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Effects of electrical stimulation and stretching on the adaptation of denervated skeletal muscle: implications for physical therapy

机译:电刺激和拉伸对失神经骨骼肌适应的影响:对物理治疗的影响

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BACKGROUND: This review will describe the main cellular mechanisms involved in the reduction and increase of myoproteins synthesis commonly associated with muscle atrophy and hypertrophy, respectively. OBJECTIVE: We analyzed the effects of electrical stimulation (ES) and stretching exercise on the molecular pathways involved in muscle atrophy and hypertrophy. We also described the main effects and limits of these resources in the skeletal muscle, particularly on the denervated muscle. DISCUSSION: Recently, our studies showed that the ES applied in a similar manner as performed in clinical practice is able to attenuate the increase of genes expression involved in muscle atrophy. However, ES was not effective to prevent the loss of muscle mass caused by denervation. Regarding to stretching exercises, their mechanisms of action on the denervated muscle are not fully understood and studies on this area are scarce. Studies from our laboratory have found that stretching exercise increased the extracellular matrix remodeling and decreased genes expression related to atrophy in denervated muscle. Nevertheless, it was not enough to prevent muscle atrophy after denervation. CONCLUSIONS: In spite of the use of stretching exercise and ES in clinical practice in order to minimize the atrophy of denervated muscle, there is still lack of scientific evidence to justify the effectiveness of these resources to prevent muscle atrophy in denervated muscle.
机译:背景:本综述将描述主要与通常与肌肉萎缩和肥大有关的肌蛋白合成减少和增加有关的主要细胞机制。目的:我们分析了电刺激和伸展运动对涉及肌肉萎缩和肥大的分子途径的影响。我们还描述了这些资源在骨骼肌中的主要作用和局限性,特别是对神经支配的肌肉。讨论:最近,我们的研究表明,以与临床实践中相似的方式应用ES能够减轻与肌肉萎缩有关的基因表达的增加。但是,ES并不能有效防止因神经支配而导致的肌肉质量的损失。关于伸展运动,他们对失神经肌肉的作用机理尚未完全了解,对此领域的研究也很少。来自我们实验室的研究发现,伸展运动会增加神经细胞外基质的重塑,并降低与失神经肌肉萎缩相关的基因表达。然而,这不足以防止神经支配后的肌肉萎缩。结论:尽管在临床实践中使用伸展运动和ES来尽量减少失神经肌肉萎缩,但仍缺乏科学证据来证明这些资源预防失神经肌肉萎缩的有效性。

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