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A Combined 3D Tissue Engineered In Vitro/In Silico Lung Tumor Model for Predicting Drug Effectiveness in Specific Mutational Backgrounds
Published on: April 6, 2016
Integrative transcriptome analysis reveals the molecular events underlying impaired T-cell responses in EGFR-mutant
1Department of Immunology, Medical School of Nantong University, Nantong, Jiangsu, China.
Abstract:
EGFR mutations are critical oncogenic drivers in lung adenocarcinoma (LUAD). However, the mechanisms by which they impact the tumor microenvironment (TME) and tumor immunity are unclear. Furthermore, the reasons underlying the poor response of EGFR-mutant (EGFR-MU) LUADs to immunotherapy with PD-1/PD-L1 inhibitors are unknown. Utilizing single-cell RNA (sc-RNA) and bulk RNA sequencing datasets, we conducted high-dimensional weighted gene coexpression network analysis to identify key genes and immune-related pathways contributing to the immunosuppressive TME. EGFR-MU cancer cells downregulated MHC class I genes to evade CD8+ cytotoxic T cells, expressed substantial levels of MHC class II molecules, and engaged with CD4+ regulatory T cells (Tregs). EGFR-MU tumors may recruit Tregs primarily through the CCL17/CCL22/CCR4 axis, leading to a Treg-enriched TME. High levels of MHC class II-positive cancer-associated fibroblasts and tumor endothelial cells were found within EGFR-MU tumors. Owing to the absence of costimulatory factors, they may inhibit rather than activate the tumor antigen-specific CD4+ T-cell response, contributing further to immune suppression. Multiplex immunohistochemistry analyses in a LUAD cohort confirmed increased expression of MHC class II molecules in cancer cells and fibroblasts in EGFR-MU tumors. Our research elucidates the highly immunosuppressive TME in EGFR-MU LUAD and suggests potential targets for effective immunotherapy.
Insights
Epidermal growth factor receptor (EGFR) mutations in lung adenocarcinoma create an immune-suppressive tumor microenvironment. This hinders responses to immunotherapy by downregulating T-cell interactions and recruiting regulatory T cells.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Epidermal growth factor receptor (EGFR) mutations are key drivers in lung adenocarcinoma (LUAD).
- The impact of EGFR mutations on the tumor microenvironment (TME) and immune response remains unclear.
- Understanding these mechanisms is crucial for improving immunotherapy efficacy in EGFR-mutant LUAD.
Purpose of the Study:
- To investigate how EGFR mutations shape the TME in LUAD.
- To identify mechanisms contributing to the immunosuppressive TME and poor immunotherapy response.
- To uncover potential therapeutic targets for enhancing immunotherapy in EGFR-mutant LUAD.
Main Methods:
- Utilized single-cell RNA (sc-RNA) and bulk RNA sequencing.
- Performed high-dimensional weighted gene coexpression network analysis.
- Conducted multiplex immunohistochemistry analyses on a LUAD cohort.
Main Results:
- EGFR-mutant (EGFR-MU) cancer cells downregulate MHC class I and upregulate MHC class II molecules.
- EGFR-MU tumors recruit CD4+ regulatory T cells (Tregs) via the CCL17/CCL22/CCR4 axis.
- MHC class II-expressing fibroblasts and endothelial cells in EGFR-MU tumors may inhibit CD4+ T-cell responses.
Conclusions:
- EGFR mutations induce a highly immunosuppressive TME in LUAD.
- EGFR-MU LUAD exhibits complex immune evasion strategies involving MHC molecules and Treg recruitment.
- Targeting identified pathways may enhance immunotherapy effectiveness in EGFR-mutant LUAD.
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