DOI: 10.1158/0008-5472.can-25-5945 ISSN: 0008-5472

Fasting-Mimicking Diets Reprogram Cancer-Associated Fibroblasts to Reverse the Immunosuppressive Tumor Microenvironment in Breast Cancer

Junsheng Zhang, Ning Li, Rongrong Li, Yitian Chen, Charles R. Ashby, Yuhui Tang, Yajie Sun, Xiaoming Xie, Zhe-Sheng Chen, Lu Yang

Abstract

Fasting-mimicking diets (FMD) have been reported to increase the anti-tumor efficacy in preclinical studies in various cancers. FMD can impact the tumor microenvironment (TME), and elucidating the mechanisms and cells mediating the effects of FMD may uncover combination treatment strategies. Here, we performed single-cell transcriptomic sequencing to characterize the TME changes induced by FMD intervention in a mouse model of spontaneous breast cancer. The sequencing data indicated that FMD suppressed tumor cell stemness, promoted apoptosis, and increased the infiltration of innate and adaptive immune cells, especially natural killer (NK) cells and effector CD8+T cells. Importantly, FMD induced phenotypic reprogramming of cancer-associated fibroblasts (CAFs), leading to a decrease in the immunosuppressive inflammatory CAF (iCAF) subset. Mechanistically, FMD decreased platelet-derived growth factor C (PDGFC) secretion in tumor cells by reducing glucose and inhibiting glycolysis to reprogram CAFs. PDGFC increased activation of the JAK/STAT3 pathway, which induced iCAF differentiation. Combining FMD with PDGFR inhibitors increased the efficacy of anti-PD-L1 immunotherapy in vivo. Overall, this study reveals a mechanism of metabolic-immune rewiring through which FMD suppresses tumor progression, providing preliminary evidence for the potential of combination FMD-based strategies in breast cancer treatment.

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