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使用干浸模型对3天不活动的人体骨骼肌进行早期结构和功能特征研究。

Early structural and functional signature of 3-day human skeletal muscle disuse using the dry immersion model.

作者信息

Demangel Rémi, Treffel Loïc, Py Guillaume, Brioche Thomas, Pagano Allan F, Bareille Marie-Pierre, Beck Arnaud, Pessemesse Laurence, Candau Robin, Gharib Claude, Chopard Angèle, Millet Catherine

机构信息

Université de Montpellier, INRA, UMR866 Dynamique Musculaire et Métabolisme, Montpellier, France.

Université Claude Bernard Lyon 1, Lyon, France.

出版信息

J Physiol. 2017 Jul 1;595(13):4301-4315. doi: 10.1113/JP273895. Epub 2017 Apr 23.

Abstract

KEY POINTS

Our study contributes to the characterization of muscle loss and weakness processes induced by a sedentary life style, chronic hypoactivity, clinical bed rest, immobilization and microgravity. This study, by bringing together integrated and cellular evaluation of muscle structure and function, identifies the early functional markers and biomarkers of muscle deconditioning. Three days of muscle disuse in healthy adult subjects is sufficient to significantly decrease muscle mass, tone and force, and to induce changes in function relating to a weakness in aerobic metabolism and muscle fibre denervation. The outcomes of this study should be considered in the development of an early muscle loss prevention programme and/or the development of pre-conditioning programmes required before clinical bed rest, immobilization and spaceflight travel.

ABSTRACT

Microgravity and hypoactivity are associated with skeletal muscle deconditioning. The decrease of muscle mass follows an exponential decay, with major changes in the first days. The purpose of the study was to dissect out the effects of a short-term 3-day dry immersion (DI) on human quadriceps muscle function and structure. The DI model, by suppressing all support zones, accurately reproduces the effects of microgravity. Twelve healthy volunteers (32 ± 5 years) completed 3 days of DI. Muscle function was investigated through maximal voluntary contraction (MVC) tests and muscle viscoelasticity. Structural experiments were performed using MRI analysis and invasive experiments on muscle fibres. Our results indicated a significant 9.1% decrease of the normalized MVC constant (P = 0.048). Contraction and relaxation modelization kinetics reported modifications related to torque generation (k  = -29%; P = 0.014) and to the relaxation phase (k  = +34%; P = 0.040) after 3 days of DI. Muscle viscoelasticity was also altered. From day one, rectus femoris stiffness and tone decreased by, respectively, 7.3% (P = 0.002) and 10.2% (P = 0.002), and rectus femoris elasticity decreased by 31.5% (P = 0.004) after 3 days of DI. At the cellular level, 3 days of DI translated into a significant atrophy of type I muscle fibres (-10.6 ± 12.1%, P = 0.027) and an increased proportion of hybrid, type I/IIX fibre co-expression. Finally, we report an increase (6-fold; P = 0.002) in NCAM+ muscle fibres, showing an early denervation process. This study is the first to report experiments performed in Europe investigating human short-term DI-induced muscle adaptations, and contributes to deciphering the early changes and biomarkers of skeletal muscle deconditioning.

摘要

要点

我们的研究有助于描述久坐生活方式、慢性活动不足、临床卧床休息、肢体固定和微重力所导致的肌肉流失和无力过程。本研究通过对肌肉结构和功能进行综合及细胞层面的评估,确定了肌肉失健的早期功能标志物和生物标志物。健康成年受试者三天的肌肉废用足以显著降低肌肉质量、张力和力量,并引发与有氧代谢减弱和肌纤维去神经支配相关的功能变化。在制定早期肌肉流失预防计划和/或临床卧床休息、肢体固定及太空飞行前所需的预处理计划时,应考虑本研究的结果。

摘要

微重力和活动不足与骨骼肌失健有关。肌肉质量的下降呈指数衰减,在最初几天变化显著。本研究的目的是剖析短期三天的干浸(DI)对人体股四头肌功能和结构的影响。DI模型通过抑制所有支撑区域,准确再现了微重力的影响。12名健康志愿者(32±5岁)完成了三天的DI。通过最大自主收缩(MVC)测试和肌肉粘弹性研究肌肉功能。使用MRI分析和对肌纤维进行侵入性实验来进行结构实验。我们的结果表明,标准化MVC常数显著下降了9.1%(P = 0.048)。收缩和松弛建模动力学报告显示,DI三天后与扭矩产生相关的变化(k = -29%;P = 0.014)以及与松弛阶段相关的变化(k = +34%;P = 0.040)。肌肉粘弹性也发生了改变。从第一天起,股直肌的刚度和张力分别下降了7.3%(P = 0.002)和10.2%(P = 0.002),DI三天后股直肌弹性下降了31.5%(P = 0.004)。在细胞水平上,三天的DI导致I型肌纤维显著萎缩(-10.6±12.1%,P = 0.027),I/IIX混合型纤维共表达的比例增加。最后,我们报告NCAM+肌纤维增加了6倍(P = 0.002),表明存在早期去神经支配过程。本研究首次报告了在欧洲进行的调查人类短期DI诱导的肌肉适应性变化的实验,并有助于解读骨骼肌失健的早期变化和生物标志物。

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