Microgravity-induced changes in skeletal muscle and possible countermeasures: What we can learn from bed rest and human space studies.

IF 2.8 4区 医学 Q2 PHYSIOLOGY Experimental Physiology Pub Date : 2025-03-17 DOI:10.1113/EP092345
Alessandra Bosutti, Bergita Ganse, Nicola A Maffiuletti, Rob C I Wüst, Gustav J Strijkers, Andy Sanderson, Hans Degens
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Abstract

Despite exercise countermeasures to sustain health and performance in spaceflight, complete maintenance of muscle mass and functions in microgravity is still not possible for most astronauts. The principal cause of the limited effectiveness of existing exercise countermeasures is the difficulty in achieving full loading forces in space. The implementation of countermeasures which require small devices and simulate Earth-like loading forces to maintain muscle mass, strength and endurance is therefore highly desirable. At present, the cellular mechanisms that induce muscle atrophy in weightlessness are not yet fully known; a better understanding of how skeletal muscle cells adapt to microgravity will help in designing more effective countermeasures to sustain the health and operational capacity of the crew during long- and short-duration missions. The 6° head-down-tilt bed rest is a powerful ground-based analogue platform to simulate and study the physiological effects of spaceflight on the human body, and test the effectiveness of countermeasures before they are potentially applied in space. The aims of this narrative review are therefore to provide an overview of (i) the main mechanisms underlining muscle atrophy learnt from space and bed rest studies, (ii) the currently available countermeasures, and (iii) potential suitable countermeasures - such as neuromuscular electrical stimulation that is delivered with light and small portable units - to attenuate muscle wasting in astronauts during spaceflight.

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微重力引起的骨骼肌变化和可能的对策:我们可以从卧床休息和人类空间研究中学到什么。
尽管有运动对策来维持太空飞行中的健康和表现,但对大多数宇航员来说,在微重力条件下完全维持肌肉质量和功能仍然是不可能的。现有演习对抗措施有效性有限的主要原因是难以在太空中实现满负荷力量。因此,需要小型装置和模拟类似地球的加载力来保持肌肉质量,力量和耐力的对策的实施是非常可取的。目前,诱导失重状态下肌肉萎缩的细胞机制尚不完全清楚;更好地了解骨骼肌细胞如何适应微重力将有助于设计更有效的对策,以在长期和短期任务期间维持机组人员的健康和操作能力。6°上下倾斜床架是一个强大的地面模拟平台,可以模拟和研究航天对人体的生理影响,并在可能应用于太空之前测试对抗措施的有效性。因此,本叙述性审查的目的是概述(i)从空间和卧床休息研究中了解到的肌肉萎缩的主要机制,(ii)目前可用的对策,以及(iii)潜在的适当对策- -例如用轻型和小型便携式装置提供神经肌肉电刺激- -以减轻宇航员在航天飞行期间的肌肉萎缩。
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来源期刊
Experimental Physiology
Experimental Physiology 医学-生理学
CiteScore
5.10
自引率
3.70%
发文量
262
审稿时长
1 months
期刊介绍: Experimental Physiology publishes research papers that report novel insights into homeostatic and adaptive responses in health, as well as those that further our understanding of pathophysiological mechanisms in disease. We encourage papers that embrace the journal’s orientation of translation and integration, including studies of the adaptive responses to exercise, acute and chronic environmental stressors, growth and aging, and diseases where integrative homeostatic mechanisms play a key role in the response to and evolution of the disease process. Examples of such diseases include hypertension, heart failure, hypoxic lung disease, endocrine and neurological disorders. We are also keen to publish research that has a translational aspect or clinical application. Comparative physiology work that can be applied to aid the understanding human physiology is also encouraged. Manuscripts that report the use of bioinformatic, genomic, molecular, proteomic and cellular techniques to provide novel insights into integrative physiological and pathophysiological mechanisms are welcomed.
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