Fujimaki Shin, Takemasa Tohru, Kuwabara Tomoko
Research Center for Stem Cell Engineering, National Institute of Advanced Industrial Science and Technology, Japan./Physical Education, Health and Sport Sciences, Graduate School of Comprehensive Human Sciences, University of Tsukuba, Japan.
Clin Calcium. 2014 Oct;24(10):1463-70.
Skeletal muscle has a high degree of plasticity. The mass of skeletal muscle maintains owing to muscle protein synthesis and the regeneration by satellite cells. Skeletal muscle atrophy with aging (sarcopenia) is developed by decline of muscle protein synthesis and dysfunction of satellite cells. It is urgently necessary for today's highly aged society to elucidate the mechanism of sarcopenia and to establish prevention measure. This review shows that the positive effects of "exercise" on muscle protein synthesis and satellite cell function including their main molecular mechanism.
骨骼肌具有高度的可塑性。骨骼肌质量通过肌肉蛋白质合成和卫星细胞的再生得以维持。随着年龄增长出现的骨骼肌萎缩(肌肉减少症)是由肌肉蛋白质合成下降和卫星细胞功能障碍所致。在当今老龄化程度极高的社会中,迫切需要阐明肌肉减少症的机制并建立预防措施。这篇综述展示了“运动”对肌肉蛋白质合成和卫星细胞功能的积极作用,包括其主要分子机制。