Université de Brest, Faculté de Médecine et des Sciences de la Santé, EA 4326, Laboratoire de Physiologie, Brest, France.
J Appl Physiol (1985). 2011 Aug;111(2):495-507. doi: 10.1152/japplphysiol.01136.2010. Epub 2011 May 19.
Muscle immobilization leads to modification in its fast/slow contractile phenotype. Since the properties of voltage-gated sodium channels (Na(v)) are different between "fast" and "slow" muscles, we studied the effects of immobilization on the contractile properties and the Na(v) of rat peroneus longus (PL). The distal tendon of PL was cut and fixed to the adjacent bone at neutral muscle length. After 4 or 8 wk of immobilization, the contractile and the Na(v) properties were studied and compared with muscles from control animals (Student's t-test). After 4 wk of immobilization, PL showed a faster phenotype with a rightward shift of the force-frequency curve and a decrease in both the Burke's index of fatigability and the tetanus-to-twitch ratio. These parameters showed opposite changes between 4 and 8 wk of immobilization. The maximal sodium current in 4-wk immobilized fibers was higher compared with that of control fibers (11.5 ± 1.2 vs. 7.8 ± 0.8 nA, P = 0.008), with partial recovery to the control values in 8-wk immobilized fibers (8.6 ± 0.7 nA, P = 0.48). In the presence of tetrodotoxin, the maximal residual sodium current decreased continuously throughout immobilization. Using the Western blot analysis, Na(v)1.4 expression showed a transient increase in 4-wk muscle, whereas Na(v)1.5 expression decreased during immobilization. Our results indicate that a muscle immobilized at optimal functional length with the preservation of neural inputs exhibits a transient fast phenotype conversion. Na(v)1.4 expression and current are related to the contractile phenotype variation.
肌肉固定会导致其快/慢收缩表型发生改变。由于电压门控钠离子通道(Na(v))在“快”肌和“慢”肌之间的特性不同,我们研究了固定对大鼠腓肠肌(PL)的收缩特性和 Na(v)的影响。切断 PL 的远端肌腱,并将其固定在邻近骨骼的中性肌肉长度处。固定 4 或 8 周后,研究了收缩和 Na(v)特性,并与对照动物的肌肉进行了比较(Student's t 检验)。固定 4 周后,PL 表现出更快的表型,力-频率曲线向右移位,疲劳的 Burke 指数和强直-抽搐比均降低。这些参数在固定 4 周和 8 周之间表现出相反的变化。与对照纤维相比,固定 4 周的纤维中的最大钠电流更高(11.5 ± 1.2 对 7.8 ± 0.8 nA,P = 0.008),而在固定 8 周的纤维中恢复到对照值(8.6 ± 0.7 nA,P = 0.48)。在河豚毒素存在的情况下,最大剩余钠电流在整个固定过程中持续下降。使用 Western blot 分析,Na(v)1.4 表达在 4 周肌肉中短暂增加,而 Na(v)1.5 表达在固定期间减少。我们的结果表明,在最佳功能长度下固定且保留神经输入的肌肉会表现出短暂的快表型转换。Na(v)1.4 表达和电流与收缩表型变化有关。