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1. A single-cell atlas enables mapping of homeostatic cellular shifts in the adult human breast.

2. A novel Nav1.5-dependent feedback mechanism driving glycolytic acidification in breast cancer metastasis

13. Male Breast Cancer

14. Platelet-derived microvesicles isolated from type-2 diabetes mellitus patients harbour an altered miRNA signature and drive MDA-MB-231 triple-negative breast cancer cell invasion.

15. Current and Emerging 3D Models to Study Breast Cancer

18. Pan-cancer image-based detection of clinically actionable genetic alterations

20. Exploring the One Health Paradigm in Male Breast Cancer.

23. Management and 5-year outcomes in 9938 women with screen-detected ductal carcinoma in situ: the UK Sloane Project

24. Metastatic-niche labelling reveals parenchymal cells with stem features

27. A novel Nav1.5-dependent feedback mechanism driving glycolytic acidification in breast cancer metastasis

28. Deep learning models predicting hormone receptor status in breast cancer trained on females do not generalize to males: further evidence of sex-based disparity in breast cancer

29. Tspan6 stimulates the chemoattractive potential of breast cancer cells for B cells in an EV- and LXR-dependent manner

32. The Molecular Pathology of Male Breast Cancer

34. Experimental workflow from A Case-Matched Gender Comparison Transcriptomic Screen Identifies eIF4E and eIF5 as Potential Prognostic Markers in Male Breast Cancer

35. Data from Nuclear and Cytoplasmic Expression of ERβ1, ERβ2, and ERβ5 Identifies Distinct Prognostic Outcome for Breast Cancer Patients

36. Supplementary Tables 1-2 from Relationship of Extreme Chromosomal Instability with Long-term Survival in a Retrospective Analysis of Primary Breast Cancer

37. Supplementary Figure 1 from Relationship of Extreme Chromosomal Instability with Long-term Survival in a Retrospective Analysis of Primary Breast Cancer

38. Supplementary Figure 4 from Relationship of Extreme Chromosomal Instability with Long-term Survival in a Retrospective Analysis of Primary Breast Cancer

39. Supplementary Figure Legends 1-4 from Relationship of Extreme Chromosomal Instability with Long-term Survival in a Retrospective Analysis of Primary Breast Cancer

40. Supplementary Figure 2B from Relationship of Extreme Chromosomal Instability with Long-term Survival in a Retrospective Analysis of Primary Breast Cancer

41. Cut-off determination and representative staining profiles for eIF proteins determined by immunohistochemistry from A Case-Matched Gender Comparison Transcriptomic Screen Identifies eIF4E and eIF5 as Potential Prognostic Markers in Male Breast Cancer

42. Supplementary Figure 3 from Relationship of Extreme Chromosomal Instability with Long-term Survival in a Retrospective Analysis of Primary Breast Cancer

43. Supplementary Methods from Relationship of Extreme Chromosomal Instability with Long-term Survival in a Retrospective Analysis of Primary Breast Cancer

44. Interrogation of Oncomine{trade mark, serif} from A Case-Matched Gender Comparison Transcriptomic Screen Identifies eIF4E and eIF5 as Potential Prognostic Markers in Male Breast Cancer

45. Data from Relationship of Extreme Chromosomal Instability with Long-term Survival in a Retrospective Analysis of Primary Breast Cancer

46. Supplementary Tables S1-S3 from Nuclear and Cytoplasmic Expression of ERβ1, ERβ2, and ERβ5 Identifies Distinct Prognostic Outcome for Breast Cancer Patients

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