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环境丰富可改善老年小鼠的运动功能和肌肉转录组。

Environmental Enrichment Improves Motor Function and Muscle Transcriptome of Aged Mice.

机构信息

Department of Cancer Biology & Genetics, College of Medicine, The Ohio State University, Columbus, OH, 43210, USA.

The Ohio State University Comprehensive Cancer Center, Columbus, OH, 43210, USA.

出版信息

Adv Biol (Weinh). 2024 Jan;8(1):e2300148. doi: 10.1002/adbi.202300148. Epub 2023 Jul 30.

Abstract

Aging results in the progressive decline of muscle strength. Interventions to maintain muscle strength may mitigate the age-related loss of physical function, thus maximizing health span. The work on environmental enrichment (EE), an experimental paradigm recapitulating aspects of an active lifestyle, has revealed EE-induced metabolic benefits mediated by a brain-fat axis across the lifespan of mice. EE initiated at 18-month of age shows a trend toward an increased mean lifespan. While previous work described EE's influences on the aging dynamics of several central-peripheral processes, its influence on muscle remained understudied. Here, the impact of EE is investigated on motor function, neuromuscular physiology, and the skeletal muscle transcriptome. EE is initiated in 20-month-old mice for a five-month period. EE mice exhibit greater relative lean mass that is associated with improved mobility and hindlimb grip strength. Transcriptomic profiling of muscle tissue reveals an EE-associated enrichment of gene expression within several metabolic pathways related to oxidative phosphorylation and the TCA cycle. Many mitochondrial-related genes-several of which participate in the electron transport chain-are upregulated. Stress-responsive signaling pathways are downregulated because of EE. The results suggest that EE improves motor function-possibly through preservation of mitochondrial function-even late in life.

摘要

衰老是肌肉力量逐渐下降的结果。维持肌肉力量的干预措施可能会减轻与年龄相关的身体功能丧失,从而最大限度地延长健康寿命。环境富集(EE)的工作是一个实验范例,它再现了活跃生活方式的某些方面,已经揭示了 EE 通过大脑-脂肪轴在小鼠的整个生命周期中产生的代谢益处。从 18 个月大开始进行 EE 显示出平均寿命延长的趋势。虽然以前的工作描述了 EE 对几个中枢-外周过程的衰老动态的影响,但它对肌肉的影响仍未得到充分研究。在这里,研究了 EE 对运动功能、神经肌肉生理学和骨骼肌转录组的影响。从 20 个月大的老鼠开始,进行为期五个月的 EE。EE 组的老鼠表现出更高的相对瘦体重,这与更好的移动性和后肢握力有关。肌肉组织的转录组分析显示,EE 与几个与氧化磷酸化和 TCA 循环相关的代谢途径中的基因表达富集有关。许多与线粒体相关的基因——其中一些参与电子传递链——被上调。EE 下调了应激反应信号通路。结果表明,EE 即使在生命后期也能改善运动功能——可能是通过维持线粒体功能。

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