aachen, Körperschaft des öffentlichen Rechts FATP2 in T cells as a target molecule for the treatment of autoimmune diseases
AU2022463987A1 (en) 2022-06-23 2025-01-09 Alligator Bioscience Ab Combination therapies
GB202210965D0 (en) 2022-07-27 2022-09-07 Alligator Bioscience Ab Novel dosages
GB202210957D0 (en) 2022-07-27 2022-09-07 Alligator Bioscience Ab Novel dosages
WO2024023246A1 (en) 2022-07-28 2024-02-01 Philogen S.P.A. Antibody binding to pd1
IL318860A (en) 2022-08-08 2025-04-01 Atb Therapeutics Humanized antibodies against cd79b
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
TW202426498A (en) 2022-09-09 2024-07-01 德商拜耳廠股份有限公司 Medical use of ccr8 antibodies and dosing schedule
EP4587473A1 (en) 2022-09-12 2025-07-23 Institut National de la Santé et de la Recherche Médicale New anti-itgb8 antibodies and its uses thereof
WO2024059675A2 (en) 2022-09-14 2024-03-21 Amgen Inc. Bispecific molecule stabilizing composition
WO2024064600A2 (en) 2022-09-19 2024-03-28 Allogene Therapeutics Inc. B-cell maturation antigen (bcma) anti-idiotypic antibodies
TW202421193A (en) 2022-09-28 2024-06-01 美商英塞特公司 Anti- pd-1/lag-3 bispecific antibodies and uses thereof
KR20250080883A (en) 2022-10-04 2025-06-05 임체크 테라퓨틱스 Combination of BTN3A-activating antibodies, Bcl-2 inhibitors, and hypomethylating agents for use in cancer therapy
GB202215115D0 (en) 2022-10-13 2022-11-30 Univ Nottingham VEGF antibodies
WO2024108053A1 (en) 2022-11-17 2024-05-23 Sanofi Ceacam5 antibody-drug conjugates and methods of use thereof
WO2024115935A1 (en) 2022-11-29 2024-06-06 Inserm Methods for the treatment of b-cell lymphoma using cd39 inhibitors
DE102022132156A1 (en) 2022-12-05 2024-06-06 Rheinisch-Westfälische Technische Hochschule Aachen, Körperschaft des öffentlichen Rechts ADAMTS12 as a target molecule for the treatment of chronic renal failure and renal fibrosis
WO2024126294A1 (en) 2022-12-13 2024-06-20 Evotec International Gmbh Interferon-associated antigen binding proteins for use for the treatment or prevention of parainfluenza virus infection
WO2024126293A1 (en) 2022-12-13 2024-06-20 Evotec International Gmbh Interferon-associated antigen binding proteins for use for the treatment or prevention of respiratory syncytial virus infection
WO2024126289A1 (en) 2022-12-13 2024-06-20 Evotec International Gmbh Interferon-associated antigen binding proteins for use for the treatment or prevention of influenza virus infection
WO2024129756A1 (en) 2022-12-13 2024-06-20 Seagen Inc. Site-specific engineered cysteine antibody drug conjugates
CN120265662A (en) 2022-12-14 2025-07-04 艾洛基治疗公司 CD70 anti-idiotypic antibody
WO2024161038A1 (en) 2023-02-03 2024-08-08 Immusmol Sas Method of predicting success of a cancer therapy
AR131786A1 (en) 2023-02-06 2025-04-30 Bayer Ag COMBINATION OF CCR8 ANTIBODIES WITH DGK INHIBITORS
WO2024170505A1 (en) 2023-02-13 2024-08-22 Institut National de la Santé et de la Recherche Médicale Methods of treatment of iron overload associated diseases
WO2024175699A1 (en) 2023-02-23 2024-08-29 Imcheck Therapeutics Combination of btn3a activating antibody and immune checkpoint inhibitors
WO2024175760A1 (en) 2023-02-24 2024-08-29 Institut National de la Santé et de la Recherche Médicale Methods for the treatment of endometriosis
