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Enhanced neuromuscular transmission efficacy in overloaded rat plantaris muscle.

机译:在过量的大鼠足底肌肉中增强了神经肌肉传递功效。

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摘要

To better understand the effect of muscle hypertrophy on the physiological properties of transmitter release, we investigated neuromuscular transmission (NMT) efficacy in overloaded rat plantaris muscle in situ. In the overload group, following bilateral tenotomy of plantaris synergists, rats were confined to wheel-cages. Age-matched rats in the control group were confined to plastic cages. During the terminal experiment, muscle action potentials were blocked using micro-conotoxin, and full-sized endplate potentials (EPPs) were recorded at 25, 50, and 75 HZ to determine their amplitude rundown. Quantal contents for the control and overload groups were 37.0 and 74.3, respectively (P <0.01). There was a significant group difference in EPP amplitude rundown at all frequencies examined, with increased rundown occurring in the overload group (P < 0.01). Cumulative quantal release was 139% and 153% higher in the overload group at 25 and 50 HZ, respectively (P < 0.05). Together, these data suggest the safety factor for NMT is increased by neuromuscular overload. Furthermore, these findings support and supplement previously reported activity-dependent improvements in NMT efficacy that are probably mediated via presynaptic adaptations. Muscle Nerve 29: 89-96, 2004
机译:为了更好地了解肌肉肥大对递质释放的生理特性的影响,我们研究了超负荷大鼠足底肌原位的神经肌肉传递(NMT)功效。在超负荷组中,在plant骨增效剂双侧切开术之后,将大鼠限制在轮笼中。对照组中年龄匹配的大鼠被限制在塑料笼中。在最终实验期间,使用微芋螺毒素阻断了肌肉动作电位,并在25、50和75 HZ记录了全尺寸的终板电位(EPP),以确定其振幅衰减。对照组和超负荷组的总含量分别为37.0和74.3(P <0.01)。在所有检查的频率下,EPP振幅衰减都有显着的组间差异,过载组的衰减增加(P <0.01)。在25和50 HZ时,过载组的累积定量释放分别高139%和153%(P <0.05)。总之,这些数据表明神经肌肉超负荷会增加NMT的安全性。此外,这些发现支持并补充了先前报道的NMT疗效的活动依赖性改善,这可能是通过突触前适应介导的。肌肉神经29:89-96,2004

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