肌肉肥大模型:在衰老研究中的应用。

Stephen E Alway, Parco M Siu, Zsolt Murlasits, David C Butler
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引用次数: 30

摘要

肌肉肥大是超负荷的适应性反应,需要增加基因转录和肌肉特异性蛋白质的合成,从而增加蛋白质积累。进行性阻力训练(P(RT))被认为是实现人类肥厚的最佳手段之一。然而,人类肌肉对P(RT)的肥大和功能适应通常难以评估,因为适应可能需要数周、数月甚至数年才能变得明显,而且人类对P(RT)的反应存在很大差异。相反,各种动物模型的发展迅速导致广泛的肌肉肥大。几个这样的模型允许精确控制加载参数和记录肌肉的激活和性能在整个过载。使用肌肉肥大动物模型的科学家应该熟悉每种模型的优点和缺点,从而选择最能解决他们研究问题的模型。本文综述了目前在基础研究实验室中使用的动物模型,讨论了这些动物模型的肥厚和功能结果以及这些模型在衰老研究中的应用,并强调了将这些动物模型应用于衰老研究中所涉及的一些肥厚调节机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Muscle hypertrophy models: applications for research on aging.

Muscle hypertrophy is an adaptive response to overload that requires increasing gene transcription and synthesis of muscle-specific proteins resulting in increased protein accumulation. Progressive resistance training (P(RT)) is thought to be among the best means for achieving hypertrophy in humans. However, hypertrophy and functional adaptations to P(RT) in the muscles of humans are often difficult to evaluate because adaptations can take weeks, months, or even years before they become evident, and there is a large variability in response to P(RT) among humans. In contrast, various animal models have been developed which quickly result in extensive muscle hypertrophy. Several such models allow precise control of the loading parameters and records of muscle activation and performance throughout overload. Scientists using animal models of muscle hypertrophy should be familiar with the advantages and disadvantages of each and thereby choose the model that best addresses their research question. The purposes of this paper are to review animal models currently being used in basic research laboratories, discuss the hypertrophic and functional outcomes as well as applications of these models to aging, and highlight a few mechanisms involved in regulating hypertrophy as a result of applying these animal models to questions in research on aging.

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