Bellanti Francesco, Lo Buglio Aurelio, Vendemiale Gianluigi
Department of Medical and Surgical Sciences, University of Foggia, Viale Pinto 1, 71122 Foggia, Italy.
Pharmaceutics. 2022 Nov 24;14(12):2588. doi: 10.3390/pharmaceutics14122588.
An impairment in mitochondrial homeostasis plays a crucial role in the process of aging and contributes to the incidence of age-related diseases, including sarcopenia, which is defined as an age-dependent loss of muscle mass and strength. Mitochondrial dysfunction exerts a negative impact on several cellular activities, including bioenergetics, metabolism, and apoptosis. In sarcopenia, mitochondria homeostasis is disrupted because of reduced oxidative phosphorylation and ATP generation, the enhanced production of reactive species, and impaired antioxidant defense. This review re-establishes the most recent evidence on mitochondrial defects that are thought to be relevant in the pathogenesis of sarcopenia and that may represent promising therapeutic targets for its prevention/treatment. Furthermore, we describe mechanisms of action and translational potential of promising mitochondria-targeted drug delivery systems, including molecules able to boost the metabolism and bioenergetics, counteract apoptosis, antioxidants to scavenge reactive species and decrease oxidative stress, and target mitophagy. Even though these mitochondria-delivered strategies demonstrate to be promising in preclinical models, their use needs to be promoted for clinical studies. Therefore, there is a compelling demand to further understand the mechanisms modulating mitochondrial homeostasis, to characterize powerful compounds that target muscle mitochondria to prevent sarcopenia in aged people.
线粒体稳态受损在衰老过程中起关键作用,并导致与年龄相关疾病的发生,包括肌肉减少症,其定义为随年龄增长出现的肌肉质量和力量丧失。线粒体功能障碍对多种细胞活动产生负面影响,包括生物能量学、代谢和细胞凋亡。在肌肉减少症中,由于氧化磷酸化和ATP生成减少、活性物质产生增加以及抗氧化防御受损,线粒体稳态被破坏。本综述重新梳理了有关线粒体缺陷的最新证据,这些缺陷被认为与肌肉减少症的发病机制相关,可能是其预防/治疗的有前景的靶点。此外,我们描述了有前景的线粒体靶向药物递送系统的作用机制和转化潜力,包括能够促进代谢和生物能量学、对抗细胞凋亡、清除活性物质并降低氧化应激的抗氧化剂以及靶向线粒体自噬的分子。尽管这些线粒体递送策略在临床前模型中显示出前景,但仍需推动其用于临床研究。因此,迫切需要进一步了解调节线粒体稳态的机制,以鉴定能够靶向肌肉线粒体预防老年人肌肉减少症的强效化合物。