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首页> 外文期刊>American Journal of Physiology >Energy conservation attenuates the loss of skeletal muscle excitability during intense contractions.
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Energy conservation attenuates the loss of skeletal muscle excitability during intense contractions.

机译:能量节约减弱了剧烈收缩过程中骨骼肌兴奋性的丧失。

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摘要

High-frequency stimulation of skeletal muscle has long been associated with ionic perturbations, resulting in the loss of membrane excitability, which may prevent action potential propagation and result in skeletal muscle fatigue. Associated with intense skeletal muscle contractions are large changes in muscle metabolites. However, the role of metabolites in the loss of muscle excitability is not clear. The metabolic state of isolated rat extensor digitorum longus muscles at 30 degrees C was manipulated by decreasing energy expenditure and thereby allowed investigation of the effects of energy conservation on skeletal muscle excitability. Muscle ATP utilization was reduced using a combination of the cross-bridge cycling blocker N-benzyl-p-toluene sulfonamide (BTS) and the SR Ca2+ release channel blocker Na-dantrolene, which reduce activity of the myosin ATPase and SR Ca2+-ATPase. Compared with control muscles, the resting metabolites ATP, phosphocreatine, creatine, and lactate, as well as the resting muscle excitability as measured by M-waves, were unaffected by treatment with BTS plus dantrolene. Following 20 or 30 s of continuous 60-Hz stimulation, BTS-plus-dantrolene-treated muscles showed a 25% lower ATP utilization compared with control muscles. Furthermore, the ability of muscles to maintain excitability during high-frequency stimulation was significantly improved in BTS-plus-dantrolene-treated muscles, indicating a strong link between metabolites, energetic state, and the excitability of the muscle.
机译:长期以来,骨骼肌的高频刺激与离子扰动有关,导致膜兴奋性丧失,这可能阻止动作电位的传播并导致骨骼肌疲劳。与强烈的骨骼肌收缩相关的是肌肉代谢产物的大变化。但是,代谢物在肌肉兴奋性丧失中的作用尚不清楚。通过降低能量消耗来控制30摄氏度时大鼠离体指趾长伸肌的代谢状态,从而研究能量守恒对骨骼肌兴奋性的影响。结合跨桥循环阻滞剂N-苄基-对甲苯磺酰胺(BTS)和SR Ca2 +释放通道阻滞剂Na-dantrolene可以降低肌肉ATP的利用率,这会降低肌球蛋白ATPase和SR Ca2 + -ATPase的活性。与对照肌肉相比,静息代谢物ATP,磷酸肌酸,肌酸和乳酸以及通过M波测量的静息肌兴奋性不受BTS加丹特林治疗的影响。在连续60 Hz刺激持续20或30 s之后,BTS加双氧苯环治疗的肌肉与对照组肌肉相比,ATP利用率降低了25%。此外,在经BTS加对苯二酚处理的肌肉中,肌肉在高频刺激过程中保持兴奋性的能力得到了显着提高,这表明代谢物,能量状态和肌肉的兴奋性之间有很强的联系。

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