IP Library Patent Application 12514758
Patent Application
App. No. 12/514,758

COMBINATION THERAPY FOR PROLIFERATIVE DISORDERS

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Patent No.
US None
App. No.
12/514,758
Abstract

The present invention provides compositions and methods of treating proliferative disorders using combination therapy with a first agent that specifically inhibits DNA polymerase alpha and a second agent that inhibits protein kinases, such as Chk1.

Claims (36)

1 . A method of treating a proliferative disorder comprising:

inhibiting the activity of DNA polymerase alpha; and

inhibiting the activity of at least one checkpoint kinase.

2 . The method of claim 1 wherein the checkpoint kinase is Chk1.

3 . A method of treating a proliferative disorder in a subject comprising:

administering to the subject an inhibitor of DNA polymerase alpha; and

administering to the subject an inhibitor of at least one checkpoint kinase.

4 . The method of claim 3 wherein the checkpoint kinase is Chk1.

5 . The method of claim 2 wherein the inhibition of DNA polymerase alpha is at least 10-fold greater than the inhibition of DNA polymerase epsilon.

6 . The method of claim 4 wherein the DNA polymerase alpha inhibitor is selected from the group consisting of 4-hydroxy-17-methylincisterol, a galactosyldiacylglycerol, cephalomannine, dehydroaltenusin, 6-(p-n-butylanilino)uracil and N2-(p-butylphenyl)guanine.

7 . The method of claim 6 , wherein the DNA polymerase alpha inhibitor is selected from the group consisting of cephalomannine and dehydroaltenusin.

8 . The method of claim 4 , wherein the Chk1 inhibitor is selected from the group consisting of pyrazofopyrimidines, imidazopyrazines, UCN-01, indolcarbazole compounds, Go6976. SB-218078, staurosporine, ICP-1, CEP-3891, isogranulatimide, debromohymenialdisine (DBH), pyridopyrimidine derivatives, PD0166285, scytonemin, diaryl ureas, benzimidazole quinolones, CHR 124, CHR 600, tricyclic diazopinoindolones, PF-00394691, furanopyrimidines, pyrrolopyrimidines, indolinones, substituted pyrazines, compound XL844, pyrimidinylindazolyamines, aminopyrazoles, 2-ureidothiophenes, pyrimidines, pyrrolopyrimidines, 3-ureidothiophenes, indenopyazoles, triazlones, dibenzodiazepinones, macrocyclic ureas, pyrazoloquinoloines, and the peptidomimetic CBP501.

9 . The method of claim 8 , wherein the Chk1 inhibitor is selected from the group consisting of a pyrazolopyrimidine or an imidazopyrazine.

10 . The method according to claim 4 further comprising administering to the subject an anti-cancer agent selected from the group consisting of a uracil mustard, chlormethine, ifosfamide, melphalan, chlorambucil, pipobroman, triethylenemelamine, triethylenethiophosphoramine, busulfan, carmustine, lomustine, streptozocin, dacarbazine, floxuridine, cytarabine, 6-mercaptopurine, 6-thioguanine, fludarabine phosphate, leucovirin, oxaliplatin (Eloxatin® from Sanofi-Synthelabo Pharmaceuticals, France), pentostatine, vinblastine, vincristine, vindesine, bleomycin, dactinomycin, daunorubicin, doxorubicin, epirubicin, idarubicin, mithramycin, deoxycoformycin, mitomycin-C, L-asparaginase, teniposide 17a-ethinylestradiol, diethylstilbestrol, testosterone, prednisone, fluoxymesterone, dromostanolone propionate, testolactone, megestrolacetate, methylprednisolone, methyltestosterone, prednisolone, triamcinolone, chlorotrianisene, hydroxyprogesterone, aminoglutethimide, estramustine, medroxyprogesteroneacetate, leuprolide, flutamide, toremifene, goserelin, cisplatin, carboplatin, hydroxyurea, amsacrine, procarbazine, mitotane, mitoxantrone, levamisole, navelbene, anastrazole, letrazole, capecitabine, reloxafine, droloxafine, hexamethylmelamine, Avastin® (trastuzumab), Herceptin®, Bexxar®, Velcade®, Zevalin®, Trisenox®, Xeloda®, vinorelbine, profimer, Erbitux®, liposomal, thiotepa, altretamine, melphalan, lerozole, fulvestrant, exemestane, fulvestrant, ifosfomide, Rituxan® (rituximab), C225 and Campath®.