WO2024180192A1 (en) 2023-03-01 2024-09-06 Sanofi Use of anti-ceacam5 immunoconjugates for treating neuroendocrine cancers expressing ceacam5
EP4427763A1 (en) 2023-03-06 2024-09-11 Sanofi Antitumor combinations containing anti-ceacam5 antibody-drug conjugates, anti-vegfr-2 antibodies and anti-pd1/pd-l1 antibodies
WO2024184476A1 (en) 2023-03-07 2024-09-12 Institut Curie Ung/udg inhibition in brca-associated cancer
AU2024232598A1 (en) 2023-03-08 2025-07-17 Amgen Inc. Controlled-ice nucleation lyophilization process for bispecific molecules
US20240343820A1 (en) 2023-03-09 2024-10-17 Kite Pharma, Inc. Antigen binding molecules and methods of use
AU2024237541A1 (en) 2023-03-13 2025-08-28 Heidelberg Pharma Research Gmbh Subcutaneously administered antibody-drug conjugates for use in cancer treatment
WO2024194673A1 (en) 2023-03-21 2024-09-26 Institut Curie Methods for the treatment of dedifferentiated liposarcoma
WO2024194401A1 (en) 2023-03-21 2024-09-26 Institut Curie Vps4b inhibitor for use in methods for the treatment of hrd cancer
WO2024194402A1 (en) 2023-03-21 2024-09-26 Institut Curie Farnesyl transferase inhibitor for use in methods for the treatment of hrd cancer
TW202500194A (en) 2023-03-23 2025-01-01 法商賽諾菲公司 Ceacam5 mrna assay for patient selection in cancer therapy
WO2024213635A1 (en) 2023-04-12 2024-10-17 Evotec International Gmbh Interferon-associated antigen binding proteins for use for the treatment or prevention of hepatitis delta virus infection
WO2024213782A1 (en) 2023-04-13 2024-10-17 Institut Curie Methods for the treatment of t-cell acute lymphoblastic leukemia
WO2024215978A1 (en) 2023-04-14 2024-10-17 Incyte Corporation Use of an anti-tgfbetar2/pd-1 bispecific antibody to treat cancer
TW202506731A (en) 2023-04-27 2025-02-16 法商感應檢查療法公司 Methods for treating multidrug resistant bacterial infections
WO2024235870A1 (en) 2023-05-15 2024-11-21 Argenx B.V. Antibodies for use in agrin-deficient disorders
US20250011441A1 (en) 2023-05-17 2025-01-09 Syndax Pharmaceuticals, Inc. Methods of treating chronic graft-versus-host disease-related bronchiolitis obliterans syndrome using an anti-colony stimulating factor 1 receptor antibody
WO2024236156A1 (en) 2023-05-17 2024-11-21 Institut National de la Santé et de la Recherche Médicale Anti-cathepsin-d antibodies
WO2024243217A1 (en) 2023-05-25 2024-11-28 BioLegend, Inc. Ceacam6 binding antibodies and antigen-binding fragments thereof
WO2024251733A1 (en) 2023-06-05 2024-12-12 Sanofi Antitumor combinations containing anti-ceacam5 antibody-drug conjugates, anti-pd1/pd-l1 antibodies and anti-ctla4 antibodies
WO2024251839A1 (en) 2023-06-05 2024-12-12 Pure Biologics Spólka Akcyjna Anti-garp antibodies and methods of use
WO2024251787A1 (en) 2023-06-05 2024-12-12 Pure Biologics Spólka Akcyjna Anti ror1 antibodies and method of use
WO2024259378A1 (en) 2023-06-14 2024-12-19 Amgen Inc. T cell engager masking molecules
WO2024261239A1 (en) 2023-06-23 2024-12-26 Imcheck Therapeutics Bispecific antibodies targeting btn3a and the pd-1/pd-l1 inhibitory axis
WO2024261733A1 (en) 2023-06-23 2024-12-26 H. Lundbeck A/S Combinational treatment
WO2025003461A1 (en) 2023-06-30 2025-01-02 Institut National de la Santé et de la Recherche Médicale Methods of treatment of metabolic disorders
