Bi-functional allosteric protein-drug molecules for targeted therapy
Abstract
Disclosed herein, is a bi-functional allosteric protein-drug molecule comprising a targeting moiety, one or more biological binding domains, and one or more therapeutic agents, wherein the therapeutic agent is allosterically bound to the biological binding domain. Also described herein, are methods of incorporating a bi-functional allosteric protein-drug molecule comprising a targeting moiety, one or more biological binding domains that captures the therapeutic agent without the formation of a chemical bond, and one or more therapeutic agents physiologically acceptable compositions including them; and methods of administering the bi-functional allosteric protein-drug molecule to patients for the treatment of cancer.
Claims
exact text as granted — not AI-modified1 . A bi-functional allosteric protein-drug molecule comprising a targeting moiety, one or more biological binding domains, and one or more therapeutic agents, wherein the therapeutic agent is allosterically bound to the biological binding domain.
2 . The bi-functional allosteric protein-drug molecule of claim 1 , wherein the targeting moiety is a peptide or protein.
3 . The bi-functional allosteric protein-drug molecule of claim 1 , wherein the targeting moiety is an antibody.
4 . The bi-functional allosteric protein-drug molecule of claim 3 , wherein the antibody is a single chain antibody (scFv) or a Fab fragment.
5 . The bi-functional allosteric protein-drug molecule of claim 3 , wherein the antibody is human, chimeric or humanized or a biologically active variant thereof.
6 . The bi-functional allosteric protein-drug molecule of claim 3 , wherein the antibody is a monoclonal antibody or a polyclonal antibody.
7 . The bi-functional allosteric protein-drug molecule of claim 4 , wherein the scFv or Fab fragment specifically binds a growth factor receptor.
8 . The bi-functional allosteric protein-drug molecule of claim 7 , wherein the growth factor receptor is a member of the epidermal growth factor receptor (EGFR) family.
9 . The bi-functional allosteric protein-drug molecule of claim 3 , wherein the antibody is trastuzumab, panitumumab or cetuximab, or a biologically active variant thereof.
10 . The bi-functional allosteric protein-drug molecule of claim 1 , wherein the biological binding domain and the therapeutic agent are present in a ratio of 1:1 or 1:5 (binding domain:therapeutic).
11 . The bi-functional allosteric protein-drug molecule of claim 1 , wherein the biological binding domain comprises an ATP binding domain and/or a taxane binding domain.
12 . The bi-functional allosteric protein-drug molecule of claim 11 , wherein the biological binding domains are two or more.
13 . The bi-functional allosteric protein-drug molecule of claim 1 , wherein the therapeutic agent is an anti-cancer agent.
14 . The bi-functional allosteric protein-drug molecule of claim 13 , wherein the anti-cancer agent is a derivate of geldanamycin, a taxane or a HSP90 inhibitor.
15 . The bi-functional allosteric protein-drug molecule of claim 14 , wherein the geldanamycin derivative is 17-AAG or 17-DMAG.
16 . The bi-functional allosteric protein-drug molecule of claim 14 , wherein the taxane is paclitaxel or docetaxel.
17 . The bi-functional allosteric protein-drug molecule of claim 14 , wherein the HSP90 inhibitor is 17-AAG, geldanamycin, 17-DMAG, IPI-504, BIIB021, SNX-5422, STA-9090 or NVP-AUY922.
18 . A pharmaceutical composition comprising the bi-functional allosteric protein-drug molecule of claim 1 and a pharmaceutically acceptable carrier.
19 . (canceled)
20 . The pharmaceutical composition of claim 18 , wherein the therapeutic agent is an anti-cancer agent and wherein the pharmaceutical composition is formulated for intravenous administration.
21 . A method of treating a patient with cancer, the method comprising:
(a) identifying a patient in need of treatment; and (b) administering to the patient a therapeutically effective amount of the pharmaceutical composition of claim 20 .
22 .- 28 . (canceled)Join the waitlist — get patent alerts
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