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2. Abstract B067: Identification of Gemcitabine-resistant Populations using scRNA-Sequencing in Triple Negative Breast Cancer Patient-Derived Xenografts

3. DNA methylation-based depiction of the immune microenvironment and immune-associated long non-coding RNAs in oral cavity squamous cell carcinomas

5. Supplementary Data Legends from HER2Δ16 Engages ENPP1 to Promote an Immune-Cold Microenvironment in Breast Cancer

6. Supplementary Figures from HER2Δ16 Engages ENPP1 to Promote an Immune-Cold Microenvironment in Breast Cancer

7. Supplementary Figures from HER2Δ16 Engages ENPP1 to Promote an Immune-Cold Microenvironment in Breast Cancer

8. Supplementary Data Legends from HER2Δ16 Engages ENPP1 to Promote an Immune-Cold Microenvironment in Breast Cancer

9. Data from HER2Δ16 Engages ENPP1 to Promote an Immune-Cold Microenvironment in Breast Cancer

10. Targeting the dependence on PIK3C3-mTORC1 signaling in dormancy-prone breast cancer cells blunts metastasis initiation

11. HER2Δ16 Engages ENPP1 to Promote an Immune-Cold Microenvironment in Breast Cancer

12. Evolution of chromosome arm aberrations in breast cancer through genetic network rewiring

13. Abstract 1512: Evolution of large copy number variants in breast cancer through genetic network rewiring

14. Data from Epigenetic Switch–Induced Viral Mimicry Evasion in Chemotherapy-Resistant Breast Cancer

16. Data from Epigenetic Switch–Induced Viral Mimicry Evasion in Chemotherapy-Resistant Breast Cancer

22. Supplementary Data from Epigenetic Switch–Induced Viral Mimicry Evasion in Chemotherapy-Resistant Breast Cancer

25. Supplementary Data from Epigenetic Switch–Induced Viral Mimicry Evasion in Chemotherapy-Resistant Breast Cancer

26. Data from CD44 Promotes PD-L1 Expression and Its Tumor-Intrinsic Function in Breast and Lung Cancers

27. Supplementary Data from CD44 Promotes PD-L1 Expression and Its Tumor-Intrinsic Function in Breast and Lung Cancers

28. Supplementary Table 1 from CD44 Promotes PD-L1 Expression and Its Tumor-Intrinsic Function in Breast and Lung Cancers

29. Supplementary Data from CD44 Promotes PD-L1 Expression and Its Tumor-Intrinsic Function in Breast and Lung Cancers

30. Data from CD44 Promotes PD-L1 Expression and Its Tumor-Intrinsic Function in Breast and Lung Cancers

31. Supplementary Table 1 from CD44 Promotes PD-L1 Expression and Its Tumor-Intrinsic Function in Breast and Lung Cancers

32. The G protein-coupled receptor TBXA2R activates ERMs to promote motility, invasion, and metastasis of triple-negative breast cancer cells

33. Abstract P3-08-09: Development and molecular characterization of hard-to-treat breast cancer pre-clinical models to enhance precision medicine

34. Coordinated activation of c-Src and FOXM1 drives tumor cell proliferation and breast cancer progression

35. Abstract A033: Identification of gemcitabine-resistant populations using scRNA-sequencing in triple negative breast cancer patient-derived xenograft

36. Interplay Between Immune and Cancer-Associated Fibroblasts: A Path to Target Metalloproteinases in Penile Cancer

37. Abstract 44: Evolution of large copy number variants in breast cancer through genetic network rewiring

39. Multi-omics data integration analysis identifies the spliceosome as a key regulator of DNA double-strand break repair

40. miR-22 and miR-205 Drive Tumor Aggressiveness of Mucoepidermoid Carcinomas of Salivary Glands

42. STAT1 potentiates oxidative stress revealing a targetable vulnerability that increases phenformin efficacy in breast cancer

43. Penile Cancer-Derived Cells Molecularly Characterized as Models to Guide Targeted Therapies

44. Circulating let-7e-5p, miR-106a-5p, miR-28-3p, and miR-542-5p as a Promising microRNA Signature for the Detection of Colorectal Cancer

45. Tumour-associated macrophages drive stromal cell-dependent collagen crosslinking and stiffening to promote breast cancer aggression

46. Epigenetic Switch–Induced Viral Mimicry Evasion in Chemotherapy-Resistant Breast Cancer

47. GLUT1 inhibition blocks growth of RB1-positive triple negative breast cancer

48. Chemogenomic profiling of breast cancer patient-derived xenografts reveals targetable vulnerabilities for difficult-to-treat tumors

49. Estrogen-related receptors are targetable ROS sensors

50. Inflammation promotes tumor aggression by stimulating stromal cell-dependent collagen crosslinking and stromal stiffening

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