WO2025012417A1 (en) 2023-07-13 2025-01-16 Institut National de la Santé et de la Recherche Médicale Anti-neurotensin long fragment and anti-neuromedin n long fragment antibodies and uses thereof
WO2025024272A1 (en) 2023-07-23 2025-01-30 Incyte Corporation Methods of treating chronic graft-versus-host disease using an anti-colony stimulating factor 1 receptor antibody
WO2025032158A1 (en) 2023-08-08 2025-02-13 Institut National de la Santé et de la Recherche Médicale Method to treat tauopathies
WO2025038736A1 (en) 2023-08-15 2025-02-20 Gigagen, Inc. Methods of analyzing recombinant polyclonal proteins
TW202515895A (en) 2023-08-15 2025-04-16 美商吉加根公司 Recombinant polyclonal proteins targeting hepatitis b virus (hbv) and methods of use thereof
WO2025040598A2 (en) 2023-08-18 2025-02-27 Immatics Biotechnologies Gmbh Peptides displayed by mhc for use in immunotherapy against different types of cancer
WO2025059508A1 (en) 2023-09-15 2025-03-20 Prothena Biosciences Limited Compositions and methods of reducing immunogenicity and improving stability of antibodies
EP4527851A1 (en) 2023-09-22 2025-03-26 Bayer Aktiengesellschaft Bispecific antibodies binding ltbr and lrrc15
WO2025068157A1 (en) 2023-09-25 2025-04-03 Stromacare COMBINATION OF A βIG-H3 ANTAGONIST AND A PDFG-AA ANTAGONIST FOR THE TREATMENT OF CANCER
WO2025068180A1 (en) 2023-09-25 2025-04-03 Institut National de la Santé et de la Recherche Médicale Methods of treatment of cancer by targetting cancer - associated fibroblasts
WO2025068393A1 (en) 2023-09-27 2025-04-03 Institut Curie Methods for the treatment of fibrotic related diseases
WO2025072313A1 (en) 2023-09-27 2025-04-03 BioLegend, Inc. Anti-gpc4 antibodies
WO2025073765A1 (en) 2023-10-03 2025-04-10 Institut National de la Santé et de la Recherche Médicale Methods of prognosis and treatment of patients suffering from melanoma
WO2025073890A1 (en) 2023-10-06 2025-04-10 Institut National de la Santé et de la Recherche Médicale Method to capture circulating tumor extracellular vesicles
WO2025076389A1 (en) 2023-10-06 2025-04-10 Seagen Inc. Methods of treating advanced solid tumors with b7-h4 antibody-drug conjugates
WO2025109043A2 (en) 2023-11-22 2025-05-30 Institut National de la Santé et de la Recherche Médicale Use of neutralizing anti-agr2 antibodies for preventing resistance to chemotherapy
EP4563586A1 (en) 2023-11-28 2025-06-04 Université Paris Cité New inhibitors of lrrk2/pp1 interaction
WO2025114411A1 (en) 2023-11-29 2025-06-05 Institut National de la Santé et de la Recherche Médicale New method to treat brain or neurologic disorders
US20250186450A1 (en) 2023-12-06 2025-06-12 Incyte Corporation COMBINATION THERAPY COMPRISING DGK INHIBITORS and PD-1/PD-L1 INHIBITORS
WO2025163468A1 (en) 2024-01-30 2025-08-07 Seagen Inc. Anti-pd-l1 antibodies and antibody-drug conjugates and their use in the treatment of cancer
WO2025162964A1 (en) 2024-01-30 2025-08-07 Institut National de la Santé et de la Recherche Médicale Methods for the treatment of endometriosis
WO2025171411A1 (en) 2024-02-09 2025-08-14 Herophilus, Inc. Compositions and methods related to modulating macrophage migration inhibitory factor (mif)-cd74 signaling and related treatments for neuroinflammatory conditions
WO2025172525A1 (en) 2024-02-15 2025-08-21 Merck Patent Gmbh Anti-gd2 antibodies and immunoconjugates for the treatment of gd2 positive cancer
