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耐力运动调节C57BL/6NNia衰老小鼠的神经肌肉接头。

Endurance exercise modulates neuromuscular junction of C57BL/6NNia aging mice.

作者信息

Fahim M A

机构信息

Department of Physiology, Faculty of Medicine and Health Sciences, United Arab Emirates University, Al-Ain, United Arab Emirates.

出版信息

J Appl Physiol (1985). 1997 Jul;83(1):59-66. doi: 10.1152/jappl.1997.83.1.59.

Abstract

The effect of age and endurance exercise on the physiology and morphology of neuromuscular junctions (NMJ) of gluteus maximus muscle was studied in C57BL/6NNia mice. Mice were exercised, starting at 7 or 25 mo of age, at 28 m/min for 60 min/day, 5 days/wk for 12 wk, on a rodent treadmill. Intracellular recordings of spontaneous miniature endplate potentials (MEPP) and the quantal content of endplate potentials (EPP) were recorded from NMJ of 10- and 28-mo-old control and exercised mice. Endurance exercise resulted in significant increases in MEPP amplitudes (23%), quantal content, and safety margin, and a significant decrease in MEPP frequency of young mice, with no change in resting membrane potential or membrane capacitance. Three months of endurance exercise resulted in an increase in MEPP frequency (41%) and decreases in MEPP amplitudes (15%), quantal content, and safety margin of old mice. Endurance exercise resulted in significantly larger nerve terminals (24%) in young animals, suggesting functional adaptation. Nerve terminals in exercised 28-mo-old mice were smaller than in the corresponding control mice, an indication that exercise minimized age-related nerve terminal elaboration. It is concluded that the different physiological responses of young and old gluteus maximus muscles to endurance exercise parallel their morphological responses. This suggests that the mouse NMJ undergoes a process of physiological and morphological remodeling during aging, and such plasticity could be modulated differently by endurance exercise.

摘要

在C57BL/6NNia小鼠中研究了年龄和耐力运动对臀大肌神经肌肉接头(NMJ)生理和形态的影响。小鼠从7或25月龄开始,在啮齿动物跑步机上以28米/分钟的速度运动,每天60分钟,每周5天,持续12周。从10月龄和28月龄的对照小鼠和运动小鼠的NMJ记录自发微小终板电位(MEPP)的细胞内记录和终板电位(EPP)的量子含量。耐力运动导致年轻小鼠的MEPP振幅显著增加(23%)、量子含量和安全边际显著增加,MEPP频率显著降低,静息膜电位或膜电容无变化。三个月的耐力运动导致老年小鼠的MEPP频率增加(41%),MEPP振幅、量子含量和安全边际降低(15%)。耐力运动导致年轻动物的神经末梢显著增大(24%),表明存在功能适应。运动的28月龄小鼠的神经末梢比相应的对照小鼠小,这表明运动使与年龄相关的神经末梢细化最小化。结论是,年轻和老年臀大肌对耐力运动的不同生理反应与其形态反应平行。这表明小鼠NMJ在衰老过程中经历了生理和形态重塑过程,并且这种可塑性可以通过耐力运动以不同方式调节。

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