WO2001064750A2 - Modulation of the activity of the endothelial cel surface receptor ecrtp/dep-1 in the regulation of angiogenesis - Google Patents
Modulation of the activity of the endothelial cel surface receptor ecrtp/dep-1 in the regulation of angiogenesis Download PDFInfo
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- WO2001064750A2 WO2001064750A2 PCT/US2001/006178 US0106178W WO0164750A2 WO 2001064750 A2 WO2001064750 A2 WO 2001064750A2 US 0106178 W US0106178 W US 0106178W WO 0164750 A2 WO0164750 A2 WO 0164750A2
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- ecrtp
- dep
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Classifications
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K16/00—Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies
- C07K16/18—Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans
- C07K16/28—Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants
- C07K16/2896—Immunoglobulins [IGs], e.g. monoclonal or polyclonal antibodies against material from animals or humans against receptors, cell surface antigens or cell surface determinants against molecules with a "CD"-designation, not provided for elsewhere
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P17/00—Drugs for dermatological disorders
- A61P17/06—Antipsoriatics
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P19/00—Drugs for skeletal disorders
- A61P19/08—Drugs for skeletal disorders for bone diseases, e.g. rachitism, Paget's disease
- A61P19/10—Drugs for skeletal disorders for bone diseases, e.g. rachitism, Paget's disease for osteoporosis
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P27/00—Drugs for disorders of the senses
- A61P27/02—Ophthalmic agents
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P29/00—Non-central analgesic, antipyretic or antiinflammatory agents, e.g. antirheumatic agents; Non-steroidal antiinflammatory drugs [NSAID]
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P35/00—Antineoplastic agents
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P35/00—Antineoplastic agents
- A61P35/04—Antineoplastic agents specific for metastasis
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P9/00—Drugs for disorders of the cardiovascular system
- A61P9/10—Drugs for disorders of the cardiovascular system for treating ischaemic or atherosclerotic diseases, e.g. antianginal drugs, coronary vasodilators, drugs for myocardial infarction, retinopathy, cerebrovascula insufficiency, renal arteriosclerosis
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K2217/00—Genetically modified animals
- A01K2217/07—Animals genetically altered by homologous recombination
- A01K2217/075—Animals genetically altered by homologous recombination inducing loss of function, i.e. knock out
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K2317/00—Immunoglobulins specific features
- C07K2317/30—Immunoglobulins specific features characterized by aspects of specificity or valency
- C07K2317/34—Identification of a linear epitope shorter than 20 amino acid residues or of a conformational epitope defined by amino acid residues
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K2317/00—Immunoglobulins specific features
- C07K2317/50—Immunoglobulins specific features characterized by immunoglobulin fragments
- C07K2317/55—Fab or Fab'
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07K—PEPTIDES
- C07K2319/00—Fusion polypeptide
Definitions
- the present invention relates generally to the modulation of the activity of an endothelial cell surface receptor in the regulation of endothelial cell proliferation and migration and in the regulation of angiogenesis. More particularly, the present invention relates to the modulation of ECRTP/DEP-1 activity in the regulation of endothelial cell proliferation and migration and in the regulation of angiogenesis.
- angiogenesis means the generation of new blood vessels into a tissue or organ. Under normal physiological conditions, humans or animals undergo angiogenesis only in very specific restricted situations. For example, angiogenesis is normally observed in wound healing, fetal and embryonal development and formation of the corpus luteum, endometrium and placenta.
- endothelium means a thin layer of flat epithelial cells that lines serous cavities, lymph vessels, and blood vessels.
- endothelial modulating activity means the capability of a molecule to modulate angiogenesis in general and, for example, to stimulate or inhibit the growth of endothelial cells in culture. Both controlled and uncontrolled angiogenesis are thought to proceed in a similar manner.
- angiogenesis plays a major role in the metastasis of a cancer. If this angiogenic activity could be repressed or eliminated, then the tumor, although present, would not grow. In the disease state, prevention of angiogenesis could avert the damage caused by the invasion of the new microvascular system. Therapies directed at control of the angiogenic processes could lead to the abrogation or mitigation of these diseases.
