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习惯性运动可增强大鼠比目鱼肌原位神经肌肉传递效率。

Habitual exercise enhances neuromuscular transmission efficacy of rat soleus muscle in situ.

作者信息

Desaulniers P, Lavoie P A, Gardiner P F

机构信息

Département de Kinésiologie, Université de Montréal, Montréal, Québec, Canada H3C 3J7.

出版信息

J Appl Physiol (1985). 2001 Mar;90(3):1041-8. doi: 10.1152/jappl.2001.90.3.1041.

Abstract

Rat motor nerve terminals and the endplates they interact with exhibit changes to varying patterns of use, as when exposed to increased activation in the form of endurance exercise training. The extent to which these changes affect neuromuscular transmission efficacy is uncertain. In this study, the effects of habitual exercise on the electrophysiological properties of neuromuscular transmission in rat soleus muscle were investigated using a novel in situ approach. Consistent with previous reports, miniature endplate potential frequency was enhanced by habitual exercise. Other passive properties, such as resting membrane potential, miniature endplate potential amplitude, and "giant" miniature endplate potential characteristics were unaltered by the training program. Full-size endplate potentials were obtained by blocking soleus muscle action potentials with mu-conotoxin GIIIb. Quantal content values were 91.5 and 119.9 for control and active groups, respectively (P < 0.01). We also measured the rate and extent of endplate potential amplitude rundown during 3-s trains of continuous stimulation at 25, 50, and 75 Hz; at 50 and 75 Hz, we found both the rate and extent of rundown to be significantly attenuated (10--20%) in a specific population of cells from active rats (P < 0.05). The results establish the degree of activity-dependent plasticity as it pertains to neuromuscular transmission in a mammalian slow-twitch muscle.

摘要

大鼠运动神经末梢及其相互作用的终板会随着不同的使用模式而发生变化,比如在耐力运动训练这种形式的激活增加时。这些变化对神经肌肉传递效能的影响程度尚不确定。在本研究中,采用一种新颖的原位方法,研究了习惯性运动对大鼠比目鱼肌神经肌肉传递电生理特性的影响。与之前的报道一致,习惯性运动增强了微小终板电位频率。其他被动特性,如静息膜电位、微小终板电位幅度和“巨型”微小终板电位特征,并未因训练方案而改变。通过用μ-芋螺毒素GIIIb阻断比目鱼肌动作电位来获得全尺寸终板电位。对照组和运动组的量子含量值分别为91.5和119.9(P < 0.01)。我们还测量了在25、50和75Hz的3秒连续刺激串期间终板电位幅度衰减的速率和程度;在50和75Hz时,我们发现运动大鼠特定细胞群体中的衰减速率和程度均显著降低(10 - 20%)(P < 0.05)。这些结果确定了与哺乳动物慢肌神经肌肉传递相关的活动依赖性可塑性程度。

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