Checkpoint blockade accelerates a novel switch from an NKT-driven TNFα response toward a T cell driven IFN-γ response

Shota Aoyama1,2, Ryosuke Nakagawa1,2, Satoshi Nemoto1,2

  • 1Department of Immunology, Moffitt Cancer Center, Tampa, Florida, USA.

Abstract

Insights

Checkpoint blockade (CB) therapy shifts the immune response in tumors. Early NKT cell activity is replaced by CD4+/CD8+ T cells, enhancing anti-tumor immunity and suggesting a novel NKT/T cell switch in response to CB.

Area of Science:

  • Immunology
  • Cancer Biology
  • Pharmacology

Background:

  • The temporal dynamics of the immune response to checkpoint blockade (CB) therapy are not fully understood.
  • Profiling the tumor-infiltrating lymphocyte (TIL) landscape at different stages of tumor growth is crucial for understanding treatment efficacy.

Purpose of the Study:

  • To investigate the temporal changes in the TIL landscape during combination CB therapy.
  • To characterize the phenotype and effector functions of TILs in response to anti-PD-1 and anti-CTLA-4 antibodies at distinct timepoints of solid tumor growth.

Main Methods:

  • MC38 tumor-bearing mice were treated with anti-PD-1 and/or anti-CTLA-4 antibodies.
  • TILs were analyzed using high-parameter flow cytometry at 11 and 21 days post-treatment.
  • Ex vivo cytotoxicity and in vivo tumor growth assays were performed to assess TIL function.

Main Results:

  • Tumor-infiltrating lymphocyte populations and functions significantly shifted between early (11 days) and late (21 days) tumor growth.
  • Early response was dominated by TNFα-producing NKT cells, while later stages showed increased IFN-γ-producing NK, CD4+, and CD8+ T cells.
  • CB treatment accelerated this switch, reducing NKT cells and enhancing CD4+/CD8+ T cell responses with increased IFN-γ production.

Conclusions:

  • Checkpoint blockade accelerates a switch from an NKT-driven, TNFα-producing immune response to a CD4+/CD8+ T cell-driven, IFN-γ-producing response.
  • This NKT/T cell switch is a potential key mechanism in CB response for CD1d+ tumors, highlighting an indirect role for NKT cells in anti-tumor immunity.

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