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年轻人高强度间歇运动训练后肌肉适应的基因表达谱。

Gene expression profile of muscle adaptation to high-intensity intermittent exercise training in young men.

机构信息

Department of Sports and Life Science, National Institute of Fitness and Sports in Kanoya, Kanoya-city, Kagoshima, Japan.

Faculty of Sport and Health Science, Ritsumeikan University, Kusatsu-city, Shiga, Japan.

出版信息

Sci Rep. 2018 Nov 14;8(1):16811. doi: 10.1038/s41598-018-35115-x.

Abstract

High-intensity intermittent exercise training (HIIT) has been proposed as an effective approach for improving both, the aerobic and anaerobic exercise capacity. However, the detailed molecular response of the skeletal muscle to HIIT remains unknown. We examined the effects of the HIIT on the global gene expression in the human skeletal muscle. Eleven young healthy men participated in the study and completed a 6-week HIIT program involving exhaustive 6-7 sets of 20-s cycling periods with 10-s rests. In addition to determining the maximal oxygen uptake ([Formula: see text]), maximal accumulated oxygen deficit, and thigh muscle cross-sectional area (CSA), muscle biopsy samples were obtained from the vastus lateralis before and after the training to analyse the skeletal muscle transcriptome. The HIIT program significantly increased the [Formula: see text], maximal accumulated oxygen deficit, and thigh muscle CSA. The expression of 79 genes was significantly elevated (fold-change >1.2), and that of 73 genes was significantly reduced (fold-change <0.8) after HIIT. Gene ontology analysis of the up-regulated genes revealed that the significantly enriched categories were "glucose metabolism", "extracellular matrix", "angiogenesis", and "mitochondrial membrane". By providing information about a set of genes in the human skeletal muscle that responds to the HIIT, the study provided insight into the mechanism of skeletal muscle adaptation to HIIT.

摘要

高强度间歇训练(HIIT)已被提议作为一种有效提高有氧运动和无氧运动能力的方法。然而,骨骼肌对 HIIT 的详细分子反应尚不清楚。我们研究了 HIIT 对人体骨骼肌整体基因表达的影响。11 名年轻健康男性参加了这项研究,并完成了为期 6 周的 HIIT 计划,包括剧烈的 6-7 组 20 秒自行车运动,每组运动之间休息 10 秒。除了测定最大摄氧量([Formula: see text])、最大累积氧亏和大腿肌肉横截面积(CSA)外,还在训练前后从股外侧肌获取肌肉活检样本,以分析骨骼肌转录组。HIIT 方案显著提高了 [Formula: see text]、最大累积氧亏和大腿肌肉 CSA。HIIT 后,79 个基因的表达显著上调(倍数变化>1.2),73 个基因的表达显著下调(倍数变化<0.8)。上调基因的基因本体分析显示,显著富集的类别是“葡萄糖代谢”、“细胞外基质”、“血管生成”和“线粒体膜”。本研究通过提供一组对 HIIT 有反应的人类骨骼肌基因信息,深入了解了骨骼肌对 HIIT 的适应机制。

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