Department of Geriatrics, Neuroscience and Orthopedics, Teaching Hospital "Agostino Gemelli", Catholic University of the Sacred Heart School of Medicine, L.go F. Vito 1, I-00168 Rome, Italy.
Department of Surgery, Teaching Hospital "Agostino Gemelli", Catholic University of the Sacred Heart School of Medicine, I-00168 Rome, Italy.
Biol Chem. 2018 Apr 25;399(5):421-436. doi: 10.1515/hsz-2017-0331.
Sarcopenia is a well-known geriatric syndrome that has been endorsed over the years as a biomarker allowing for the discrimination, at a clinical level, of biological from chronological age. Multiple candidate mechanisms have been linked to muscle degeneration during sarcopenia. Among them, there is wide consensus on the central role played by the loss of mitochondrial integrity in myocytes, secondary to dysfunctional quality control mechanisms. Indeed, mitochondria establish direct or indirect contacts with other cellular components (e.g. endoplasmic reticulum, peroxisomes, lysosomes/vacuoles) as well as the extracellular environment through the release of several biomolecules. The functional implications of these interactions in the context of muscle physiology and sarcopenia are not yet fully appreciated and represent a promising area of investigation. Here, we present an overview of recent findings concerning the interrelation between mitochondrial quality control processes, inflammation and the metabolic regulation of muscle mass in the pathogenesis of sarcopenia highlighting those pathways that may be exploited for developing preventive and therapeutic interventions against muscle aging.
肌肉减少症是一种众所周知的老年综合征,多年来一直被认为是一种生物标志物,可在临床层面上区分生物年龄和实际年龄。多种候选机制与肌肉减少症期间的肌肉退化有关。其中,人们广泛认同线粒体完整性的丧失在肌细胞中的核心作用,这是由于功能失调的质量控制机制造成的。事实上,线粒体通过释放多种生物分子与其他细胞成分(例如内质网、过氧化物酶体、溶酶体/液泡)以及细胞外环境建立直接或间接的联系。这些相互作用在肌肉生理学和肌肉减少症中的功能意义尚未得到充分认识,这是一个很有前途的研究领域。在这里,我们概述了最近关于线粒体质量控制过程、炎症以及肌肉减少症发病机制中肌肉质量代谢调节之间相互关系的研究结果,强调了可能被用于开发预防和治疗肌肉衰老干预措施的那些途径。