动物模型的应用:慢性电刺激诱导的收缩活动。

Vladimir Ljubicic, Peter J Adhihetty, David A Hood
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引用次数: 36

摘要

单侧,慢性低频电刺激(CLFS)是一个实验模型,唤起许多骨骼肌的生化和生理适应。这些反应在短时间内发生,并且仅限于受刺激的肌肉。全身运动的体液效应被消除,如果可能的话,非刺激的对侧肢体通常可以作为对照肌,考虑对侧的影响。由于钙动力学和肌纤维蛋白的改变,CLFS诱导肌肉从快到慢的转化,由于线粒体酶、肌红蛋白的改变和血管生成的诱导,CLFS诱导肌肉从白到红的转化。这些适应以协调的时间依赖性方式发生,是基因表达改变的结果,包括转录和转录后过程。CLFS技术也被应用于细胞培养中的肌细胞,这为药理学药物的递送或基因转移方法的应用提供了更大的机会。CLFS技术的临床应用受到限制,但在因衰弱性疾病和/或损伤而无法进行随意肌肉收缩的患者中显示出潜在的治疗价值。因此,CLFS技术在研究肌肉适应的各个方面具有很大的价值,其在人类各种神经肌肉疾病中的广泛科学应用似乎是有必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of animal models: chronic electrical stimulation-induced contractile activity.

Unilateral, chronic low-frequency electrical stimulation (CLFS) is an experimental model that evokes numerous biochemical and physiological adaptations in skeletal muscle. These occur within a short time frame and are restricted to the stimulated muscle. The humoral effects of whole body exercise are eliminated and the nonstimulated contralateral limb can often be used as a control muscle, if possible effects on the contralateral side are considered. CLFS induces a fast-to-slow transformation of muscle because of alterations in calcium dynamics and myofibrillar proteins, and a white-to-red transformation because of changes in mitochondrial enzymes, myoglobin, and the induction of angiogenesis. These adaptations occur in a coordinated time-dependent manner and result from altered gene expression, including transcriptional and posttranscriptional processes. CLFS techniques have also been applied to myocytes in cell culture, which provide a greater opportunity for the delivery of pharmacological agents or for the application of gene transfer methodologies. Clinical applications of the CLFS technique have been limited, but they have shown potential therapeutic value in patients in whom voluntary muscle contraction is not possible due to debilitating disease and/or injury. Thus the CLFS technique has great value for studying various aspects of muscle adaptation, and its wider scientific application to a variety of neuromuscular-based disorders in humans appears to be warranted.

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