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Transfer of Manipulated Tumor-associated Neutrophils into Tumor-Bearing Mice to Study their Angiogenic Potential In Vivo
Published on: July 20, 2019
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.
Background:
The temporal response to checkpoint blockade (CB) is incompletely understood. Here, we profiled the tumor infiltrating lymphocyte (TIL) landscape in response to combination checkpoint blockade at two distinct timepoints of solid tumor growth.
Methods:
C57BL/6 mice bearing subcutaneous MC38 tumors were treated with anti-PD-1 and/or anti-CTLA-4 antibodies. At 11 or 21 days, TIL phenotype and effector function were analyzed in excised tumor digests using high parameter flow cytometry. The contributions of major TIL populations toward overall response were then assessed using ex vivo cytotoxicity and in vivo tumor growth assays.
Results:
The distribution and effector function among 37 distinct TIL populations shifted dramatically between early and late MC38 growth. At 11 days, the immune response was dominated by Tumor necrosis factor alpha (TNFα)-producing NKT, representing over half of all TIL. These were accompanied by modest frequencies of natural killer (NK), CD4+, or CD8+ T cells, producing low levels of IFN-γ. At 21 days, NKT populations were reduced to a combined 20% of TIL, giving way to increased NK, CD4+, and CD8+ T cells, with increased IFN-γ production. Treatment with CB accelerated this switch. At day 11, CB reduced NKT to less than 20% of all TIL, downregulated TNFα across NKT and CD4+ T cell populations, increased CD4+ and CD8+ TIL frequencies, and significantly upregulated IFN-γ production. Degranulation was largely associated with NK and NKT TIL. Blockade of H-2kb and/or CD1d during ex vivo cytotoxicity assays revealed NKT has limited direct cytotoxicity against parent MC38. However, forced CD1d overexpression in MC38 cells significantly diminished tumor growth, suggesting NKT TIL exerts indirect control over MC38 growth.
Conclusions:
Despite an indirect benefit of early NKT activity, CB accelerates a switch from TNFα, NKT-driven immune response toward an IFN-γ driven CD4+/CD8+ T cell response in MC38 tumors. These results uncover a novel NKT/T cell switch that may be a key feature of CB response in CD1d+ tumors.
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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