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与骨骼肌功能障碍相关的衰老:从氧化还原稳态到基因表达调控

Ageing in relation to skeletal muscle dysfunction: redox homoeostasis to regulation of gene expression.

作者信息

Goljanek-Whysall Katarzyna, Iwanejko Lesley A, Vasilaki Aphrodite, Pekovic-Vaughan Vanja, McDonagh Brian

机构信息

MRC-Arthritis Research UK Centre for Integrated research into Musculoskeletal Ageing (CIMA), Department of Musculoskeletal Biology, Institute of Ageing and Chronic Disease, University of Liverpool, Liverpool, L7 8XL, UK.

出版信息

Mamm Genome. 2016 Aug;27(7-8):341-57. doi: 10.1007/s00335-016-9643-x. Epub 2016 May 23.

Abstract

Ageing is associated with a progressive loss of skeletal muscle mass, quality and function-sarcopenia, associated with reduced independence and quality of life in older generations. A better understanding of the mechanisms, both genetic and epigenetic, underlying this process would help develop therapeutic interventions to prevent, slow down or reverse muscle wasting associated with ageing. Currently, exercise is the only known effective intervention to delay the progression of sarcopenia. The cellular responses that occur in muscle fibres following exercise provide valuable clues to the molecular mechanisms regulating muscle homoeostasis and potentially the progression of sarcopenia. Redox signalling, as a result of endogenous generation of ROS/RNS in response to muscle contractions, has been identified as a crucial regulator for the adaptive responses to exercise, highlighting the redox environment as a potentially core therapeutic approach to maintain muscle homoeostasis during ageing. Further novel and attractive candidates include the manipulation of microRNA expression. MicroRNAs are potent gene regulators involved in the control of healthy and disease-associated biological processes and their therapeutic potential has been researched in the context of various disorders, including ageing-associated muscle wasting. Finally, we discuss the impact of the circadian clock on the regulation of gene expression in skeletal muscle and whether disruption of the peripheral muscle clock affects sarcopenia and altered responses to exercise. Interventions that include modifying altered redox signalling with age and incorporating genetic mechanisms such as circadian- and microRNA-based gene regulation, may offer potential effective treatments against age-associated sarcopenia.

摘要

衰老与骨骼肌质量、质量和功能的逐渐丧失——肌肉减少症相关,这与老年人独立性降低和生活质量下降有关。更好地理解这一过程背后的遗传和表观遗传机制,将有助于开发治疗性干预措施,以预防、减缓或逆转与衰老相关的肌肉萎缩。目前,运动是唯一已知的延缓肌肉减少症进展的有效干预措施。运动后肌肉纤维中发生的细胞反应为调节肌肉稳态以及潜在的肌肉减少症进展的分子机制提供了有价值的线索。氧化还原信号传导,作为肌肉收缩时内源性产生ROS/RNS的结果,已被确定为运动适应性反应的关键调节因子,突出了氧化还原环境作为在衰老过程中维持肌肉稳态的潜在核心治疗方法。进一步的新颖且有吸引力的候选方法包括操纵微小RNA的表达。微小RNA是参与控制健康和疾病相关生物学过程的强大基因调节因子,其治疗潜力已在包括衰老相关肌肉萎缩在内的各种疾病背景下进行了研究。最后,我们讨论了生物钟对骨骼肌基因表达调节的影响,以及外周肌肉生物钟的破坏是否会影响肌肉减少症和对运动的反应改变。包括随着年龄改变氧化还原信号传导以及纳入基于生物钟和微小RNA的基因调节等遗传机制的干预措施,可能提供针对与年龄相关的肌肉减少症的潜在有效治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39e4/4935741/a6e610417346/335_2016_9643_Fig1_HTML.jpg

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