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Eicosapentaenoic acid changes muscle transcriptome and intervenes in aging-related fiber type transition in male mice

机译:eicosapentaeno的酸改变肌肉转录组,干预雄性小鼠的衰老纤维型转变

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摘要

Age-related sarcopenia is associated with a variety of changes in skeletal muscle. These changes are interrelated with each other and associated with systemic metabolism, the details of which, however, are largely unknown. Eicosapentaenoic acid (EPA) is a promising nutrient against sarcopenia and has multifaceted effects on systemic metabolism. In this study, we hypothesized that the aging process in skeletal muscle can be intervened by the administration of EPA. Seventy-five-week-old male mice were assigned to groups fed an EPA-deprived diet (EPA-) or an EPA-enriched diet with 1wt% EPA (EPA + ) for 12 wk. Twenty-four-week-old male mice fed with normal chow were also analyzed. At baseline, the grip strength of the aging mice was lower than that of the young mice. After 12wk, EPA+ showed similar muscle mass but increased grip strength compared with EPA-. EPA+ displayed higher insulin sensitivity than EPA-. Immunohistochemistry and gene expression analysis of myosin heavy chains (MyHCs) revealed fast-to-slow fiber type transition in aging muscle, which was partially inhibited by EPA. RNA sequencing (RNA-Seq) analysis suggested that EPA supplementation exerts pathway-specific effects in skeletal muscle including the signatures of slow-to-fast fiber type transition. In conclusion, we revealed that aging skeletal muscle in male mice shows lower grip strength and fiber type changes, both of which can be inhibited by EPA supplementation irrespective of muscle mass alteration.
机译:与年龄相关的肌肉减少症与骨骼肌的各种变化有关。这些变化相互关联,并与全身代谢有关,但其细节基本未知。二十碳五烯酸(EPA)是一种很有前途的抗肌减少症营养素,对全身代谢有多方面的影响。在这项研究中,我们假设EPA可以干预骨骼肌的衰老过程。75周大的雄性小鼠被分为两组,分别喂食缺乏EPA的饮食(EPA-)或添加1wt%EPA(EPA+)的富含EPA的饮食12周。此外,还对24周龄的雄性小鼠喂食正常食物进行了分析。在基线检查时,老龄小鼠的握力低于年轻小鼠。12周后,EPA+显示出与EPA-相似的肌肉质量,但握力增加。EPA+显示出比EPA-更高的胰岛素敏感性。肌球蛋白重链(MyHCs)的免疫组织化学和基因表达分析显示,衰老肌肉中的纤维类型转变由快到慢,EPA部分抑制了这种转变。RNA测序(RNA-Seq)分析表明,补充EPA在骨骼肌中发挥途径特异性效应,包括慢到快的纤维类型转变的特征。综上所述,我们发现雄性小鼠的衰老骨骼肌表现出较低的握力和纤维类型变化,无论肌肉质量如何变化,补充EPA都可以抑制这两种变化。

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