首页> 外文期刊>Journal of Muscle Research and Cell Motility >Low-intensity electrical stimulation ameliorates disruption of transverse tubules and neuromuscular junctional architecture in denervated rat skeletal muscle fibers
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Low-intensity electrical stimulation ameliorates disruption of transverse tubules and neuromuscular junctional architecture in denervated rat skeletal muscle fibers

机译:低强度电刺激改善了失神经大鼠骨骼肌纤维中的横向小管和神经肌肉接头结构的破坏

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We determine the effects of direct electrical stimulation (ES) on the histological profiles in atrophied skeletal muscle fibers after denervation caused by nerve freezing. Direct ES was performed on the tibialis anterior (TA) muscle after denervation in 7-week-old rats divided into groups as follows: control (CON), denervation (DN), or denervation with direct ES (subdivided into a 4 mA (ES4), an 8 mA (ES8), or a 16 mA stimulus (ES16). The stimulation frequency was set at 10 Hz, and the voltage was set at 40 V (30 min/day, 6 days/week, for 3 weeks). Ultrastructural profiles of the membrane systems involved in excitation–contraction coupling, and four kinds of mRNA expression profiles were evaluated. Morphological disruptions occurred in transverse (t)-tubule networks following denervation: an apparent disruption of the transverse networks, and an increase in the longitudinal t-tubules spanning the gap between the two transverse networks, with the appearance of pentads and heptads. These membrane disruptions seemed to be ameliorated by relatively low intensity ES (4 mA and 8 mA), and the area of longitudinally oriented t-tubules and the number of pentads and heptads decreased significantly (P < 0.01) in ES4 and ES8 compared to the DN. The highest intensity (16 mA) did not improve the disruption of membrane systems. There were no significant differences in the α1sDHPR and RyR1 mRNA expression among CON, DN, and all ES groups. After 3 weeks of denervation all nerve terminals had disappeared from the neuromuscular junctions (NMJs) in the CON and ES16 groups. However, in the ES4 and ES8 groups, modified nerve terminals were seen in the NMJs. The relatively low-intensity ES ameliorates disruption of membrane system architecture in denervated skeletal muscle fibers, but that it is necessary to select the optimal stimulus intensities to preserve the structural integrity of denervated muscle fibers.
机译:我们确定了直接电刺激(ES)对神经冻结引起的神经支配后萎缩性骨骼肌纤维组织学特征的影响。在7周龄大鼠的神经支配后,对胫前肌(TA)进行直接ES,分为以下几组:对照(CON),神经支配(DN)或直接ES的神经支配(细分为4 mA(ES4) ),8 mA(ES8)或16 mA刺激(ES16)的刺激频率设置为10 Hz,电压设置为40 V(30分钟/天,6天/周,3周) 。评估了与兴奋-收缩偶联有关的膜系统的超微结构特征,以及四种mRNA表达特征,失神经后在横向(t)-微管网络中发生了形态破坏:横向网络的明显破坏,以及神经网络的增加。纵向的t形小管跨过两个横向网络之间的间隙,并出现五联体和七联体的出现,这些膜破裂似乎被相对较低强度的ES(4 mA和8 mA)以及纵向取向的t-小管和五单元组的数量与DN相比,ES4和ES8中的ndeptaps显着减少(P <0.01)。最高强度(16 mA)不能改善膜系统的破坏。 CON组,DN组和所有ES组的α1s DHPR和RyR1 mRNA表达均无显着差异。去神经3周后,CON和ES16组的所有神经末梢都从神经肌肉接头(NMJ)中消失。但是,在ES4和ES8组中,在NMJ中看到了神经末梢的改变。相对较低强度的ES改善了失神经的骨骼肌纤维中膜系统结构的破坏,但是有必要选择最佳刺激强度以保留失神经的肌纤维的结构完整性。

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