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骨骼肌废用性萎缩涉及的分子事件和信号通路,以及对抗措施的影响。

Molecular events and signalling pathways involved in skeletal muscle disuse-induced atrophy and the impact of countermeasures.

机构信息

Department of Cellular and Molecular Medicine, Centre for Neuromuscular Disease, Faculty of Medicine, University of Ottawa, Ottawa, ON, Canada.

出版信息

J Cell Mol Med. 2009 Sep;13(9B):3032-50. doi: 10.1111/j.1582-4934.2009.00864.x. Epub 2009 Jul 28.

Abstract

Disuse-induced skeletal muscle atrophy occurs following chronic periods of inactivity such as those involving prolonged bed rest, trauma and microgravity environments. Deconditioning of skeletal muscle is mainly characterized by a loss of muscle mass, decreased fibre cross-sectional area, reduced force, increased fatigability, increased insulin resistance and transitions in fibre types. A description of the role of specific transcriptional mechanisms contributing to muscle atrophy by altering gene expression during muscle disuse has recently emerged and focused primarily on short period of inactivity. A better understanding of the transduction pathways involved in activation of proteolytic and apoptotic pathways continues to represent a major objective, together with the study of potential cross-talks in these cellular events. In parallel, evaluation of the impact of countermeasures at the cellular and molecular levels in short- and long-term disuse experimentations or microgravity environments should undoubtedly and synergistically increase our basic knowledge in attempts to identify new physical, pharmacological and nutritional targets to counteract muscle atrophy. These investigations are important as skeletal muscle atrophy remains an important neuromuscular challenge with impact in clinical and social settings affecting a variety of conditions such as those seen in aging, cancer cachexia, muscle pathologies and long-term space exploration.

摘要

废用性肌肉萎缩发生于慢性活动不足的情况下,如长期卧床、创伤和微重力环境。骨骼肌肉失用的主要特征是肌肉质量下降、纤维横截面积减小、力量降低、疲劳性增加、胰岛素抵抗增加以及纤维类型转变。最近出现了一种描述特定转录机制在肌肉失用过程中通过改变基因表达导致肌肉萎缩作用的方法,并主要集中在短时间的不活动上。更好地理解参与蛋白水解和凋亡途径激活的转导途径仍然是一个主要目标,同时还研究了这些细胞事件中的潜在串扰。此外,在短期和长期的失用实验或微重力环境中,评估细胞和分子水平上的对抗措施的影响,无疑将协同增加我们在试图识别新的物理、药理学和营养靶点以对抗肌肉萎缩方面的基础知识。这些研究很重要,因为骨骼肌肉萎缩仍然是一个重要的神经肌肉挑战,对临床和社会环境有影响,涉及多种情况,如衰老、癌症恶病质、肌肉病理和长期太空探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a792/4516463/5d3cf57527ae/jcmm0013-3032-f1.jpg

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