Mitochondrial metabolic reprogramming drives tumor immune evasion: regulatory mechanisms and targeting strategies

Cancer immunotherapy leverages the host’s immune system to combat malignant tumors, revolutionizing the field of oncology. However, drug resistance in tumor immunotherapy, which leads to attenuated efficacy or even treatment failure, remains a major challenge in clinical practice. Cancer cells rely on metabolic reprogramming to fulfill their escalating energy and biosynthetic demands. As the central organelles governing cellular energy metabolism, mitochondria play a prominent role in modulating immune cell metabolism and activation, as well as mediating tumor immune escape and therapeutic resistance. Emerging evidence indicates that targeting mitochondria-related pathways can boost the immunogenicity and antigen-presentation efficiency of tumor cells, enhance immune effector functions, and promote tumor cell killing, thereby offering a novel strategy for overcoming immunotherapy resistance. This review systematically summarizes the core functions of mitochondria in tumor immune regulation, with a focus on the molecular mechanisms underlying mitochondria-mediated immunotherapy resistance. We further discuss mitochondria-targeted interventions that reverse such resistance, along with their translational and clinical potential. By integrating the latest research advances, this review provides theoretical insights and a conceptual framework for future mechanistic studies and clinical translation.

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Publication Details

Journal
Journal of Translational Medicine
Published
2026-09-15
DOI
https://doi.org/10.1186/s12967-026-08972-8
Primary Topic
Cancer, Hypoxia, and Metabolism
Type
article
Field-Weighted Citation Impact
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Mitochondrial metabolic reprogramming drives tumor immune evasion: regulatory mechanisms and targeting strategies

Yongning Lv, Sanlan Wu, Xia Li, Weijing Gong et al.
Journal of Translational Medicine
Cancer, Hypoxia, and Metabolism
article

Mitochondrial metabolic reprogramming drives tumor immune evasion: regulatory mechanisms and targeting strategies

Yongning Lv, Sanlan Wu, Xia Li, Weijing Gong, Chao Mei, Xinxin Zhu
article en

Abstract

Cancer immunotherapy leverages the host’s immune system to combat malignant tumors, revolutionizing the field of oncology. However, drug resistance in tumor immunotherapy, which leads to attenuated efficacy or even treatment failure, remains a major challenge in clinical practice. Cancer cells rely on metabolic reprogramming to fulfill their escalating energy and biosynthetic demands. As the central organelles governing cellular energy metabolism, mitochondria play a prominent role in modulating immune cell metabolism and activation, as well as mediating tumor immune escape and therapeutic resistance. Emerging evidence indicates that targeting mitochondria-related pathways can boost the immunogenicity and antigen-presentation efficiency of tumor cells, enhance immune effector functions, and promote tumor cell killing, thereby offering a novel strategy for overcoming immunotherapy resistance. This review systematically summarizes the core functions of mitochondria in tumor immune regulation, with a focus on the molecular mechanisms underlying mitochondria-mediated immunotherapy resistance. We further discuss mitochondria-targeted interventions that reverse such resistance, along with their translational and clinical potential. By integrating the latest research advances, this review provides theoretical insights and a conceptual framework for future mechanistic studies and clinical translation.

Journal of Translational Medicine
Precision for Medicine (United States) (US), Wuhan Union Hospital (CN), Union Hospital (CN)
Good health and well-being
Openalex Percentile: Top 14%
Cancer, Hypoxia, and Metabolism
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Mitochondrial metabolic reprogramming drives tumor immune evasion: regulatory mechanisms and targeting strategies — Yongning Lv, Sanlan Wu, et al. · Journal of Translational Medicine (2026) | TGRS Research Map | TGRS