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1. Ferroptosis in health and disease.

3. mTORC1 regulates cell survival under glucose starvation through 4EBP1/2-mediated translational reprogramming of fatty acid metabolism

8. Targeting MYC induces lipid droplet accumulation by upregulation of HILPDA in clear cell renal cell carcinoma

10. LXRα activation and Raf inhibition trigger lethal lipotoxicity in liver cancer

12. A multidimensional atlas of human glioblastoma-like organoids reveals highly coordinated molecular networks and effective drugs

13. p53 deficient breast cancer cells reprogram preadipocytes toward tumor-protective immunomodulatory cells

14. Sex-specific Expression of Estradiol Derivatives, Hydropersulfides and Ether Lipids Regulates Ferroptosis Sensitivity of Kidney Tubules

18. A MYC–GCN2–eIF2α negative feedback loop limits protein synthesis to prevent MYC-dependent apoptosis in colorectal cancer

19. FSP1 is a glutathione-independent ferroptosis suppressor

23. Formate promotes invasion and metastasis in reliance on lipid metabolism

24. 13C-SpaceM: Spatial single-cell isotope tracing reveals heterogeneity ofde novofatty acid synthesis in cancer

26. LRP8‐mediated selenocysteine uptake is a targetable vulnerability in MYCN‐amplified neuroblastoma

30. Metformin Regulates the miR-205/VEGFA Axis in Renal Cell Carcinoma Cells: Exploring a Clinical Synergism with Tyrosine Kinase Inhibitors.

34. Supplementary Figure 6 from 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers

35. Supplementary Figure 2 from 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers

38. Supplementary Figure 4 from 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers

39. Data from 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers

41. Supplementary Figure 7 from 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers

44. Supplementary Figure 1 from 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers

46. Supplementary Figure 5 from 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers

50. Supplementary Figure 8 from 3D Growth of Cancer Cells Elicits Sensitivity to Kinase Inhibitors but Not Lipid Metabolism Modifiers

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