Lou Peng, Zhou Xiyue, Zhang Yimeng, Xie Yijing, Wang Yizhuo, Wang Chengshi, Liu Shuyun, Wan Meihua, Lu Yanrong, Liu Jingping
Department of General Surgery and NHC Key Laboratory of Transplant Engineering and Immunology, Frontiers Science Center for Disease-related Molecular Network, West China Hospital, Sichuan University, Chengdu 610041, China.
Department of Endocrinology and Metabolism, Center for Diabetes and Metabolism Research, West China Hospital, Sichuan University, Chengdu 610041, China.
Sci Adv. 2025 Jul 18;11(29):eadt1318. doi: 10.1126/sciadv.adt1318. Epub 2025 Jul 16.
Mitochondrial damage is a critical pathological factor in various forms of tissue injury, and specific therapies with high biosafety are desirable. Inspired by the natural role of extracellular vesicles (EVs) in regulating mitochondrial metabolism, we report that healthy tissue-derived mitochondria-rich EVs (Ti-mitoEVs) can boost mitochondrial biogenesis for regenerative medicine. Ti-mitoEVs that contain abundant functional mitochondria can be highly efficiently isolated from muscles via an optimized method. In vitro, Ti-mitoEV treatment increased mitochondrial biogenesis and reduced mitochondrial damage in recipient cells, and these effects occurred at least partly via mitochondrial genome transfer. In vivo, Ti-mitoEV treatment attenuated diverse types of tissue injury (e.g., muscle and kidney) by rescuing mitochondrial injury and its associated inflammation. As natural nanovesicles, the therapeutic potency of mitoEVs can be further improved by integrating them with other engineering methods. This study highlights the promising role of Ti-mitoEVs in boosting mitochondrial biogenesis, positioning them as potential therapies for treating various types of tissue injury characterized by mitochondrial damage.
线粒体损伤是各种组织损伤形式中的关键病理因素,因此需要具有高生物安全性的特异性治疗方法。受细胞外囊泡(EVs)在调节线粒体代谢中的天然作用启发,我们报告称,源自健康组织的富含线粒体的EVs(Ti-mitoEVs)可促进线粒体生物合成,用于再生医学。通过优化方法可从肌肉中高效分离出含有丰富功能性线粒体的Ti-mitoEVs。在体外,Ti-mitoEV处理可增加受体细胞中的线粒体生物合成并减少线粒体损伤,且这些作用至少部分是通过线粒体基因组转移实现的。在体内,Ti-mitoEV处理通过挽救线粒体损伤及其相关炎症减轻了多种类型的组织损伤(如肌肉和肾脏损伤)。作为天然纳米囊泡,将mitoEVs与其他工程方法相结合可进一步提高其治疗效力。本研究突出了Ti-mitoEVs在促进线粒体生物合成方面的潜在作用,使其成为治疗以线粒体损伤为特征的各种组织损伤的潜在疗法。