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1. A Convenient Route to New (Radio)Fluorinated and (Radio)Iodinated Cyclic Tyrosine Analogs

2. Supplementary_methods_1 – Supplemental material for Identification of an immune-suppressed subtype of feline triple-negative basal-like invasive mammary carcinomas, spontaneous models of breast cancer

3. Additional file 18: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

4. Additional file 29: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

5. Additional file 21: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

6. Additional file 5: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

7. Additional file 27: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

8. Additional file 28: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

9. Additional file 20: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

10. Additional file 3: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

11. Additional file 4: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

12. Additional file 9: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

13. Additional file 6: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

14. Additional file 1: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

15. Additional file 7: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

16. Additional file 24: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

17. Additional file 19: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

18. Additional file 11: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

19. Additional file 2: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

20. Additional file 15: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

21. Additional file 16: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

22. Additional file 14: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

23. Additional file 26: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

24. Additional file 6: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

25. Additional file 3: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

26. Additional file 17: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

27. Additional file 22: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

28. Additional file 8: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

29. Additional file 8: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

30. Additional file 4: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

31. Additional file 12: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

32. Additional file 10: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

33. Additional file 23: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

34. Additional file 5: of Identification of three subtypes of triple-negative breast cancer with potential therapeutic implications

35. Mitotic index, microvascular proliferation, and necrosis define 3 pathological subgroups of prognostic relevance among 1p/19q co-deleted anaplastic oligodendrogliomas

38. Additional file 6: Table S6. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

39. Additional file 2: Table S2. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

40. Additional file 1: Table S1. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

41. Additional file 3: Table S3. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

42. Additional file 5: Table S5. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

43. Additional file 1: Table S1. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

44. Additional file 3: Table S3. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

45. Additional file 5: Table S5. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

46. Additional file 4: Table S4. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

47. Additional file 2: Table S2. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

48. Additional file 4: Table S4. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

49. Additional file 6: Table S6. of The dog as a naturally-occurring model for insulin-like growth factor type 1 receptor-overexpressing breast cancer: an observational cohort study

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