4.8 Article

Progressive immune dysfunction with advancing disease stage in renal cell carcinoma

期刊

CANCER CELL
卷 39, 期 5, 页码 632-+

出版社

CELL PRESS
DOI: 10.1016/j.ccell.2021.02.013

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资金

  1. Dana-Farber/Harvard Cancer Center Kidney Cancer SPORE [NCI P50-CA101942-12]
  2. DF/HCC Kidney Cancer SPORE Career Enhancement Program [NCI P50CA101942-15, NCI P50CA101942]
  3. DOD CDMRP [KC170216, KC190130]
  4. DOD Academy of Kidney Cancer Investigators [KC190128]
  5. NIH/NIGMS [5R35GM131802, 5R01GM083084, R35GM131802]
  6. ENCODE Data Analysis Center [NIH/NHGRI 5R01HG009446]
  7. Independent Research Fund Denmark [8048-00078B]
  8. Kay Kendall Leukaemia Fund Fellowship
  9. Fondation de France at DFCI
  10. NCI Research Specialist Award [R50CA251956]
  11. NIH/NCI [R21 CA216772-01A1, NCI-SPORE-2P50CA101942-11A1, U24 CA224331]
  12. ASCO Conquer Cancer Foundation Young Investigator Award
  13. NCI [R50RCA211482]
  14. Dana-Farber/Harvard Cancer Center Kidney SPORE [NCI P50CA101942]
  15. Cancer Center Support Grant [P30CA006516]
  16. Kohlberg Chair at Harvard Medical School
  17. Trust Family
  18. Michael Brigham, and Loker Pinard Funds for Kidney Cancer Research at DFCI
  19. National Cancer Institute (NCI)
  20. Department of Defense (DOD)
  21. NIH [NCI-1RO1CA155010]
  22. G. Harold and Leila Y. Mathers Foundation
  23. Parker Institute for Cancer Immunotherapy
  24. CDMRP [1100819, KC170216] Funding Source: Federal RePORTER

向作者/读者索取更多资源

The tumor immune microenvironment in clear cell renal cell carcinoma was investigated through single-cell RNA and T cell receptor sequencing, revealing an increase in terminally exhausted CD8(+) T cells and M2-like macrophages as the disease progresses. This immune dysfunction circuit is associated with a worse prognosis and identifies potential targetable immune inhibitory pathways in ccRCC.
The tumor immune microenvironment plays a critical role in cancer progression and response to immunotherapy in clear cell renal cell carcinoma (ccRCC), yet the composition and phenotypic states of immune cells in this tumor are incompletely characterized. We performed single-cell RNA and T cell receptor sequencing on 164,722 individual cells from tumor and adjacent non-tumor tissue in patients with ccRCC across disease stages: early, locally advanced, and advanced/metastatic. Terminally exhausted CD8(+) T cells were enriched in metastatic disease and were restricted in T cell receptor diversity. Within the myeloid compartment, pro-inflammatory macrophages were decreased, and suppressive M2-like macrophages were increased in advanced disease. Terminally exhausted CD8(+) T cells and M2-like macrophages co-occurred in advanced disease and expressed ligands and receptors that support T cell dysfunction and M2-like polarization. This immune dysfunction circuit is associated with a worse prognosis in external cohorts and identifies potentially targetable immune inhibitory pathways in ccRCC.

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