- VEGF Vascular endothelial growth factor
- an antibody which preferentially binds the ECRTP/DEP-1.
- the antibody comprises a monoclonal antibody or fragment or derivative thereof which preferentially binds the ECRTP/DEP-1.
- a method of screening candidate substances for an ability to modulate ECRTP/DEP-1 biological activity comprises establishing test samples comprising an ECRTP/DEP-1 polypeptide or fragment thereof; administering a candidate substance to the test samples; and measuring the interaction, effect, or combination thereof, of the candidate substance on the test sample to thereby determine the ability of the candidate substance to modulate ECRTP/DEP-1 biological activity.
- a method for delivering a therapeutic composition to a tissue in a patient comprising the steps of introducing into the patient a biologically effective amount of an antibody operatively linked to a selected therapeutic agent, the antibody preferentially binding to an ECRTP/DEP-1 on the surface of the endothelial cells, whereby an ECRTP/DEP-1 within the vertebrate subject is contacted by the antibody; and delivering the therapeutic composition to the tissue through the contacting of the ECRTP/DEP-1 with the composition.
- Figure 10 is line graph depicting that ECRPTAbl Fab fragments attenuate endothelial density mediated growth arrest.
- HMEC-1 cells of the indicated numbers were plated in on coverslips in 12 well dishes at time 0 in growth media supplemented by no addition (NA) or ECRTPAbl (67nM). Twenty four hours later BrdU staining was assayed as described in Methods of Example 2 and the percentage of BrdU positive cells scored by counting of five independent fields for each condition (greater than 400 cells/point). Data represent means + SEM.
- angiogenic diseases including but not limited to, inflammatory disorders such as immune and non-immune inflammation, chronic articular rheumatism and psoriasis, disorders associated with inappropriate or inopportune invasion of vessels such as diabetic retinopathy, neovascular glaucoma, capillary proliferation in atherosclerotic plaques and osteoporosis, and cancer associated disorders, such as solid tumors, solid tumor metastases, angiofibromas, retrolental fibroplasia, hemangiomas, Karposi's sarcoma and the like cancers which require neovascularization to support tumor growth.
- inflammatory disorders such as immune and non-immune inflammation, chronic articular rheumatism and psoriasis
- disorders associated with inappropriate or inopportune invasion of vessels such as diabetic retinopathy, neovascular glaucoma, capillary proliferation in atherosclerotic plaques and osteoporosis
- cancer associated disorders such as
- the methods of the present invention are particularly useful in the treatment of warm-blooded vertebrates. Therefore, the invention concerns mammals and birds.
- compositions that contains active ingredients dissolved or dispersed therein are well understood in the art and need not be limited based on formulation.
- compositions are prepared as injectables either as liquid solutions or suspensions; however, solid forms suitable for solution, or suspensions, in liquid prior to use can also be prepared.
- the preparation can also be emulsified.
- Pharmaceutically acceptable salts include the acid addition salts (formed with the free amino groups of the polypeptide) that are formed with inorganic acids such as, for example, hydrochloric or phosphoric acids, or such organic acids as acetic, tartaric, mandelic and the like. Salts formed with the free carboxyl groups can also be derived from inorganic bases such as, for example, sodium, potassium, ammonium, calcium or ferric hydroxides, and such organic bases as isopropylamine, trimethylamine, 2-ethylamino ethanol, histidine, procaine and the like.
- inorganic acids such as, for example, hydrochloric or phosphoric acids, or such organic acids as acetic, tartaric, mandelic and the like.
- Salts formed with the free carboxyl groups can also be derived from inorganic bases such as, for example, sodium, potassium, ammonium, calcium or ferric hydroxides, and such organic bases as isopropylamine, trimethylamine, 2-ethyla
- a polypeptide of the present invention comprises no more than about 100 amino acid residues, preferably no more than about 60 residues, more preferably no more than about 30 residues.
- Peptides can be linear or cyclic.
- a subject polypeptide need not be identical to the amino acid residue sequence of an ECRTP/DEP-1 natural ligand, so long as it includes required binding sequences and is able to function as an ECRTP/DEP-1 modulator in an assay such as is described herein.
