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FABP4/5-Mediated Lipid Reprogramming Is Associated with Immunosuppressive T Cell Crosstalk in Cervical Cancer After
Tianhan Xu1,2, Mingjun Ma2, Jiawen Zhang3
1Department of Obstetrics and Gynecology, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200080, China.
Abstract:
Background: Concurrent chemoradiotherapy (CCRT) is the standard treatment for locally advanced cervical cancer, but resistance and recurrence remain major clinical challenges. Tumor immune-metabolic reprogramming profoundly affects treatment response and immune evasion; however, the molecular mechanisms of lipid metabolism remodeling and its interaction with T cells after CCRT in cervical cancer are still unclear. This study aimed to investigate how CCRT-induced metabolic changes in cervical cancer cells influence T cell function and immune evasion. Methods: We performed metabolic pathway activity analysis, cell-cell communication prediction, and transcriptomic analysis on paired single-cell transcriptomic data from three cervical cancer patients before and after CCRT (n = 3 paired). Validation was conducted using multiple independent GEO cohorts, in vitro cell culture experiments, and multi-sample immunofluorescence staining. Results: CCRT was associated with upregulation of FABP4/5 in malignant epithelial cells and activation of the PPAR and adipocytokine signaling pathways, leading to lipid metabolic reprogramming. Epithelial cells with high FABP4/5 expression showed enhanced predicted intercellular communication with T cells via the computationally inferred ligand-receptor axes PTGER4 and CXCR4. T cells with high communication intensity exhibited an immunosuppressive phenotype signature, accompanied by metabolic alterations in lipid and carbohydrate pathways and enrichment of regulatory T cell subsets. Validation experiments confirmed the association between FABP4/5 and inhibitory T cells. Conclusions: This study suggests that FABP4/5-mediated lipid metabolism reprogramming may represent a key mechanism contributing to the immunosuppressive crosstalk between cervical cancer epithelial cells and T cells after CCRT. Targeting this axis may reverse T cell dysfunction and provide a potential immunometabolic strategy to reduce post-CCRT recurrence.
