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3. Sex-dependent effects in the aged melanoma tumor microenvironment influence invasion and resistance to targeted therapy

5. Stromal changes in the aged lung induce an emergence from melanoma dormancy

6. Supplementary Table S4 from Fibroblasts in the Aged Pancreas Drive Pancreatic Cancer Progression

7. Figure S2 from Fibroblasts in the Aged Pancreas Drive Pancreatic Cancer Progression

8. Table S2 from Fibroblasts in the Aged Pancreas Drive Pancreatic Cancer Progression

9. Data from Fibroblasts in the Aged Pancreas Drive Pancreatic Cancer Progression

15. Spike desensitisation as a mechanism for high-contrast selectivity in retinal ganglion cells.

16. Abstract 431: FOXD1 promotes dedifferentiation and targeted therapy resistance in melanoma by regulating the expression of connective tissue growth factor

17. Data from Melanoma Extracellular Vesicles Generate Immunosuppressive Myeloid Cells by Upregulating PD-L1 via TLR4 Signaling

18. Figures S1-S5, Table S1 from Melanoma Extracellular Vesicles Generate Immunosuppressive Myeloid Cells by Upregulating PD-L1 via TLR4 Signaling

21. Additional file 4 of Secretogranin II influences the assembly and function of MHC class I in melanoma

22. Additional file 5 of Secretogranin II influences the assembly and function of MHC class I in melanoma

23. Additional file 3 of Secretogranin II influences the assembly and function of MHC class I in melanoma

25. Additional file 1 of Secretogranin II influences the assembly and function of MHC class I in melanoma

30. FOXD1promotes dedifferentiation and targeted therapy resistance in melanoma by regulating the expression of connective tissue growth factor

31. HER3-Receptor-Mediated STAT3 Activation Plays a Central Role in Adaptive Resistance toward Vemurafenib in Melanoma

35. FOXD1 promotes dedifferentiation and targeted therapy resistance in melanoma by regulating the expression of connective tissue growth factor.

36. The role of SOX2 in resistance towards targeted therapy

37. Melanoma Extracellular Vesicles Generate Immunosuppressive Myeloid Cells by Upregulating PD-L1 via TLR4 Signaling

39. Histone methyltransferase SETDB1 contributes to melanoma tumorigenesis and serves as a new potential therapeutic target

41. Novel insights into the function of CD24: A driving force in cancer.

48. Targeted Therapy-Resistant Melanoma Cells Acquire Transcriptomic Similarities with Human Melanoblasts.

49. Fibroblasts in the Aged Pancreas Drive Pancreatic Cancer Progression.

50. New role of ID3 in melanoma adaptive drug-resistance.

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