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1. The impact of whole genome and transcriptome analysis (WGTA) on predictive biomarker discovery and diagnostic accuracy of advanced malignancies

2. Integrative multi-omics analyses to identify the genetic and functional mechanisms underlying ovarian cancer risk regions

3. SMARCA4 biology in alveolar rhabdomyosarcoma

4. STING pathway expression in low‐grade serous carcinoma of the ovary: an unexpected therapeutic opportunity?

5. Effect of the p53 P72R Polymorphism on Mutant TP53 Allele Selection in Human Cancer

6. Re-assigning the histologic identities of COV434 and TOV-112D ovarian cancer cell lines

7. The P72R Polymorphism in R248Q/W p53 Mutants Modifies the Mutant Effect on Epithelial to Mesenchymal Transition Phenotype and Cell Invasion via CXCL1 Expression.

8. Clinical and pathological associations of PTEN expression in ovarian cancer: a multicentre study from the Ovarian Tumour Tissue Analysis Consortium.

9. Short-term organoid culture for drug sensitivity testing of high-grade serous carcinoma

10. Tubo-Ovarian Transitional Cell Carcinoma and High-grade Serous Carcinoma Show Subtly Different Immunohistochemistry Profiles

11. Histone deacetylase inhibitors synergizes with catalytic inhibitors of EZH2 to exhibit anti-tumor activity in small cell carcinoma of the ovary, hypercalcemic type

12. L1CAM further stratifies endometrial carcinoma patients with no specific molecular risk profile

13. Ponatinib Shows Potent Antitumor Activity in Small Cell Carcinoma of the Ovary Hypercalcemic Type (SCCOHT) through Multikinase Inhibition

14. Preclinical Models of Ovarian Cancer

16. Detection and genomic characterization of a mammary-like adenocarcinoma

17. Evaluation of endometrial carcinoma prognostic immunohistochemistry markers in the context of molecular classification

18. The histone methyltransferase EZH2 is a therapeutic target in small cell carcinoma of the ovary, hypercalcaemic type

20. Impact of oviductal versus ovarian epithelial cell of origin on ovarian endometrioid carcinoma phenotype in the mouse

21. Immunophenotypic features of dedifferentiated endometrial carcinoma – insights from BRG1/INI1‐deficient tumours

22. The influence of clinical and genetic factors on patient outcome in small cell carcinoma of the ovary, hypercalcemic type

23. Loss of switch/sucrose non-fermenting complex protein expression is associated with dedifferentiation in endometrial carcinomas

24. Quantitative Profiling of Single Formalin Fixed Tumour Sections: proteomics for translational research

25. Comprehensive genomic profiles of small cell lung cancer

26. Multifocal endometriotic lesions associated with cancer are clonal and carry a high mutation burden

27. Small cell carcinoma of the ovary, hypercalcemic type, displays frequent inactivating germline and somatic mutations in SMARCA4

28. RAS Transformation Requires CUX1-Dependent Repair of Oxidative DNA Damage

30. Landscape of super-enhancers in small cell carcinoma of the ovary, hypercalcemic type and efficacy of targeting with natural product triptolide

31. Supplementary Figures S1-S4 from The Prognostic Effect of Immune Cell Infiltration Depends on Molecular Subtype in Endometrioid Ovarian Carcinomas

32. Supplementary Tables S1-S5 from The Prognostic Effect of Immune Cell Infiltration Depends on Molecular Subtype in Endometrioid Ovarian Carcinomas

33. Data from The Prognostic Effect of Immune Cell Infiltration Depends on Molecular Subtype in Endometrioid Ovarian Carcinomas

35. Breast Fibroblasts Modulate Early Dissemination, Tumorigenesis, and Metastasis through Alteration of Extracellular Matrix Characteristics

36. Selective activation of p53-mediated tumour suppression in high-grade tumours

37. The Prognostic Effect of Immune Cell Infiltration Depends on Molecular Subtype in Endometrioid Ovarian Carcinomas

38. BrafV600E cooperates with Pten loss to induce metastatic melanoma

39. Misclassification of Bronchioloalveolar Carcinoma with Cytologic Diagnosis of Lung Cancer

41. Supplemental Figures S1-S10 from Histone Deacetylase Inhibitors Synergize with Catalytic Inhibitors of EZH2 to Exhibit Antitumor Activity in Small Cell Carcinoma of the Ovary, Hypercalcemic Type

42. Supplementary Tables S1-S9 from Histone Deacetylase Inhibitors Synergize with Catalytic Inhibitors of EZH2 to Exhibit Antitumor Activity in Small Cell Carcinoma of the Ovary, Hypercalcemic Type

43. Data from Histone Deacetylase Inhibitors Synergize with Catalytic Inhibitors of EZH2 to Exhibit Antitumor Activity in Small Cell Carcinoma of the Ovary, Hypercalcemic Type

44. Figures S1-3 from Ponatinib Shows Potent Antitumor Activity in Small Cell Carcinoma of the Ovary Hypercalcemic Type (SCCOHT) through Multikinase Inhibition

45. Table S2 from Ponatinib Shows Potent Antitumor Activity in Small Cell Carcinoma of the Ovary Hypercalcemic Type (SCCOHT) through Multikinase Inhibition

46. Supplemental Methods from Ponatinib Shows Potent Antitumor Activity in Small Cell Carcinoma of the Ovary Hypercalcemic Type (SCCOHT) through Multikinase Inhibition

47. Table S5-6 from Ponatinib Shows Potent Antitumor Activity in Small Cell Carcinoma of the Ovary Hypercalcemic Type (SCCOHT) through Multikinase Inhibition

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