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解析肌肉蛋白质合成:专注于抗阻训练期间的肌肉增长。

Making Sense of Muscle Protein Synthesis: A Focus on Muscle Growth During Resistance Training.

机构信息

Centre for Human & Applied Physiological Sciences, King's College London, London,United Kingdom.

The Institute of Performance Nutrition, Edinburgh,United Kingdom.

出版信息

Int J Sport Nutr Exerc Metab. 2022 Jan 1;32(1):49-61. doi: 10.1123/ijsnem.2021-0139. Epub 2021 Oct 25.

Abstract

The acute response of muscle protein synthesis (MPS) to resistance exercise and nutrition is often used to inform recommendations for exercise programming and dietary interventions, particularly protein nutrition, to support and enhance muscle growth with training. Those recommendations are worthwhile only if there is a predictive relationship between the acute response of MPS and subsequent muscle hypertrophy during resistance exercise training. The metabolic basis for muscle hypertrophy is the dynamic balance between the synthesis and degradation of myofibrillar proteins in muscle. There is ample evidence that the process of MPS is much more responsive to exercise and nutrition interventions than muscle protein breakdown. Thus, it is intuitively satisfying to translate the acute changes in MPS to muscle hypertrophy with training over a longer time frame. Our aim is to examine and critically evaluate the strength and nature of this relationship. Moreover, we examine the methodological and physiological factors related to measurement of MPS and changes in muscle hypertrophy that contribute to uncertainty regarding this relationship. Finally, we attempt to offer recommendations for practical and contextually relevant application of the information available from studies of the acute response of MPS to optimize muscle hypertrophy with training.

摘要

肌肉蛋白质合成(MPS)对阻力运动和营养的急性反应通常被用来为运动方案和饮食干预提供建议,特别是蛋白质营养,以支持和增强与训练相关的肌肉生长。只有在 MPS 的急性反应与随后的阻力运动训练中的肌肉肥大之间存在预测关系时,这些建议才有价值。肌肉肥大的代谢基础是肌肉中肌原纤维蛋白合成和降解之间的动态平衡。有充分的证据表明,MPS 过程对运动和营养干预的反应要比肌肉蛋白分解快得多。因此,将 MPS 的急性变化转化为更长时间框架内的训练肌肉肥大,在直观上是令人满意的。我们的目的是检查和批判性地评估这种关系的强度和性质。此外,我们还研究了与 MPS 测量和肌肉肥大变化相关的方法学和生理学因素,这些因素导致了对这种关系的不确定性。最后,我们试图提供建议,以便从 MPS 急性反应的研究中获得的信息,以优化与训练相关的肌肉肥大,具有实际和上下文相关的应用。

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