CCL5hi-CD4+ T cells Regulate Macrophage Polarization and Promote Immunotherapy Response in Bladder Cancer.
basic_science · Level V
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- Record sourced from PubMed, PMID 41706539.
- Also identified by DOI 10.1158/0008-5472.CAN-25-2220.
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Abstract
Immune checkpoint inhibitors (ICIs) have transformed cancer therapy, yet their efficacy remains limited to a subset of patients, underscoring the need for robust predictive biomarkers and deeper mechanistic insights into treatment resistance. In this study, we identified a population of CCL5hi-CD4+ T cells that were characterized by memory-like activation markers and strongly correlate with ICI therapeutic responses in bladder cancer. Functionally, these T cells enhanced antitumor immunity by promoting M1-like macrophage polarization through CCL5/CCR1 signaling. Importantly, tumor-derived prostaglandin E2 (PGE2) acted as a critical microenvironmental factor that suppressed the differentiation of CCR6hi-CD4+ T cells into immunostimulatory CCL5hi-CD4+ T cells, thereby driving resistance to ICI therapy. These findings extend the understanding of CD4+ T cell heterogeneity and its role in shaping immune responses to ICI. By elucidating that CCL5hi-CD4+ T cells enhance myeloid-mediated tumor control and that tumor-derived PGE2 disrupts CCL5hi-CD4+ T cell differentiation to promote immune evasion, this work highlights potential therapeutic strategies to improve ICI efficacy in bladder cancer.