Selective inhibition of low-affinity memory CD8 T cells by corticosteroids.

J Exp Med

Division of Cancer Immunology, Research Institute/Exploratory Oncology Research and Clinical Trial Center, National Cancer Center, Kashiwa, Japan

Published: December 2019

AI Article Synopsis

  • * Administering corticosteroids simultaneously with ICB decreases the proliferation of CD8 T cells and impairs anti-tumor responses, particularly affecting low-affinity memory T cells due to suppressed fatty acid metabolism.
  • * In a small study of melanoma patients, early corticosteroid treatment after CTLA-4 blockade was associated with shorter overall survival, especially in those with low tumor mutation burden, highlighting the need for cautious corticosteroid administration.

Article Abstract

Patients treated with immune checkpoint blockade (ICB) sometimes experience immune-related adverse events (irAEs), requiring immuno-suppressive drugs such as corticosteroids despite the possibility that immunosuppression may impair the antitumor effects of ICB. Here, we address the dilemma of using corticosteroids for the treatment of irAEs induced by ICB. ICB augments neoantigen-specific CD8 T cell responses, resulting in tumor regression. In our model, simultaneous, but not late, administration of corticosteroids impaired antitumor responses with reduction of CD8 T cell proliferation. Secondary challenge using tumors with/without the neoantigen showed selective progression in tumors lacking the neoantigen when corticosteroids were administered. Corticosteroids decreased low- but not high-affinity memory T cells by suppressing fatty acid metabolism essential for memory T cells. In a small cohort of human melanoma patients, overall survival was shorter after treatment with CTLA-4 blockade in patients who received early corticosteroids or had low tumor mutation burden. Together, low-affinity memory T cells are dominantly suppressed by corticosteroids, necessitating careful and thoughtful corticosteroid use.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6888983PMC
http://dx.doi.org/10.1084/jem.20190738DOI Listing

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