首页> 外文期刊>Science & sports >Cellular and molecular mechanisms regulating skeletal muscle mass during strength training (Me?canismes cellulaires et mole?culaires du contro?le de la masse musculaire lors d'un entrai?nement en force)
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Cellular and molecular mechanisms regulating skeletal muscle mass during strength training (Me?canismes cellulaires et mole?culaires du contro?le de la masse musculaire lors d'un entrai?nement en force)

机译:力量训练期间调节骨骼肌质量的细胞和分子机制(力量训练期间控制肌肉质量的细胞和分子机制)

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Aims: To describe the cellular and molecular mechanisms underlying muscle hypertrophy in response to strength training. Current knowledge: Recent works have delineated these cellular and molecular mechanisms. The fusion of satellite cells with pre-existing myofibers may be required for muscle hypertrophy. Addition of new myonuclei to muscle fibers will ultimately increase the capacity of muscle fiber to express and synthesize muscle proteins. Regulation of the concentration of extracellular factors, such as insulin-like growth factor-1 (IGF-1), mecano-growth factor, hepatocyte growth factor, and myostatin, can participate to the regulation of satellite cell activation and proliferation during heavy resistance exercise. IGF-1/PI3K/Akt signaling pathway also plays an important role by activating protein synthesis and by inhibiting protein degradation through the phosphorylation of Foxo family transcription factor. Conclusion: The physiological significance of such a mechanism during strength training remains to determine. 2006 Elsevier SAS. All rights reserved.
机译:目的:描述响应于力量训练的肌肉肥大的细胞和分子机制。目前的知识:最近的工作描述了这些细胞和分子机制。肌肉肥大可能需要卫星细胞与预先存在的肌纤维融合。在肌肉纤维中添加新的肌核将最终增加肌肉纤维表达和合成肌肉蛋白的能力。调节胰岛素抵抗样生长因子-1(IGF-1),促细胞生长因子,肝细胞生长因子和肌生长抑制素等细胞外因子的浓度,可参与重度抵抗运动中卫星细胞活化和增殖的调节。 IGF-1 / PI3K / Akt信号通路还通过激活蛋白合成和通过Foxo家族转录因子的磷酸化抑制蛋白降解而发挥重要作用。结论:这种机制在力量训练中的生理意义尚待确定。 2006年Elsevier SAS。版权所有。

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