4.7 Article

Changes in Aged Fibroblast Lipid Metabolism Induce Age-Dependent Melanoma Cell Resistance to Targeted Therapy via the Fatty Acid Transporter FATP2

Journal

CANCER DISCOVERY
Volume 10, Issue 9, Pages 1282-1295

Publisher

AMER ASSOC CANCER RESEARCH
DOI: 10.1158/2159-8290.CD-20-0329

Keywords

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Funding

  1. Wistar Science Discovery Fund
  2. Melanoma Research Foundation
  3. Melanoma Research Alliance/L'Oreal Paris-USA Women in Science Team Science Award
  4. Bloomberg Distinguished Professorship
  5. EV McCollum Endowment
  6. NIH [S10 OD023586]
  7. Johns Hopkins Kimmel Cancer Center [P30CA00697356]
  8. [P30CA010815]
  9. [R01CA174746]
  10. [R01CA207935]
  11. [R01CA223256]
  12. [P50CA174523]
  13. [R50CA221838]
  14. [P01 CA114046]
  15. [P30ES013508]
  16. [K99CA208012]
  17. [U01CA227550]

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Older patients with melanoma (>50 years old) have poorer prognoses and response rates to targeted therapy compared with young patients (<50 years old), which can be driven, in part, by the aged microenvironment. Here, we show that aged dermal fibroblasts increase the secretion of neutral lipids, especially ceramides. When melanoma cells are exposed to the aged fibroblast lipid secretome, or cocultured with aged fibroblasts, they increase the uptake of lipids via the fatty acid transporter FATP2, which is upregulated in melanoma cells in the aged microenvironment and known to play roles in lipid synthesis and accumulation. We show that blocking FATP2 in melanoma cells in an aged microenvironment inhibits their accumulation of lipids and disrupts their mitochondrial metabolism. Inhibiting FATP2 overcomes age-related resistance to BRAF/MEK inhibition in animal models, ablates tumor relapse, and significantly extends survival time in older animals. SIGNIFICANCE: These data show that melanoma cells take up lipids from aged fibroblasts, via FATP2, and use them to resist targeted therapy. The response to targeted therapy is altered in aged individuals because of the influences of the aged microenvironment, and these data suggest FATP2 as a target to overcome resistance.

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