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骨骼肌细胞外基质和线粒体的衰老:寻找潜在联系。

Ageing of skeletal muscle extracellular matrix and mitochondria: finding a potential link.

机构信息

Department of Sports Medicine, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Department of Sports Medicine, Huashan Hospital, Fudan University, Shanghai, China.

出版信息

Ann Med. 2023;55(2):2240707. doi: 10.1080/07853890.2023.2240707.

Abstract

To discuss the progress of extracellular matrix (ECM) characteristics, mitochondrial homeostasis, and their potential crosstalk in the pathogenesis of sarcopenia, a geriatric syndrome characterized by a generalized and progressive reduction in muscle mass, strength, and physical performance. This review focuses on the anatomy and physiology of skeletal muscle, alterations of ECM and mitochondria during ageing, and the role of the interplay between ECM and mitochondria in the pathogenesis of sarcopenia. Emerging evidence points to a clear interplay between mitochondria and ECM in various tissues and organs. Under the ageing process, the ECM undergoes changes in composition and physical properties that may mediate mitochondrial changes via the systematic metabolism, ROS, SPARC pathway, and AMPK/PGC-1α signalling, which in turn exacerbate muscle degeneration. However, the precise effects of such crosstalk on the pathobiology of ageing, particularly in skeletal muscle, have not yet been fully understood. The changes in skeletal muscle ECM and mitochondria are partially responsible for the worsened muscle function during the ageing process. A deeper understanding of their alterations and interactions in sarcopenic patients can help prevent sarcopenia and improve its prognoses.

摘要

探讨细胞外基质(ECM)特征、线粒体动态平衡及其在以肌肉质量、力量和身体机能全面和进行性下降为特征的老年综合征——肌肉减少症发病机制中的潜在相互作用。本综述重点介绍了骨骼肌的解剖学和生理学、衰老过程中 ECM 和线粒体的改变,以及 ECM 和线粒体相互作用在肌肉减少症发病机制中的作用。新出现的证据表明,线粒体和 ECM 之间在各种组织和器官中存在明显的相互作用。在衰老过程中,ECM 的组成和物理性质发生变化,可能通过系统代谢、ROS、SPARC 途径和 AMPK/PGC-1α 信号转导介导线粒体变化,进而加剧肌肉退化。然而,这种相互作用对衰老的病理生物学的具体影响,特别是在骨骼肌中,尚未得到充分理解。骨骼肌 ECM 和线粒体的变化部分导致衰老过程中肌肉功能恶化。深入了解其在肌肉减少症患者中的改变和相互作用有助于预防肌肉减少症并改善其预后。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9da2/10732198/4124f698bc1c/IANN_A_2240707_F0001_C.jpg

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