- An additional way to determine whether a monoclonal antibody has the specificity of a monoclonal antibody of the invention is to determine the amino acid residue sequence of the CDR regions of the antibodies in question.
- Antibody molecules having identical, or functionally equivalent, amino acid residue sequences in their CDR regions have the same binding specificity. Methods for sequencing polypeptides are well known in the art.
- a screening assay of the present invention generally involves determining the ability of a candidate substance to affect cell growth, cell survival, endothelial cell migration and proliferation, density induced growth arrest and/or angiogenesis, and/or ECRTP/DEP-1 phosphorylation in a target cell, such as the screening of candidate substances to identify those that modulate or alter cell growth, cell survival, endothelial cell migration and proliferation, density induced growth arrest and/or angiogenesis, and/or ECRTP/DEP-1 phosphorylation.
- Target cells can be either naturally occurring cells known to contain an ECRTP/DEP-1 or transfected cell produced in accordance with a process of transfection set forth herein and as are known in the art.
- the screening methods of the present invention are used to screen for biologically active counter-receptors (ligands) by screening for growth inhibitory activity in biological fractions (plasma, cell lysates, cell membrane extracted proteins) by comparing growth inhibition on CHO/ECRTP/DEP-1 to CHO parent cell lines.
- biologically active counter-receptors ligands
- biological fractions plasma, cell lysates, cell membrane extracted proteins
- a screening assay provides a cell under conditions suitable for testing modulation or alteration of cell growth, cellendothelial cell migration and proliferation, density induced growth arrest, angiogenesis, and/or ECRTP/DEP-1 phosphorylation. These conditions include but are not limited to pH, temperature, tonicity, the presence of relevant factors involved in the cell cycle (e.g., growth factors), and relevant modifications to the polypeptide such as glycosylation or prenylation. It is contemplated that an ECRTP/DEP-1 can be expressed and utilized in a prokaryotic or eukaryotic cell. The host cell can also be fractionated into sub-cellular fractions where the receptor can be found.
- linkers While numerous types of disulfide-bond containing linkers are known which can successfully be employed to conjugate the toxin moiety with the targeting agent, certain linkers will generally be preferred over other linkers, based on differing pharmacologic characteristics and capabilities. For example, linkers that contain a disulfide bond that is sterically "hindered” are to be preferred, due to their greater stability in vivo, thus preventing release of the toxin moiety prior to binding at the site of action.
- An exemplary cross-linking reagent is SMPT, which is a bifunctional cross-linker containing a disulfide bond that is "sterically hindered" by an adjacent benzene ring and methyl groups. It is believed that stearic hindrance of the disulfide bond serves a function of protecting the bond from attack by thiolate anions such as glutathione which can be present in tissues and blood, and thereby help in preventing decoupling of the conjugate prior to its delivery to the site of action by the binding agent.
- thiolate anions such as glutathione which can be present in tissues and blood
- Nucleic acids that can be utilized herein comprise nucleic acid sequences that encode a targeting agent of interest and nucleic acid sequences that encode a toxin agent of interest. Such target agent-encoding and toxin agent-encoding nucleic acid sequences are attached in a manner such that translation of the nucleic acid yields the targeting agent/toxin compounds of the invention. Standard techniques, such as those described above can be used to construct expression vectors containing the above-described nucleic acids and appropriate transcriptional/translational control sequences. A variety of host- expression vector systems can be utilized. These include but are not limited to microorganisms such as bacteria (e.g., E. coH, B,.
- a number of expression vectors can be advantageously selected depending upon the use intended for the targeting agent/toxin compound being expressed. For example, when large quantities of targeting agent/toxin compound are to be produced for the generation of antibodies or to screen peptide libraries, vectors which direct the expression of high levels of fusion protein products that are readily purified can be desirable. Such vectors include but are not limited to the .
- a host cell strain can be chosen which modulates the expression of the inserted sequences, or modifies and processes the gene product in the specific fashion desired. Such modifications (e.g., glycosylation) and processing (e.g., cleavage) of protein products can be important for the function of the protein.
