间歇性去神经支配作为骨骼肌氧化还原稳态丧失和肌肉无力的驱动因素:可能通过运动改善

IF 2.3 Q2 SPORT SCIENCES
Malcolm J. Jackson
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引用次数: 0

摘要

肌肉运动单位数量的大量减少伴随着衰老,并与骨骼肌质量和纤维数量的年龄相关变化同时发生。这些运动单元的变化反映在运动神经元数量和大小的减少、轴突完整性和突触前和突触后神经肌肉连接(NMJ)的破坏上。相反,数据表明,衰老对神经肌肉传递的影响相对较小。因此,一些作者认为运动轴突和NMJ的结构变性在肌肉减少症的发病机制和衰老引起的肌肉损失的非神经源性起源中并不重要。活性氧(ROS)活性的增加和氧化还原状态的变化是衰老的一个特征,可能通过增加线粒体过氧化氢生成在肌肉损失中起关键作用。本文将回顾衰老过程中运动单位和NMJ的变化,并提出肌肉线粒体过氧化生成和氧化还原状态的变化可能是由神经肌肉结构的年龄相关变化引起的,但与神经肌肉传递没有直接关系。这为神经组织中与年龄相关的变化如何驱动骨骼肌纤维的损失和无力提供了另一种解释。众所周知,运动干预可以减少老年人的肌肉损失和无力,但这种干预对运动单位、运动神经元或NMJ结构和功能的年龄相关变化的研究提供了相互矛盾的数据。因此,进一步的目标是确定需要进行新颖研究的领域,以了解定向或长期运动是否以及如何影响衰老过程中神经肌肉的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Episodic denervation as a driver of loss of skeletal muscle redox homeostasis and muscle weakness in sarcopenia: Possible amelioration by exercise
Substantial reductions in muscle motor unit numbers accompany ageing and occur in parallel the age-related changes in skeletal muscle mass and fibre number. These motor unit changes are reflected in reduced motor neuron numbers and size, axonal integrity and disrupted pre-and post-synaptic neuromuscular junctions (NMJ). Conversely, data indicate that the effects of ageing on neuromuscular transmission are relatively minor. Some authors have therefore argued that structural degeneration of motor axons and NMJ are unimportant in the pathogenesis of sarcopenia and for a non-neurogenic origin for ageing-induced muscle loss. Increased Reactive Oxygen Species (ROS) activities and changes in redox status are a feature of ageing and may play a key role in muscle loss through increased mitochondrial peroxide generation. This article will review the changes in motor units and NMJ seen during ageing and develop the argument that the changes in muscle mitochondrial peroxide generation and redox status may be caused by age-related changes in neuromuscular structure, but are not directly related to neuromuscular transmission. This provides an alternative explanation on how age-related changes in neural tissue might drive skeletal muscle fibre loss and weakness. Exercise interventions are known to reduce muscle loss and weakness in the elderly, but studies of such interventions on age-related changes in motor units, motor neurons or NMJ structure and function provide conflicting data. A further aim is therefore to identify areas where there is a need for novel research to understand whether, and how, targeted or long-term exercise might influence neuromuscular changes in ageing.
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来源期刊
Sports Medicine and Health Science
Sports Medicine and Health Science Health Professions-Physical Therapy, Sports Therapy and Rehabilitation
CiteScore
5.50
自引率
0.00%
发文量
36
审稿时长
55 days
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