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1. A framework for assessing interactions for risk stratification models: the example of ovarian cancer

2. Progestogen-driven B7-H4 contributes to onco-fetal immune tolerance

3. High pre-diagnosis inflammation-related risk score associated with decreased ovarian cancer survival

5. Menopausal hormone therapy prior to the diagnosis of ovarian cancer is associated with improved survival

6. Metabolic collateral lethal target identification reveals MTHFD2 paralogue dependency in ovarian cancer

7. Preclinical Models of Ovarian Cancer

8. Epithelial Tumors of the Ovary

9. Supplementary Tables S1-10 from Cell State of Origin Impacts Development of Distinct Endometriosis-Related Ovarian Carcinoma Histotypes

10. Supplementary Data from Cell State of Origin Impacts Development of Distinct Endometriosis-Related Ovarian Carcinoma Histotypes

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

13. Epigenetic driver mutations in ARID1A shape cancer immune phenotype and immunotherapy

15. Cell state of origin impacts development of distinct endometriosis-related ovarian carcinoma histotypes

24. Supplementary Methods, Figure Legends, Figures 1 - 9, Tables 1 - 8 from Multiclonality and Marked Branched Evolution of Low-Grade Endometrioid Endometrial Carcinoma

27. Supplementary Figure S8 from Murine Oviductal High-Grade Serous Carcinomas Mirror the Genomic Alterations, Gene Expression Profiles, and Immune Microenvironment of Their Human Counterparts

33. Table S1 from Murine Oviductal High-Grade Serous Carcinomas Mirror the Genomic Alterations, Gene Expression Profiles, and Immune Microenvironment of Their Human Counterparts

34. Supplementary Methods from Murine Oviductal High-Grade Serous Carcinomas Mirror the Genomic Alterations, Gene Expression Profiles, and Immune Microenvironment of Their Human Counterparts

35. Supplementary Methods and References from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy

43. Data from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy

48. Supplementary Figures S1-S5 from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy

49. Supplementary Figure Legends from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy

50. Supplementary Tables S1-S4 from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy

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