- Different host cells have characteristic and specific mechanisms forthe post-translational processing and modification of proteins. Appropriate cells lines or host systems can be chosen to ensure the correct modification and processing of the foreign protein expressed.
- eukaryotic host cells which possess the cellular machinery for proper processing of the primary transcript, glycosylation, and phosphorylation of the gene product can be used.
- engineered cells can be allowed to grow for one or two (1-2) days in an enriched media, and then are switched to a selective media.
- the selectable marker in the recombinant plasmid confers resistance to the selection and allows cells to stably integrate the plasmid into their chromosomes and grow to form foci which in turn can be cloned and expanded into cell lines.
- Exemplary agents include, but are not limited to, such as steroids, cytosine arabinoside, methotrexate, aminopterin, anthracyclines, mitomycin C, vinca alkaloids, demecolcine, etoposide, mithramycin, and the like.
- This list is, of course, merely exemplary in that the technology for attaching pharmaceutical agents to targeting agents, such as antibodies, for specific delivery to tissues is well established.
- ECRTP/DEP-1 also called byp-1 , HPTPh, and CD148 expression has been identified in neonatal smooth muscle cells, in breast and thryoid cancer cell lines, and in all hematopoietic lineages. Keane et al., Cancer Research 56:4236-4243 (1996); de la Fuente-Garcia et al., Blood 91 : 800-2809 (1998).
- ECRTP/DEP-1 expression was identified in arterial endothelial cells of the kidney, in situ hybridization experiments failed to detect giomerular capillary localization of ECRTP/DEP-1 mRNA. Borges et al., Circulation Research 79:570-580 (1996). The developmental timing and distribution of its expression have not been previously reported.
- ECRTP/DEP-1 Monoclonal antibodies were developed against ECRTP/DEP-1 ectodomain epitopes to characterize its distribution in the renal circulation of mature and developing kidney.
- ECRTP/DEP-1 is expressed at high levels in giomerular, peritubular and renal arterial endothelial cells and shows a pattern of distribution in vivo and in vitro that suggests it contributes to cell-cell recognition required for capillary assembly and maintenance.
- METHODS Cell lines and cell culture - Primary human renal microvascular endothelial cells (HRMEC) were isolated, cultured, and used at third or fourth passage after thawing, as described. Martin et al., In Vitro Cell Dev Biol 33:261-269 (1997).
- Coverslips were washed with phosphate buffered saline, blocked with 5% goat serum for 30 min at room temperature, incubated with ECRTPAb-2 (10 ⁇ g/mL) for 60 min, washed, then incubated with FITC conjugated goat anti- mouse IgG (Jackson Immunoresearch Laboratory, Westgrove, Pennsylvania) for 60 min. Coverslips were mounted and analyzed by confocal microscopy (equipment sold under the registered trademarkZEISS ® LSM410TM by Zeiss, Oberkochen, Germany).
- Tissue immunolocalization - Human kidney tissue was snap-frozen in a dry ice-acetone bath. Cryostat sections (4mm) were fixed in acetone at -20°C for 10 min, washed with phosphate buffered saline, and pre-adsorbed with avidin-biotin blocking reagents (Vector Laboratories, Inc. of Burlingame, California) according to manufacturer's instructions.
- EXAMPLE 3 Method of Screening for Endogenous Ligand of ECRTP/DEP-1 Labeled ECRTP/DEP-1 is used to perform binding studies to identify cells with ECRTP/DEP-1 ligands using Scatchard analysis; and to perform cross-linking studies which demonstrate the ECRTP/DEP-1 ligand(s) on polyacrylamide gels. These initial characterization methods are used to identify cells with high and low numbers of ECRTP/DEP-1 ligand(s) for purification and isolation studies. Once a cell line with high levels of ECRTP/DEP-1 ligand has been identified, then the protein is purified by the following approaches: Approach A: Biochemical purification
- ECRTP/DEP-1 and to a purified and isolated ligand for an ECRTP/DEP-1.
- the method comprises contacting cells or cell lysates having the ligand or suspected of having the ligand with ECRTP/DEP-1 ; and isolating the ligand which binds with ECRTP/DEP-1.
