Kirsch G E, Anderson M F
Muscle Nerve. 1986 Oct;9(8):738-47. doi: 10.1002/mus.880090810.
The effects of chronic denervation on sodium (Na) channels in rabbit muscle membrane were determined using intracellular microelectrodes and Vaseline gap voltage clamp techniques. The Hodgkin-Huxley model was used to describe the kinetic and steady-state parameters of channel activation and fast inactivation. Chronic (7-10 days) denervation was found to cause a decreased resting potential, lowered action potential peak, and fibrillation potentials in rabbit extensor digitorum longus (EDL) muscles. Under voltage clamp conditions, no differences were observed between denervated and normal fibers in the voltage dependence of the steady-state Na channel activation and fast inactivation curves, or in the time course of development of fast inactivation. However, in denervated fibers, the time course of recovery from fast inactivation was approximately half that measured in normal fibers. Also, whereas depolarizing holding potentials induced a long-term inactivation to varying degrees in normal EDL fibers, denervated EDL fibers and normal soleus fibers were uniformly resistant to prolonged depolarization. These results suggest that the denervation-induced development of spontaneous activity may be due in part to changes in the mechanisms that control the refractoriness of Na channels.
采用细胞内微电极和凡士林间隙电压钳技术,测定了慢性去神经支配对兔肌肉膜中钠(Na)通道的影响。使用霍奇金 - 赫胥黎模型来描述通道激活和快速失活的动力学及稳态参数。发现慢性(7 - 10天)去神经支配会导致兔趾长伸肌(EDL)肌肉静息电位降低、动作电位峰值降低以及出现纤颤电位。在电压钳条件下,去神经支配纤维和正常纤维在稳态钠通道激活和快速失活曲线的电压依赖性方面,或在快速失活发展的时间进程方面均未观察到差异。然而,在去神经支配的纤维中,从快速失活恢复的时间进程约为正常纤维中测量值的一半。此外,虽然去极化钳制电位在正常EDL纤维中会不同程度地诱导长期失活,但去神经支配的EDL纤维和正常比目鱼肌纤维对长时间去极化均具有一致的抗性。这些结果表明,去神经支配诱导的自发活动的产生可能部分归因于控制钠通道不应期机制的变化。