Electrical Stimulation-Based Twitch Exercise Suppresses Progression of Immobilization-Induced Muscle Fibrosis via Downregulation of PGC-1?/VEGF Pathway.

IF 16.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Accounts of Chemical Research Pub Date : 2024-04-30
Y Honda, A Takahashi, N Tanaka, Y Kajiwara, R Sasaki, H Kataoka, J Sakamoto, M Okita
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Abstract

This study aimed to determine whether electrical stimulation-based twitch exercise is effective in inhibiting the progression of immobilization-induced muscle fibrosis. 19 Wistar rats were randomly divided into a control group (n=6), an immobilization group (n=6; with immobilization only), and a Belt group (n=7; with immobilization and twitch exercise through the belt electrode device, beginning 2 weeks after immobilization). The bilateral soleus muscles were harvested after the experimental period. The right soleus muscles were used for histological analysis, and the left soleus muscles were used for biochemical and molecular biological analysis. As a result, in the picrosirius red images, the perimysium and endomysium were thicker in both the immobilization and Belt groups compared to the control group. However, the perimysium and endomysium thickening were suppressed in the Belt group. The hydroxyproline content and alpha-SMA, TGF-beta1, and HIF-1alpha mRNA expressions were significantly higher in the immobilization and belt groups than in the control group. These expressions were significantly lower in the Belt group than in the immobilization group. The capillary-to-myofiber ratio and the mRNA expressions of VEGF and PGC-1alpha were significantly lower in the immobilization and belt groups than in the control group, these were significantly higher in the Belt group than in the immobilization group. From these results, Electrical stimulation-based twitch exercise using the belt electrode device may prevent the progression of immobilization-induced muscle fibrosis caused by downregulating PGC-1alpha/VEGF pathway, we surmised that this intervention strategy might be effective against the progression of muscle contracture. Keywords: Immobilization, Skeletal muscle, Fibrosis, Electrical stimulation-based twitch exercise, PGC-1alpha/VEGF pathway.

基于电刺激的抽动运动通过下调 PGC-1? /VEGF 通路抑制固定诱导的肌肉纤维化进展
本研究旨在确定基于电刺激的抽动运动是否能有效抑制固定诱发的肌肉纤维化的进展。19 Wistar 大鼠被随机分为对照组(n=6)、固定组(n=6;仅固定)和腰带组(n=7;固定后 2 周开始通过腰带电极装置进行固定和牵引运动)。实验结束后收获双侧比目鱼肌。右侧比目鱼肌用于组织学分析,左侧比目鱼肌用于生化和分子生物学分析。结果显示,与对照组相比,在皮色红图像中,固定组和带组的肌肉周围和内膜都更厚。然而,腰带组的肌周膜和肌内膜增厚受到抑制。固定组和腰带组的羟脯氨酸含量、α-SMA、TGF-beta1 和 HIF-1alpha mRNA 表达均显著高于对照组。腰带组的这些表达明显低于固定组。固定组和腰带组的毛细血管与肌纤维比率以及 VEGF 和 PGC-1alpha mRNA 表达量明显低于对照组,而腰带组则明显高于固定组。从这些结果来看,使用腰带电极装置进行基于电刺激的抽动运动可通过下调PGC-1alpha/VEGF通路来防止固定诱导的肌肉纤维化的进展,我们推测这种干预策略可能对肌肉挛缩的进展有效。关键词固定 骨骼肌 纤维化 基于电刺激的抽搐运动 PGC-1α/VEGF通路
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Accounts of Chemical Research
Accounts of Chemical Research 化学-化学综合
CiteScore
31.40
自引率
1.10%
发文量
312
审稿时长
2 months
期刊介绍: Accounts of Chemical Research presents short, concise and critical articles offering easy-to-read overviews of basic research and applications in all areas of chemistry and biochemistry. These short reviews focus on research from the author’s own laboratory and are designed to teach the reader about a research project. In addition, Accounts of Chemical Research publishes commentaries that give an informed opinion on a current research problem. Special Issues online are devoted to a single topic of unusual activity and significance. Accounts of Chemical Research replaces the traditional article abstract with an article "Conspectus." These entries synopsize the research affording the reader a closer look at the content and significance of an article. Through this provision of a more detailed description of the article contents, the Conspectus enhances the article's discoverability by search engines and the exposure for the research.
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