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2. Upregulation of BMI1-suppressor miRNAs (miR-200c, miR-203) during terminal differentiation of colon epithelial cells

5. Cotreatment with panobinostat and JAK2 inhibitor TG101209 attenuates JAK2V617F levels and signaling and exerts synergistic cytotoxic effects against human myeloproliferative neoplastic cells

10. New-onset headache in an elderly man with uremia that improved only after correction of hyperphosphatemia ('uremic headache'): a case report

11. Role of promoter hypermethylation in Cisplatin treatment response of male germ cell tumors

12. Frequent Promoter Methylation of CDH1, DAPK, RARB, and HIC1 Genes in Carcinoma of Cervix Uteri: Its Relationship to Clinical Outcome

13. Characteristic promoter hypermethylation signatures in male germ cell tumors

22. Mapping the Sites of Putative Tumor Suppressor Genes at 6p25 and 6p21.3 in Cervical Carcinoma: Occurrence of Allelic Deletions in Precancerous Lesions

25. Abstract C196: Co‐treatment with NVP‐BEZ235 and heat shock protein (hsp) 90 or pan‐deacetylase (DAC) inhibitor is synergistically active against non‐small cell lung cancer (NSCLC) cells with mutant RAS and LKB1

26. Targeting Levels, Aberrant Localization or Oligomerization of Mutant Nucleophosmin Induces Differentiation and Loss of Survival of Human AML Cells with Mutant NPM1.

27. Co-treatment with heat shock protein 90 inhibitor 17-dimethylaminoethylamino-17-demethoxygeldanamycin (DMAG) and vorinostat: a highly active combination against human Mantle Cell Lymphoma (MCL) cells

28. Panobinostat treatment depletes EZH2 and DNMT1 levels and enhances decitabine mediated de-repression of JunB and loss of survival of human acute leukemia cells

30. Frequent Promoter Methylation of CDH1, DAPK, RARB, and HIC1 Genes in Carcinoma of Cervix Uteri: Its Relationship to Clinical Outcome.

31. Characteristic promoter hypermethylation signatures in male germ cell tumors.

33. Genomic and expression analysis of the 12p11-p12 amplicon using EST arrays identifies two novel amplified and overexpressed genes

34. Role of promoter hypermethylation in Cisplatin treatment response of male germ cell tumors

35. Role of promoter hypermethylation in Cisplatin treatment response of male germ cell tumors.

36. Genomic and expression analysis of the 12p11-p12 amplicon using EST arrays identifies two novel amplified and overexpressed genes.

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