Shichuan Hu, Gang Shi, Jing Zhao, Xiangyu Long, Liansha Tang, Zhongbing Qi, Xianglin Xu, Ping Cheng, Jiyan Liu
The gut microbiome profoundly influences the clinical benefits of antitumor immunotherapy. Although various gut microbiota have been shown to enhance immunotherapy, their clinical application remains unexplored. In this study, a dendritic cell (DC) vaccine loaded with the gut commensal Bacteroides fragilis (DC-Bf) was used as a therapeutic cancer vaccine. DC-Bf elicited T-cell responses that recognize both B.fragilis and tumor cells, primarily via major histocompatibility complex-I-mediated cross-presentation of B.fragilis antigens to prime CD8+ T cells. DC-Bf treatment increased CD8+ T cell infiltration and activation, expanded the diversity of the T-cell receptor repertoire, and reduced the proportion of regulatory T cells and M2-type tumor-associated macrophages, thereby improving the immunosuppressive tumor microenvironment. In multiple tumor-bearing models, DC-Bf enhanced the therapeutic activity of programmed cell death protein 1 inhibitors by inducing interleukin-12-driven, CD8+ T-cell-dependent antitumor immune responses. This study confirms the potential of using bacteria-loaded DCs to augment immunotherapy efficacy and provides a new perspective for the clinical application of the gut microbiome. Targeting the gut microbiota holds promise as a novel avenue for developing antitumor vaccines.