WO2025172924A1 (en) 2024-02-15 2025-08-21 Janssen Biotech, Inc. Anti-transferrin receptor compositions and methods thereof
WO2025176777A1 (en) 2024-02-20 2025-08-28 Institut Curie Dut inhibition in homologous recombination deficiency cancer
WO2025180665A1 (en) 2024-02-28 2025-09-04 Evotec International Gmbh Antibodies binding to cd2, and multifunctional molecules comprising such antibodies
US20250276074A1 (en) 2024-03-01 2025-09-04 Prelude Therapeutics Incorporated Brm and brg1 targeting antibody-drug conjugates and methods of use thereof
WO2025186043A1 (en) 2024-03-06 2025-09-12 Bayer Aktiengesellschaft Pharmaceutical formulation for anti-ccr8 antibodies
WO2025196639A1 (en) 2024-03-21 2025-09-25 Seagen Inc. Cd25 antibodies, antibody-drug conjugates, and uses thereof

Citations (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4348376A (en) 1980-03-03 1982-09-07 Goldenberg Milton David Tumor localization and therapy with labeled anti-CEA antibody
EP0239400A2 (en) 1986-03-27 1987-09-30 Medical Research Council Recombinant antibodies and methods for their production
EP0323806A1 (en) 1988-01-05 1989-07-12 Ciba-Geigy Ag Novel chimeric antibodies
EP0328404A1 (en) 1988-02-12 1989-08-16 Btg International Limited Modified antibodies
EP0365209A2 (en) 1988-10-17 1990-04-25 Becton, Dickinson and Company Anti-leu 3A amino acid sequence
WO1990007861A1 (en) 1988-12-28 1990-07-26 Protein Design Labs, Inc. CHIMERIC IMMUNOGLOBULINS SPECIFIC FOR p55 TAC PROTEIN OF THE IL-2 RECEPTOR
EP0403156A1 (en) 1989-06-07 1990-12-19 Genzyme Corporation Improved monoclonal antibodies against the human alpha/beta t-cell receptor, their production and use
WO1992004381A1 (en) 1990-09-11 1992-03-19 Scotgen Limited Novel antibodies for treatment and prevention of infection in animals and man
WO1992011018A1 (en) 1990-12-19 1992-07-09 Protein Design Labs, Inc. Improved humanized immunoglobulins
WO1992015683A1 (en) 1991-03-06 1992-09-17 MERCK Patent Gesellschaft mit beschränkter Haftung Humanized and chimeric monoclonal antibodies
WO1992016553A1 (en) 1991-03-18 1992-10-01 New York University Monoclonal and chimeric antibodies specific for human tumor necrosis factor
US5219996A (en) * 1987-09-04 1993-06-15 Celltech Limited Recombinant antibodies and methods for their production in which surface residues are altered to cysteine residues for attachment of effector or receptor molecules
US5859205A (en) 1989-12-21 1999-01-12 Celltech Limited Humanised antibodies
US5929212A (en) 1989-12-21 1999-07-27 Celltech Therapeutics Limited CD3 specific recombinant antibody
US5994510A (en) 1990-12-21 1999-11-30 Celltech Therapeutics Limited Recombinant antibodies specific for TNFα
US6750325B1 (en) 1989-12-21 2004-06-15 Celltech R&D Limited CD3 specific recombinant antibody

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5225539A (en) * 1986-03-27 1993-07-06 Medical Research Council Recombinant altered antibodies and methods of making altered antibodies
JP2763138B2 (en) 1989-06-23 1998-06-11 株式会社東芝 Portable information devices

Patent Citations (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4348376A (en) 1980-03-03 1982-09-07 Goldenberg Milton David Tumor localization and therapy with labeled anti-CEA antibody
