在老年男性卧床休息期间,一次先前的抵抗运动可以减轻肌肉萎缩和肌原纤维蛋白合成的下降。

IF 4.7 2区 医学 Q1 NEUROSCIENCES
Journal of Physiology-London Pub Date : 2025-01-01 Epub Date: 2023-10-19 DOI:10.1113/JP285130
Benoit Smeuninx, Yasir S Elhassan, Elizabeth Sapey, Alison B Rushton, Paul T Morgan, Marie Korzepa, Archie E Belfield, Andrew Philp, Matthew S Brook, Nima Gharahdaghi, Daniel Wilkinson, Kenneth Smith, Philip J Atherton, Leigh Breen
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引用次数: 0

摘要

卧床休息期间肌原纤维蛋白合成(MyoPS)受损会加速老年人骨骼肌的损失,增加不良的继发健康后果的风险。我们在10名健康老年男性(65-80岁)的废用事件中研究了先前阻力运动(RE)对MyoPS和肌肉形态的影响。参与者在住院休息5天的前一天晚上完成了一次单腿RE。在卧床休息前后测定股四头肌横截面积(CSA)。使用连续的肌肉活检和双稳定同位素示踪剂来确定7天习惯性“自由生活”阶段和卧床休息阶段的综合性MyoPS(iMyoPS)发生率,以及卧床休息结束时急性吸收后和餐后MyoPS的发生率,在卧床休息的运动(EX)和非运动对照(CTL)腿中,60%和80%的肌肉长度显著减少。与CTL相比,EX在40%和60%肌肉长度时股四头肌CSA的下降有所减弱。在卧床休息期间,iMyoPS的比率从CTL的习惯值下降,但不是EX,并且在腿之间有显著差异。餐后aMyoPS发生率仅在EX中高于吸收后值。卧床休息后iMyoPS的变化与CTL中股四头肌CSA的变化相关,但与EX无关。在老年男性中,单次RE可在卧床休息5天后减弱iMyoPS率的下降和股四头肌肉萎缩。需要进一步的工作来了解先前RE在老年患者群体中的功能和临床意义。要点:与年龄相关的骨骼肌退化与许多不良健康后果有关,是由肌肉蛋白质合成障碍引起的,而肌肉蛋白质合成在停用期间会加速。阻力运动可以在恢复的几天内刺激肌肉蛋白质的合成,因此可以抵消废用早期发生的这一过程中的损伤。在本研究中,我们证明,老年男性在卧床休息5天内,肌原纤维蛋白合成和肌肉萎缩的下降通过在卧床休息前一晚进行一次单侧阻力运动而减弱。这些发现表明,简明的阻力运动干预有可能支持老年人在短期停用期间的肌肉质量保持,并有助于延缓老年人少肌症的进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A single bout of prior resistance exercise attenuates muscle atrophy and declines in myofibrillar protein synthesis during bed-rest in older men.

Impairments in myofibrillar protein synthesis (MyoPS) during bed rest accelerate skeletal muscle loss in older adults, increasing the risk of adverse secondary health outcomes. We investigated the effect of prior resistance exercise (RE) on MyoPS and muscle morphology during a disuse event in 10 healthy older men (65-80 years). Participants completed a single bout of unilateral leg RE the evening prior to 5 days of in-patient bed-rest. Quadriceps cross-sectional area (CSA) was determined prior to and following bed-rest. Serial muscle biopsies and dual stable isotope tracers were used to determine rates of integrated MyoPS (iMyoPS) over a 7 day habitual 'free-living' phase and the bed-rest phase, and rates of acute postabsorptive and postprandial MyoPS (aMyoPS) at the end of bed rest. Quadriceps CSA at 40%, 60% and 80% of muscle length significantly decreased in exercised (EX) and non-exercised control (CTL) legs with bed-rest. The decline in quadriceps CSA at 40% and 60% of muscle length was attenuated in EX compared with CTL. During bed-rest, iMyoPS rates decreased from habitual values in CTL, but not EX, and were significantly different between legs. Postprandial aMyoPS rates increased above postabsorptive values in EX only. The change in iMyoPS over bed-rest correlated with the change in quadriceps CSA in CTL, but not EX. A single bout of RE attenuated the decline in iMyoPS rates and quadriceps atrophy with 5 days of bed-rest in older men. Further work is required to understand the functional and clinical implications of prior RE in older patient populations. KEY POINTS: Age-related skeletal muscle deterioration, linked to numerous adverse health outcomes, is driven by impairments in muscle protein synthesis that are accelerated during periods of disuse. Resistance exercise can stimulate muscle protein synthesis over several days of recovery and therefore could counteract impairments in this process that occur in the early phase of disuse. In the present study, we demonstrate that the decline in myofibrillar protein synthesis and muscle atrophy over 5 days of bed-rest in older men was attenuated by a single bout of unilateral resistance exercise performed the evening prior to bed-rest. These findings suggest that concise resistance exercise intervention holds the potential to support muscle mass retention in older individuals during short-term disuse, with implications for delaying sarcopenia progression in ageing populations.

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来源期刊
Journal of Physiology-London
Journal of Physiology-London 医学-神经科学
CiteScore
9.70
自引率
7.30%
发文量
817
审稿时长
2 months
期刊介绍: The Journal of Physiology publishes full-length original Research Papers and Techniques for Physiology, which are short papers aimed at disseminating new techniques for physiological research. Articles solicited by the Editorial Board include Perspectives, Symposium Reports and Topical Reviews, which highlight areas of special physiological interest. CrossTalk articles are short editorial-style invited articles framing a debate between experts in the field on controversial topics. Letters to the Editor and Journal Club articles are also published. All categories of papers are subjected to peer reivew. The Journal of Physiology welcomes submitted research papers in all areas of physiology. Authors should present original work that illustrates new physiological principles or mechanisms. Papers on work at the molecular level, at the level of the cell membrane, single cells, tissues or organs and on systems physiology are all acceptable. Theoretical papers and papers that use computational models to further our understanding of physiological processes will be considered if based on experimentally derived data and if the hypothesis advanced is directly amenable to experimental testing. While emphasis is on human and mammalian physiology, work on lower vertebrate or invertebrate preparations may be suitable if it furthers the understanding of the functioning of other organisms including mammals.
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