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Data from Mannose Enhances Immunotherapy Efficacy in Ovarian Cancer by Modulating Gut Microbial Metabolites

作者:Chen Zhang, Yiying Wang, Mengdi He, Chenyang Wang, Kankan Cao, Yujing Zhong, Xueling Wang, Moran Yang, Guodong Zhang, Jiaqi Lu, Huan Yi, Haiou Liu, Congjian Xu · 年份:2025 · DOI:10.1158/0008-5472.c.7906474 · 被引用次数:1 · 研究领域:Gut microbiota and health

<div>Abstract<p>The gut microbiome significantly influences the effectiveness of immune checkpoint blockade therapy. However, its clinical application is hindered by the absence of cost-effective production methods. In this study, we demonstrated that oral mannose supplementation inhibits ovarian tumor growth in immunocompetent mice through the enrichment of <i>Faecalibaculum rodentium</i> (<i>F. rodentium</i>). Administration of <i>F. rodentium</i> not only suppressed tumor progression but also enhanced antitumor immune responses. Mannose supplementation fostered an immune stimulatory tumor microenvironment, characterized by the expansion and differentiation of progenitor-exhausted CD8<sup>+</sup> T cells (Tpex). Metabolomics analysis identified propionate and butyrate as critical metabolites driving the mannose-mediated tumor-suppressive effects, which was validated <i>in vivo</i>. Mechanistically, propionate and butyrate enhanced histone acetylation to promote Tpex-cell expansion. Moreover, a mannose-related gene signature was associated with favorable response to immune checkpoint blockade therapy across multiple cancer types. Supplementation with mannose also improved the efficacy of anti–PD-1 therapy and PARP inhibitor treatment. These findings highlight the role of <i>F. rodentium</i>–derived metabolites propionate and butyrate as key stimulators of Tpex-cell expansion, thereby activati...