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Immune Checkpoints in Circulating and Tumor-Infiltrating CD4+ T Cell Subsets in Colorectal Cancer Patients
Salman M Toor1, Khaled Murshed2, Mahmood Al-Dhaheri3
1Cancer Research Center, Qatar Biomedical Research Institute (QBRI), Hamad Bin Khalifa University (HBKU), Qatar Foundation (QF), Doha, Qatar.
Abstract:
Blockade of inhibitory immune checkpoints (ICs) is a promising therapeutic approach; however, it has shown limited success in some cancers including colorectal cancer (CRC). The tumor microenvironment (TME) is largely responsible for response to therapy, and its constituents may provide robust biomarkers for successful immunotherapeutic approaches. In this study, we performed phenotypical characterization and critical analyses of key inhibitory ICs and T regulatory cell (Treg)-related markers on CD4+ T cell subsets in CRC patients, and compared with normal colon tissues and peripheral blood from the same patients. We also investigated correlations between the levels of different CD4+ T cell subsets and the clinicopathologic features including disease stage and tumor budding. We found a significant increase in the levels of CD4+FoxP3+Helios+ T cells, which represent potentially highly immunosuppressive Tregs, in the CRC TME. Additionally, tumor-infiltrating CD4+ T cells upregulated programmed cell death protein-1 (PD-1), cytotoxic T-lymphocyte-associated protein-4 (CTLA-4), T cell immunoglobulin and mucin domain-3 (TIM-3) and lymphocyte-activation gene 3 (LAG-3). We also characterized the expression of PD-1, CTLA-4, TIM-3, and LAG-3 on different CD4+FoxP3-/+Helios-/+ T cell subsets. Interestingly, we found that CTLA-4, TIM-3, and LAG-3 were mainly co-expressed on FoxP3+Helios+ Tregs in the TME. Additionally, FoxP3high Tregs expressed higher levels of Helios, CTLA-4 and TIM-3 than FoxP3low T cells. These results highlight the significance of Tregs in the CRC TME and suggest that Tregs may hamper response to IC blockade in CRC patients, but effects of different IC inhibition regimes on Treg levels or activity warrants further investigations. We also found that CD4+CTLA-4+ T cells in circulation are increased in patients with advanced disease stage. This study simultaneously provides important insights into the differential levels of CD4+ T cell subpopulations and IC expression in CRC TME, compared to periphery and associations with clinicopathologic features, which could be used as potential biomarkers for CRC progression and response to therapy.
Insights
Colorectal cancer (CRC) tumors show increased immunosuppressive regulatory T cells (Tregs) expressing immune checkpoints (ICs). These Tregs may limit immunotherapy success, but CD4+ CTLA-4+ T cells in circulation correlate with advanced disease, offering potential biomarkers.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Immune checkpoint (IC) blockade shows limited efficacy in colorectal cancer (CRC).
- The tumor microenvironment (TME) influences therapeutic response and may contain biomarkers.
- Understanding CD4+ T cell subsets and ICs in CRC is crucial for improving immunotherapy.
Purpose of the Study:
- To phenotypically characterize inhibitory ICs and T regulatory cell (Treg)-related markers on CD4+ T cell subsets in CRC.
- To compare these markers in CRC tissues versus normal tissues and peripheral blood.
- To investigate correlations between CD4+ T cell subsets, ICs, and clinicopathologic features in CRC.
Main Methods:
- Phenotypical characterization of CD4+ T cell subsets and ICs (PD-1, CTLA-4, TIM-3, LAG-3) in CRC tissues and peripheral blood.
- Analysis of Treg markers (FoxP3, Helios) on CD4+ T cells.
- Correlation analysis between immune cell populations and clinicopathologic features (disease stage, tumor budding).
Main Results:
- Increased levels of CD4+FoxP3+Helios+ Tregs, potent immunosuppressors, were found in the CRC TME.
- Tumor-infiltrating CD4+ T cells upregulated PD-1, CTLA-4, TIM-3, and LAG-3.
- CTLA-4, TIM-3, and LAG-3 were co-expressed on FoxP3+Helios+ Tregs; CD4+CTLA-4+ T cells increased with advanced disease stage.
Conclusions:
- Tregs play a significant role in the CRC TME and may impede responses to IC blockade therapy.
- Specific CD4+ T cell subsets and IC expression patterns in CRC TME and circulation show associations with disease progression.
- These findings suggest potential biomarkers for CRC progression and predicting response to immunotherapy.