EP0239400A2 (en) 1986-03-27 1987-09-30 Medical Research Council Recombinant antibodies and methods for their production
US5219996A (en) * 1987-09-04 1993-06-15 Celltech Limited Recombinant antibodies and methods for their production in which surface residues are altered to cysteine residues for attachment of effector or receptor molecules
EP0323806A1 (en) 1988-01-05 1989-07-12 Ciba-Geigy Ag Novel chimeric antibodies
EP0328404A1 (en) 1988-02-12 1989-08-16 Btg International Limited Modified antibodies
WO1989007452A1 (en) 1988-02-12 1989-08-24 Medical Research Council Improvements in or relating to antibodies
EP0365209A2 (en) 1988-10-17 1990-04-25 Becton, Dickinson and Company Anti-leu 3A amino acid sequence
WO1990007861A1 (en) 1988-12-28 1990-07-26 Protein Design Labs, Inc. CHIMERIC IMMUNOGLOBULINS SPECIFIC FOR p55 TAC PROTEIN OF THE IL-2 RECEPTOR
US5530101A (en) * 1988-12-28 1996-06-25 Protein Design Labs, Inc. Humanized immunoglobulins
EP0403156A1 (en) 1989-06-07 1990-12-19 Genzyme Corporation Improved monoclonal antibodies against the human alpha/beta t-cell receptor, their production and use
US5929212A (en) 1989-12-21 1999-07-27 Celltech Therapeutics Limited CD3 specific recombinant antibody
US5859205A (en) 1989-12-21 1999-01-12 Celltech Limited Humanised antibodies
US6632927B2 (en) * 1989-12-21 2003-10-14 Celltech Therapeutics Limited Humanized antibodies
US6750325B1 (en) 1989-12-21 2004-06-15 Celltech R&D Limited CD3 specific recombinant antibody
US7241877B2 (en) 1989-12-21 2007-07-10 Celltech R&D Limited Humanised antibodies
US7244832B2 (en) 1989-12-21 2007-07-17 Celltech R&D Limited Humanised antibodies
US7244615B2 (en) 1989-12-21 2007-07-17 Celltech R&D Limited Humanized antibodies
US7262050B2 (en) 1989-12-21 2007-08-28 Celltech R&D Limited Humanised antibodies
WO1992004381A1 (en) 1990-09-11 1992-03-19 Scotgen Limited Novel antibodies for treatment and prevention of infection in animals and man
WO1992011018A1 (en) 1990-12-19 1992-07-09 Protein Design Labs, Inc. Improved humanized immunoglobulins
US5994510A (en) 1990-12-21 1999-11-30 Celltech Therapeutics Limited Recombinant antibodies specific for TNFα
WO1992015683A1 (en) 1991-03-06 1992-09-17 MERCK Patent Gesellschaft mit beschränkter Haftung Humanized and chimeric monoclonal antibodies
WO1992016553A1 (en) 1991-03-18 1992-10-01 New York University Monoclonal and chimeric antibodies specific for human tumor necrosis factor

Non-Patent Citations (25)

* Cited by examiner, † Cited by third party
Title
Amit, A.G. et al "Three-dimensional structure of an antigen-antibody complex at 2.8 A resolution" Science vol. 233, Aug. 15, 1986, pp. 747-753.
Chambers 20th Century Dictionary (1983 Edition) p. 1128.
Chothia, C. et al., "Conformations of Immunoglobin Hypervariable Regions", Nature, vol. 342, Dec. 1989, pp. 877-883.
Chugai Pharm. Co. Ltd. v. UCB Pharma S.A., et al., HP-2016-000063: Opinion.
Harwood, P.J. et al., "Mapping Epitope Characteristics on Carcinoembryonic Antigen," Br. J. Cancer, vol. 54, Jul. 1986, pp. 75-82.
Jones, P. T. et al., "Replacing the complementarity-Determining Regions in a Human Antibody with those from a Mouse", Nature, vol. 321, May 1986, pp. 522-525.
Medimmune, Inc. v. Celltech R&D Ltd., No. 1:04-cv-00143 (D.D.C.) Plaintiff Medimmune, Inc.'s Complaint, filed Jan. 30, 2004, eight pages.