11 . The method of claim 1 wherein the proliferative disorder is cancer, autoimmune disease, viral disease, fungal disease, neurological/neurodegenerative disorder, arthritis, inflammation, anti-proliferative disease, neuronal disease, alopecia, cardiovascular disease or sepsis.

12 . The method of claim 11 , wherein the disease is cancer.

13 . The method of claim 12 , wherein the cancer is selected from the group consisting of: cancer of the bladder, breast, colon, kidney, liver, lung, small cell lung cancer, non-small cell lung cancer, head and neck, esophagus, gall bladder, ovary, pancreas, stomach, cervix, thyroid, prostate, and skin, squamous cell carcinoma; leukemia, acute lymphocytic leukemia, acute lymphoblastic leukemia, B-cell lymphoma, T-cell lymphoma, Hodgkins lymphoma, non-Hodgkins lymphoma, hairy cell lymphoma, mantle cell lymphoma, myeloma, Burkett's lymphoma; acute and chronic myelogenous leukemia, myelodysplastic syndrome, promyelocytic leukemia; fibrosarcoma, rhabdomyosarcoma; astrocytoma, neuroblastoma, glioma and schwannomas;

melanoma, seminoma, teratocarcinoma, osteosarcoma, xenoderoma pigmentosum, keratoctanthoma, thyroid follicular cancer and Kaposi's sarcoma.

14 . The method of claim 1 further comprising radiation therapy.

15 . A composition for the treatment of proliferative disorder, comprising:

a DNA polymerase alpha inhibitor; and

a Chk1 inhibitor.

16 . The method of claim 1 further comprising:

determining whether the proliferative disorder in the subject involves reduction or loss of function of the p53 or Rb gene products; and

administering said inhibitors only to subjects in whom the proliferative disorder to be treated involves reduction or loss of function of at least one of the p53 or Rb gene products.

17 . The method of claim 16 wherein the reduction or loss of function relates to the p53 gene product.

18 . The method of claim 16 wherein the reduction or loss of function relates to the Rb gene product.

19 . The method of claim 4 wherein the inhibitor of the activity of DNA polymerase alpha has an IC50 for DNA polymerase alpha that is at least 5-fold lower than its IC50 for DNA polymerase epsilon.

20 . The method of claim 4 wherein the inhibitor of the activity of Chk1 has an 1050 for Chk1 that is at least 5-fold lower than its 1050 for CDK2.

21 . The method of claim 4 wherein the inhibitor of the activity of DNA polymerase alpha is an siRNA.

22 . The method of claim 4 wherein the inhibitor of the activity of DNA polymerase alpha is an antisense nucleic acid.

23 . The method of claim 4 wherein the inhibitor of the activity of DNA polymerase alpha is an antibody or antigen binding fragment thereof.

24 . The method of claim 4 wherein the inhibitor of the activity of Chk1 is an siRNA.

25 . The method of claim 4 wherein the inhibitor of the activity of Chk1 is an antisense nucleic acid.

26 . The method of claim 4 wherein the inhibitor of the activity of Chk1 is an antibody or antigen binding fragment thereof.

27 . (canceled)

Assignments (2)
CHANGE OF NAME Recorded Aug 30, 2012
From: SCHERING CORPORATION
To: MERCK SHARP & DOHME CORP.
Reel/Frame 028884/0151 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2010
From: PARRY, DAVID A.; TARICANI, LORENA
To: SCHERING CORPORATION
Reel/Frame 024223/0723 →