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等长、向心和离心联合抗阻运动可预防大鼠因废用引起的肌肉萎缩。

Combined isometric, concentric, and eccentric resistance exercise prevents unloading-induced muscle atrophy in rats.

作者信息

Adams G R, Haddad F, Bodell P W, Tran P D, Baldwin K M

机构信息

Dept. of Physiology and Biophysics, Univ. of California, Irvine, CA 92697-4560, USA.

出版信息

J Appl Physiol (1985). 2007 Nov;103(5):1644-54. doi: 10.1152/japplphysiol.00669.2007. Epub 2007 Sep 13.

Abstract

Previously, we reported that an isometric resistance training program that was effective in stimulating muscle hypertrophy in ambulatory rats could not completely prevent muscle atrophy during unloading (Haddad F, Adams GR, Bodell PW, Baldwin KM. J Appl Physiol 100: 433-441, 2006). These results indicated that preventing muscle atrophy does not appear to be simply a function of providing an anabolic stimulus. The present study was undertaken to determine if resistance training, with increased volume (3-s contractions) and incorporating both static and dynamic components, would be effective in preventing unloading-induced muscle atrophy. Rats were exposed to 5 days of muscle unloading via tail suspension. During that time one leg received electrically stimulated resistance exercise (RE) that included an isometric, concentric, and eccentric phase. The results of this study indicate that this combined-mode RE provided an anabolic stimulus sufficient to maintain the mass and myofibril content of the trained but not the contralateral medial gastrocnemius (MG) muscle. Relative to the contralateral MG, the RE stimulus increased the amount of total RNA (indicative of translational capacity) as well as the mRNA for several anabolic/myogenic markers such as insulin-like growth factor-I, myogenin, myoferlin, and procollagen III-alpha-1 and decreased that of myostatin, a negative regulator of muscle size. The combined-mode RE protocol also increased the activity of anabolic signaling intermediates such as p70S6 kinase. These results indicate that a combination of static- and dynamic-mode RE of sufficient volume provides an effective stimulus to stimulate anabolic/myogenic mechanisms to counter the initial stages of unloading-induced muscle atrophy.

摘要

此前,我们报道了一项等长抗阻训练计划,该计划虽能有效刺激活动大鼠的肌肉肥大,但无法完全预防去负荷期间的肌肉萎缩(哈达德F、亚当斯GR、博德尔PW、鲍德温KM。《应用生理学杂志》100: 433 - 441, 2006)。这些结果表明,预防肌肉萎缩似乎并非仅仅是提供合成代谢刺激的作用。本研究旨在确定增加训练量(3秒收缩)并包含静态和动态成分的抗阻训练是否能有效预防去负荷诱导的肌肉萎缩。大鼠通过尾部悬吊进行5天的肌肉去负荷。在此期间,一条腿接受电刺激抗阻运动(RE),包括等长、向心和离心阶段。本研究结果表明,这种联合模式的抗阻运动提供了一种合成代谢刺激,足以维持训练侧而非对侧内侧腓肠肌(MG)的质量和肌原纤维含量。相对于对侧MG,抗阻运动刺激增加了总RNA的量(表明翻译能力)以及几种合成代谢/生肌标志物的mRNA,如胰岛素样生长因子-I、肌细胞生成素、肌铁蛋白和原胶原III-α-1,并降低了肌肉生长抑制素(一种肌肉大小的负调节因子)的mRNA水平。联合模式的抗阻运动方案还增加了合成代谢信号中间体如p70S6激酶的活性。这些结果表明,足够训练量的静态和动态模式抗阻运动相结合,能提供有效的刺激,激活合成代谢/生肌机制,以对抗去负荷诱导的肌肉萎缩的初始阶段。

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