Alterations in neuromuscular junction morphology with ageing and endurance training modulate neuromuscular transmission and myofibre composition.

IF 4.7 2区 医学 Q1 NEUROSCIENCES Journal of Physiology-London Pub Date : 2025-01-01 Epub Date: 2024-01-03 DOI:10.1113/JP285143
Tatsuhiro Yamaguchi, Karina Kouzaki, Kazushige Sasaki, Koichi Nakazato
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Abstract

Both ageing and exercise training affect the neuromuscular junction (NMJ) structure. Morphological alterations in the NMJ have been considered to influence neuromuscular transmission and myofibre properties, but the direct link between the morphology and function has yet to be established. We measured the neuromuscular transmission, myofibre composition and NMJ structure of 5-month-old (young) and 24-month-old untrained (aged control) and trained (aged trained) mice. Aged trained mice were subjected to 2 months of endurance training before the measurement. Neuromuscular transmission was evaluated in vivo as the ratio of ankle plantar flexion torque evoked by the sciatic nerve stimulation to that by direct muscle stimulation. The torque ratio was significantly lower in aged mice than in young and aged trained mice at high-frequency stimulations, showing a significant positive correlation with voluntary grip strength. The degree of pre- to post-synaptic overlap of the NMJ was also significantly lower in aged mice and positively correlated with the torque ratio. We also found that the proportion of fast-twitch fibres in the soleus muscle decreased with age, and that age-related denervation occurred preferentially in fast-twitch fibres. Age-related denervation and a shift in myofibre composition were partially prevented by endurance training. These results suggest that age-related deterioration of the NMJ structure impairs neuromuscular transmission and alters myofibre composition, but these alterations can be prevented by structural amelioration of NMJ with endurance training. Our findings highlight the importance of the NMJ as a major determinant of age-related deterioration of skeletal muscles and the clinical significance of endurance training as a countermeasure. KEY POINTS: The neuromuscular junction (NMJ) plays an essential role in neuromuscular transmission and the maintenance of myofibre properties. We show that neuromuscular transmission is impaired with ageing but recovered by endurance training, which contributes to alterations in voluntary strength. Neuromuscular transmission is associated with the degree of pre- to post-synaptic overlap of the NMJ. Age-related denervation of fast-twitch fibres and a shift in myofibre composition toward a slower phenotype are partially prevented by endurance training. Our study provides substantial evidence that age-related and exercise-induced alterations in neuromuscular transmission and myofibre properties are associated with morphological changes in the NMJ.

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随着年龄增长和耐力训练,神经肌肉接头形态发生变化,从而调节神经肌肉传递和肌纤维组成。
衰老和运动训练都会影响神经肌肉接头(NMJ)的结构。NMJ的形态改变被认为会影响神经肌肉传导和肌纤维特性,但形态和功能之间的直接联系尚未确定。我们测量了 5 个月大(幼年)和 24 个月大未经训练(老龄对照组)和训练(老龄训练组)小鼠的神经肌肉传导、肌纤维组成和 NMJ 结构。老年训练小鼠在测量前接受了 2 个月的耐力训练。通过坐骨神经刺激诱发的踝关节跖屈扭矩与直接肌肉刺激诱发的踝关节跖屈扭矩之比来评估体内神经肌肉传递。在高频刺激下,老年小鼠的扭力比明显低于年轻小鼠和受过训练的老年小鼠,并与自主握力呈显著正相关。老龄小鼠 NMJ 的突触前后重叠程度也明显较低,并与扭矩比呈正相关。我们还发现,比目鱼肌中快节奏纤维的比例随着年龄的增长而下降,与年龄相关的神经变性优先发生在快节奏纤维中。耐力训练可部分防止与年龄相关的神经变性和肌纤维组成的变化。这些结果表明,与年龄相关的 NMJ 结构退化会损害神经肌肉传递并改变肌纤维组成,但通过耐力训练改善 NMJ 结构可以防止这些变化。我们的研究结果凸显了 NMJ 作为骨骼肌年龄相关性退化主要决定因素的重要性,以及耐力训练作为一种对策的临床意义。关键点:神经肌肉接头(NMJ)在神经肌肉传递和维持肌纤维特性方面发挥着至关重要的作用。我们的研究表明,神经肌肉传导会随着年龄的增长而受损,但耐力训练可使其恢复,这也是导致自主力量改变的原因之一。神经肌肉传递与 NMJ 的突触前后重叠程度有关。耐力训练可部分防止与年龄相关的快肌纤维变性和肌纤维组成向慢肌表型的转变。我们的研究提供了大量证据,证明与年龄相关和运动诱导的神经肌肉传导和肌纤维特性的改变与 NMJ 的形态变化有关。
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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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