- the cells having the ligand are identified by labeling the ECRTP/DEP-1 ; screening cell cultures with the labeled ECRTP/DEP-1 ; and isolating cells that bind an elevated amount of the labeled ECRTP/DEP-1.
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Priority Applications (7)
Application Number | Priority Date | Filing Date | Title |
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AU3989801A AU3989801A (en) | 2000-03-01 | 2001-02-27 | Modulation of endothelial cell surface receptor activity in the regulation of angiogenesis |
IL15137001A IL151370A0 (en) | 2000-03-01 | 2001-02-27 | An antibody that binds to ecrtp/dep-1 and pharmaceutical compositions containing an ecrtp/dep-1 polypeptide or amide |
EP01914520A EP1261644A2 (en) | 2000-03-01 | 2001-02-27 | Modulation of the activity of the endothelial cell surface receptor ecrtp/dep-1 in the regulation of angiogenesis |
CA002401621A CA2401621A1 (en) | 2000-03-01 | 2001-02-27 | Modulation of the activity of the endothelial cel surface receptor ecrtp/dep-1 in the regulation of angiogenesis |
MXPA02008462A MXPA02008462A (en) | 2000-03-01 | 2001-02-27 | Modulation of endothelial cell surface receptor activity in the regulation of angiogenesis. |
JP2001564243A JP2004507210A (en) | 2000-03-01 | 2001-02-27 | Regulation of endothelial cell surface receptor activity in regulating angiogenesis |
IL151370A IL151370A (en) | 2000-03-01 | 2002-08-21 | Antibody that binds to an eight amino acid epitope and pharmaceutical compositions containing the same |
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US09/516,728 | 2000-03-01 | ||
US09/516,728 US7176289B1 (en) | 1998-09-11 | 2000-03-01 | Modulation of endothelial cell surface receptor activity in the regulation of angiogenesis |
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EP (1) | EP1261644A2 (en) |
JP (1) | JP2004507210A (en) |
AU (1) | AU3989801A (en) |
CA (1) | CA2401621A1 (en) |
IL (2) | IL151370A0 (en) |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP1576139A2 (en) * | 2002-11-26 | 2005-09-21 | Cold Spring Harbor Laboratory | Dep-1 receptor protein tyrosine phosphatase interacting proteins and related methods |
EP1750764A2 (en) * | 2004-04-23 | 2007-02-14 | Amgen Inc. | Antibodies of angiogenesis inhibiting domains of cd148 |
WO2021058795A3 (en) * | 2019-09-27 | 2021-05-27 | Stark Labs | Senescent cell-associated antigen-binding domains, antibodies and chimeric antigen receptors comprising the same, and uses thereof |
US11723926B2 (en) | 2019-09-27 | 2023-08-15 | Starkage Therapeutics | Senescent cell-associated antigen-binding domains, antibodies and chimeric antigen receptors comprising the same, and uses thereof |
Families Citing this family (1)
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AU2005250341A1 (en) * | 2004-04-23 | 2005-12-15 | Amgen Inc. | Antibodies to angiogenesis inhibiting domains of CD148 |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
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WO1995030008A1 (en) * | 1994-05-03 | 1995-11-09 | Cold Spring Harbor Laboratory | Density enhanced protein tyrosine phosphatases |
WO2000015258A1 (en) * | 1998-09-11 | 2000-03-23 | Vanderbilt University | Modulation of endothelial cell surface receptor activity in the regulation of angiogenesis |
-
2001
- 2001-02-27 EP EP01914520A patent/EP1261644A2/en not_active Withdrawn
- 2001-02-27 WO PCT/US2001/006178 patent/WO2001064750A2/en active IP Right Grant
- 2001-02-27 CA CA002401621A patent/CA2401621A1/en not_active Abandoned
- 2001-02-27 AU AU3989801A patent/AU3989801A/en not_active Withdrawn
- 2001-02-27 MX MXPA02008462A patent/MXPA02008462A/en unknown
- 2001-02-27 JP JP2001564243A patent/JP2004507210A/en active Pending
