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In Vivo Immunogenicity Screening of Tumor-Derived Extracellular Vesicles by Flow Cytometry of Splenic T Cells
Published on: September 23, 2021
Highly immunogenic cancer cells require activation of the WNT pathway for immunological escape
Yoshiko Takeuchi1,2, Tokiyoshi Tanegashima1,3, Eiichi Sato4
1Division of Cancer Immunology, Research Institute/Exploratory Oncology Research & Clinical Trial Center (EPOC), National Cancer Center, Tokyo/Chiba, Japan.
Abstract:
PD-1 blockade exerts antitumor effects by reinvigorating tumor antigen–specific CD8+ T cells. Whereas neoantigens arising from gene alterations in cancer cells comprise critical tumor antigens in antitumor immunity, a subset of non–small cell lung cancers (NSCLCs) harboring substantial tumor mutation burden (TMB) lack CD8+ T cells in the tumor microenvironment (TME), which results in resistance to PD-1 blockade therapy. To overcome this resistance, clarifying the mechanism(s) impairing antitumor immunity in highly mutated NSCLCs is an urgent issue. Here, we showed that activation of the WNT/β-catenin signaling pathway contributed to the development of a noninflamed TME in tumors with high TMB. NSCLCs that lacked immune cell infiltration into the TME despite high TMB preferentially up-regulated the WNT/β-catenin pathway. Immunologic assays revealed that those patients harbored neoantigen-specific CD8+ T cells in the peripheral blood but not in the TME, suggesting impaired T cell infiltration into the TME due to the activation of WNT/β-catenin signaling. In our animal models, the accumulation of gene mutations in cancer cells increased CD8+ T cell infiltration into the TME, thus slowing tumor growth. However, further accumulation of gene mutations blunted antitumor immunity by excluding CD8+ T cells from tumors in a WNT/β-catenin signaling-dependent manner. Combined treatment with PD-1 blockade and WNT/β-catenin signaling inhibitors induced better antitumor immunity than either treatment alone. Thus, we propose a mechanism-oriented combination therapy whereby immune checkpoint inhibitors can be combined with drugs that target cell-intrinsic oncogenic signaling pathways involved in tumor immune escape.
Insights
Activation of WNT/β-catenin signaling impairs CD8+ T cell infiltration in non-small cell lung cancers (NSCLCs) with high tumor mutation burden (TMB), leading to resistance to PD-1 blockade. Combining PD-1 blockade with WNT/β-catenin inhibitors enhances antitumor immunity.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- PD-1 blockade therapy enhances antitumor immunity by activating CD8+ T cells.
- Some non-small cell lung cancers (NSCLCs) with high tumor mutation burden (TMB) resist PD-1 blockade due to lack of CD8+ T cells in the tumor microenvironment (TME).
Purpose of the Study:
- To elucidate the mechanisms underlying impaired antitumor immunity in highly mutated NSCLCs.
- To identify strategies to overcome resistance to PD-1 blockade in NSCLC.
Main Methods:
- Analysis of WNT/β-catenin signaling pathway activation in NSCLC tumors with high TMB.
- Immunologic assays to assess CD8+ T cell presence in peripheral blood and TME.
- Evaluation of combined PD-1 blockade and WNT/β-catenin signaling inhibitor treatment in animal models.
Main Results:
- High TMB NSCLCs with noninflamed TME showed preferential WNT/β-catenin pathway activation.
- Patients had neoantigen-specific CD8+ T cells in blood but not TME, indicating impaired T cell infiltration linked to WNT/β-catenin signaling.
- Inhibition of WNT/β-catenin signaling restored CD8+ T cell infiltration and enhanced antitumor immunity in combination with PD-1 blockade.
Conclusions:
- WNT/β-catenin pathway activation promotes immune evasion in high TMB NSCLCs by hindering CD8+ T cell infiltration.
- Targeting WNT/β-catenin signaling in combination with immune checkpoint inhibitors offers a promising therapeutic strategy for NSCLC.
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