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LI Shuwei, XIONG Yao, ZHANG Yuanzhen, WANG Hua. SLC7A11-Mediated Disulfidptosis and SPP1+ Cancer-Associated Fibroblasts in Ovarian Cancer Microenvironment RemodelingJ. Cancer Research on Prevention and Treatment. DOI: 10.3971/j.issn.1000-8578.2026.25.0918
Citation: LI Shuwei, XIONG Yao, ZHANG Yuanzhen, WANG Hua. SLC7A11-Mediated Disulfidptosis and SPP1+ Cancer-Associated Fibroblasts in Ovarian Cancer Microenvironment RemodelingJ. Cancer Research on Prevention and Treatment. DOI: 10.3971/j.issn.1000-8578.2026.25.0918

SLC7A11-Mediated Disulfidptosis and SPP1+ Cancer-Associated Fibroblasts in Ovarian Cancer Microenvironment Remodeling

  • Objective To investigate the role of SLC7A11-mediated disulfidptosis in regulating the functional heterogeneity of cancer-associated fibroblasts (CAFs) and remodeling the immune microenvironment in ovarian cancer (OC).
    Methods Utilizing an integrative multi-omics framework, we synchronized transcriptomic data from TCGA and GEO with high-resolution single-cell RNA sequencing (scRNA-seq) and spatial transcriptomics. We employed CellChat interactome algorithms to map disulfidptosis-related gene expression profiles across various cellular hierarchies. The mechanistic link between SLC7A11 and SPP1 was further examined via qPCR assays under glucose-deprived, disulfidptosis-inducing conditions.
    Results SLC7A11 was identified as a crucial regulator of disulfidptosis, exhibiting significant overexpression in OC tissues. Elevated SLC7A11 levels were positively correlated with advanced FIGO stages, increased tumor burden, and resistance to immune checkpoint blockade. scRNA-seq profiling identified a distinct CAF lineage (CAF1/CAF5) characterized by a robust disulfidptosis signature. This subpopulation was associated with epithelial-mesenchymal transition and an immunosuppressive niche via the SPP1-CD44 signaling axis. In situ spatial mapping suggested the localized amplification of SPP1-mediated signaling at the CAF-tumor cell interface, forming high-intensity interactomes with ITGAV, ITGB1, and CD44. Metabolic stress induced by glucose starvation significantly altered the transcriptional profiles of SLC7A11 and SPP1. Notably, the glucose starvation-induced upregulation of NRF2 mRNA in fibroblasts was effectively mitigated by NRF2 knockdown or treatment with the disulfidptosis inhibitor 2-mercaptoethanol.
    Conclusion SLC7A11-mediated disulfidptosis may activates a subset of CAFs, which may contribute to remodeling the tumor microenvironment and suppressing anti-tumor immunity through the secretion of SPP1.
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