Anti-integrin antibodies, compositions, methods and uses
The present invention relates to at least one novel anti-alpha-V subunit antibodies, including isolated nucleic acids that encode at least one anti-alpha-V subunit antibody, alpha-V subunit, vectors, host cells, transgenic animals or plants, and methods of making and using thereof, including therapeutic compositions, methods and devices.
1. A method of inhibiting growth of a cell expressing alpha v integrin subunit, comprising contacting the cell with an effective amount of an isolated human monoclonal antibody comprising human heavy chain and human light chain variable regions comprising the amino acid sequences shown in SEQ ID NO: 7 and SEQ ID NO: 8, respectively, such that the growth of the cell is inhibited.
2. A method according to claim 1 , wherein said effective amount is 0.001-50 mg/kilogram of said antibody.
3. A method of treating a disease characterized by growth or metastasis of tumor cells, in a subject comprising administering to a subject an effective amount of an isolated human monoclonal antibody comprising human heavy chain and human light chain variable regions comprising the amino acid sequences shown in SEQ ID NO: 7 and SEQ ID NO: 8, respectively, in an amount effective to treat the disease.
4. The method of claim 3 , wherein the disease is cancer.
5. The method of claim 4 , wherein the cancer is selected from the group consisting of—melanoma, colon cancer, prostate cancer, breast cancer and renal carcinoma.
6. The method of 4 , wherein the cancer is metastatic melanoma.
7. The method of claim 4 , 5 , or 6 wherein the antibody is administered in combination concurrently or sequentially with a cytotoxic agent.
8. The method of claim 7 wherein the cytotoxic agent Is dacarbazine.
9. The method of claim 1 , wherein the human antibody is conjugated to or formulated with a therapeutic agent.
10. The method of claim 9 wherein the therapeutic agent is a cytotoxin.
11. A method according to claim 1 or 3 , wherein said administrating is by at least one mode selected from parenteral, subcutaneous, intramuscular, intravenous, intrarticular, intrabronchial, intraabdominal, intracapsular, intracartilaginous, intracavitary, intracelial, intracelebellar, intracerebroventricular, intracolic, intracervical, intragastric, intrahepatic, intramyocardial, intraosteal, intrapelvic, intrapericardiac, intraperitoneal, intrapleural, intraprostatic, intrapulmonary, intrarectal, intrarenal, intraretinal, intraspinal, intrasynovial, intrathoracic, intrauterine, intravesical, bolus, vaginal, rectal, buccal, sublingual, intranasal, or transdermal.
12. A method according to claim 1 or 3 , further comprising administering, prior, concurrently or after said antibody, at least one composition comprising an effective amount of at least one compound or protein selected from at least one of a detectable label or reporter, an anti-neoplastic agent, a TNF antagonist, an antirheumatic, a muscle relaxant, a narcotic, a non-steroid anti-inflammatory drug (NSAID), an analgesic, an anesthetic, a sedative, a local ansethetic, a neuromuscular blocker, an antimicrobial, an antipsoriatic, a corticosteriod, an anabolic steroid, an erythropoietin, an immunization, an immunoglobulin, an immunosuppressive, a growth hormone, a hormone antagonist, a reproductive hormone antagonist, a hormone release modulator, a hormone replacement drug, an antidepressant, an antipsychotic, a stimulant, an asthma medication, a beta agonist, an inhaled steroid, an epinephrine or analog, a cytokine, or a cytokine antagonist.
13. A method according to claim 12 wherein the antibody is combined with an anti-neoplastic agent selected from a radiopharmaceutical, an estrogen receptor modulator, a retinoid, a topoisomererase inhibitor, a cytotoxin, an alkylating agent, a nitrogen mustard, a nitrosourea, an antimetabolite, a mitotic inhibitor, and a radiosensitizer.
14. A method according to claim 13 wherein the anti-neoplastic agent is dacarbazine.