Medimmune, Inc. v. Celltech R&D Ltd., No. 1:04-cv-00143 (D.D.C.): Defendant Celltech R&D Ltd.'s Answer filed Jan. 11, 2005, six pages.
Medimmune, Inc. v. Celltech R&D Ltd., No. 1:04-cv-00143 (D.D.C.): Stipulation of Dismissal dated Jun. 27, 2005, two pages.
Panka, D. J. et al., "Variable region framework differences result in decreased or increased affinity of variant anti-digoxin antibodies" Proc Natl Acad Sci USA, vol. 85, May 1988, pp. 3080-3084.
Queen, C. et al., "A Humanized Antibody that Binds to the Interleukin 2 Receptor", Proc. Natl. Acad. Sci., USA, vol. 86, Dec. 1989, pp. 10029-10033.
Reichmann, L. et al., "Reshaping Human Antibodies for Therapy", Nature, vol. 332, Mar. 1988, pp. 323-327.
Roberts, S. et al., "Generation of Antibody with Enhanced Affinity and Specificity for its Antigen by Protein Engineering", Nature, vol. 328, Aug. 1987, pp. 731-734.
Rothlein, R. et al., "Induction of intercellular adhesion molecule 1 on primary and continuous cell lines by pro-inflammatory cytokines. Regulation by pharmacologic agents and neutralizing antibodies," J. Immunol. vol. 141, Sep. 1988, pp. 1665-1669.
Ruco, L. P. et al., "Immunoreactivity for IL-1 beta and TNF alpha in human lymphoid and nonlymphoid tissues," Amer. J. Path. 135(5), Nov. 1989, pp. 889-897.
Rudikoff, S. et al., "Single amino acid substitution altering antigen-binding specificity," Proc Natl Acad Sci USA, vol. 79, Mar. 1982, pp. 1979-1983.
Sears, R. et al., "Phase II Clinical Trial of a Murine Monoclonal Antibody Cytotoxic for Gastrointestinal Adenocarcinoma," Cancer Res., vol. 45, Nov. 1985, pp. 5910-5913.
Takeda Pharmaceuticals America, Inc. v. UCB Biopharma SPRL, No. 3:18-cv-00078 (E.D. Va.): Plaintiff Takeda's Amended Complaint, filed Feb. 13, 2018, 60 pages.
Takeda Pharmaceuticals America, Inc. v. UCB Biopharma SPRL, No. 3:18-cv-00078 (E.D. Va.): Plaintiff Takeda's Complaint, filed Feb. 1, 2018, 47 pages.
Takeda Pharmaceuticals America, Inc. v. UCB Biopharma SPRL, No. 3:18-cv-00078 (E.D. Va.): Stipulation and Order, dated May 2, 2018, one page.
UCB Biopharma SPRL v. Medimmune, LLC, No. 1-16-cv-01177 (D. Del.): Defendant Medimmune, LL.C's Answer and Counterclaim, filed on May 1, 2017, 15 pages.
UCB Biopharma SPRL v. Medimmune, LLC, No. 1-16-cv-01177 (D. Del.): Plaintiff UCB Biopharma SPRL's Complaint, filed Dec. 12, 2016, six pages.
UCB Biopharma SPRL v. Medimmune, LLC, No. 1-16-cv-01177 (D. Del.): Stipulation and Order, dated May 30, 2017, two pages.
Verhoeyen, M. et al., "Reshaping Human Antibodies: Grafting an Antilysozyme Activity", Science, vol. 239, Apr. 1988, pp. 1534-1536.
Ward, E. S. et al., "Binding activities of a Repertoire of Single Immunoglobulin Variable Domains Secreted from Escherichia coli", Nature, vol. 341, Oct. 1989, pp. 544-546.

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USRE50178E1 (en) * 1989-12-21 2024-10-22 UCB Biopharma SRL Humanised antibodies
US12383553B2 (en) 2014-03-27 2025-08-12 Children's Medical Center Corporation Method for detecting or treating triple negative breast cancer

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