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Excessive vigorous exercise impairs cognitive function through a muscle-derived mitochondrial pretender

Cell metabolism. 2025-12; 
Yan Huang, Biao Hu, Ya Liu, Ling-Qi Xie, Yu Dai, Yu-Ze An, Xin-Yi Peng, Ya-Lun Cheng, Yi-Fan Guo, Wei-Hong Kuang, Yao Xiao, Xin Chen, Yong-Jun Zheng, Gen-Qing Xie, Jian-Ping Wang, Hui Peng, Xiang-Hang Luo
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Nucleic Acid Purification & Analysis Tissue total RNA was prepared using TRIzol (Invitrogen) and cDNA was prepared using the Reverse Transcriptase (E00050, GenScript) according to the manufacturer’s instructions. Get A Quote

摘要

Excessive exercise impairs cognitive function, but the underlying mechanism remains unclear. Here, we show that excessive vigorous exercise-induced lactate accumulation stimulates muscles to secrete mitochondria-derived vesicles (MDVs), driving cognitive impairment. These MDVs (named otMDVs) are characterized by high mtDNA levels and the surface marker PAF. They tend to migrate into hippocampal neurons, substituting endogenous mitochondria and triggering a synaptic energy crisis. Mechanistically, otMDVs release mtDNA, which activates cGAS-STING-dependent inhibition of kinesin family member 5, preventing hippocampal mitochondria from transporting to synapses. Simultaneously, the otMDV marker PAF cooperates with ... More

关键词

MDVs; cognitive decline; excessive vigorous exercise.