- 2001-02-27 IL IL15137001A patent/IL151370A0/en unknown
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2002
- 2002-08-21 IL IL151370A patent/IL151370A/en not_active IP Right Cessation
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO1995030008A1 (en) * | 1994-05-03 | 1995-11-09 | Cold Spring Harbor Laboratory | Density enhanced protein tyrosine phosphatases |
WO2000015258A1 (en) * | 1998-09-11 | 2000-03-23 | Vanderbilt University | Modulation of endothelial cell surface receptor activity in the regulation of angiogenesis |
Non-Patent Citations (6)
Title |
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A. ÖSTMAN ET AL.: "Expression of DEP-1, a receptor-like protein-tyrosine-phosphatase, is enhanced with increasing cell density." PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE U.S.A., vol. 91, no. 21, 11 October 1994 (1994-10-11), pages 9680-9684, XP002174299 Washington, DC, USA cited in the application * |
H. STOCKINGER ET AL.: "New human leukocyte clusters of differentiation." TRANSFUSION, vol. 38, no. 5, May 1998 (1998-05), pages 499-505, XP001010336 Philadelphia, PA, USA * |
M. DE LA FUENTE-GARCIA ET AL.: "CD148 is a membrane protein tyrosine phosphatase present in all hematpoietic lineages and is involved in signal transduction on lymphocytes." BLOOD, vol. 91, no. 8, 15 April 1998 (1998-04-15), pages 2800-2809, XP002174297 New York, NY, USA cited in the application * |
S. TANGYE ET AL.: "CD148: a receptor-type protein tyrosine phosphatase involved in the regulation of human T cell activation." THE JOURNAL OF IMMUNOLOGY, vol. 161, no. 7, 1 October 1998 (1998-10-01), pages 3249-3255, XP002174298 Baltimore, MD, USA * |
T. TAKAHASHI ET AL.: "Endothelial cell receptor tyrosine phosphatase/density enhanced phosphatase-1, ECRTP/DEP-1, is an oligomerizationresponsive angiostatic switch." THE FASEB JOURNAL, vol. 13, no. 5, 15 March 1999 (1999-03-15), page A694 XP002174296 Bethesda, MD, USA * |
T. TAKAHASHI ET AL.: "Endothelial localization of receptor tyrosine phasphatase, ECRTP/DEP-1, developing and mature renal vasculature." JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, vol. 10, no. 10, October 1999 (1999-10), pages 2135-2145, XP001010332 Baltimore, MD, USA * |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP1576139A2 (en) * | 2002-11-26 | 2005-09-21 | Cold Spring Harbor Laboratory | Dep-1 receptor protein tyrosine phosphatase interacting proteins and related methods |
EP1576139A4 (en) * | 2002-11-26 | 2007-06-20 | Cold Spring Harbor Lab | Dep-1 receptor protein tyrosine phosphatase interacting proteins and related methods |
EP1750764A2 (en) * | 2004-04-23 | 2007-02-14 | Amgen Inc. | Antibodies of angiogenesis inhibiting domains of cd148 |
EP1750764A4 (en) * | 2004-04-23 | 2008-05-28 | Amgen Inc | Antibodies of angiogenesis inhibiting domains of cd148 |
WO2021058795A3 (en) * | 2019-09-27 | 2021-05-27 | Stark Labs | Senescent cell-associated antigen-binding domains, antibodies and chimeric antigen receptors comprising the same, and uses thereof |
US11723926B2 (en) | 2019-09-27 | 2023-08-15 | Starkage Therapeutics | Senescent cell-associated antigen-binding domains, antibodies and chimeric antigen receptors comprising the same, and uses thereof |
Also Published As
Publication number | Publication date |
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IL151370A0 (en) | 2003-04-10 |
CA2401621A1 (en) | 2001-09-07 |
IL151370A (en) | 2010-11-30 |
EP1261644A2 (en) | 2002-12-04 |
AU3989801A (en) | 2001-09-12 |
MXPA02008462A (en) | 2004-05-14 |
JP2004507210A (en) | 2004-03-11 |
WO2001064750A3 (en) | 2002-01-24 |
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