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膜电位对大鼠骨骼肌中刚可检测到的运动的影响:去神经支配的影响。

Effects of membrane potential on just detectable movement in rat skeletal muscle: effects of denervation.

作者信息

Patterson M F, Dulhunty A F

机构信息

Muscle Research Group, JCSMR, Australian National University, Canberra.

出版信息

J Membr Biol. 1994 Mar;138(3):197-207. doi: 10.1007/BF00232792.

Abstract

The potential, Vt, at which a brief test depolarization first elicited movement was determined using two-microelectrode point voltage clamp. We expected that inactivation of excitation-contraction coupling at conditioning potentials between -60 and 0 mV would shift Vt to more positive potentials, and that fibers would become inactivatable with less conditioning depolarization in EDL than soleus. The curve relating Vt to conditioning potential had a negative slope (which was insensitive to addition of 1 mM cobalt or replacement of calcium with 20 mM CaEGTA) between -60 and -35 mV and a steep positive slope with further depolarization Unexpectedly, fibers became inactivatable with less conditioning depolarization in soleus than in EDL when Vt was measured with 50 msec test pulses. However, the positive shift in Vt became less steep as test pulse duration lengthened in soleus fibers. When Vt obtained with test pulses approaching rheobase (10 msec in EDL and 500 msec in soleus) was compared, EDL fibers became inactive with less conditioning depolarization than soleus fibers. The increase in Vt became steeper with 1 mM cobalt or 20 mM CaEGTA and was shifted to more positive potentials by denervation in soleus fibers. We conclude that inactivation (i) does not strongly influence threshold contractions at conditioning potentials between -60 and -40 mV and (ii) influences Vt between -40 and 0 mV in a manner that depends on test pulse duration.

摘要

使用双微电极点电压钳测定首次引发运动的短暂测试去极化时的电位Vt。我们预期,在-60至0 mV的条件电位下兴奋-收缩偶联的失活会使Vt向更正电位移动,并且与比目鱼肌相比,在趾长伸肌(EDL)中纤维会以更少的条件去极化变得可失活。在-60至-35 mV之间,Vt与条件电位的关系曲线具有负斜率(对添加1 mM钴或用20 mM乙二醇双(2-氨基乙基醚)四乙酸(CaEGTA)替代钙不敏感),而进一步去极化时则具有陡峭的正斜率。出乎意料的是,当用50毫秒测试脉冲测量Vt时,比目鱼肌中的纤维比EDL中的纤维以更少的条件去极化变得可失活。然而,在比目鱼肌纤维中,随着测试脉冲持续时间延长,Vt的正向移动变得不那么陡峭。当比较用接近阈强度(EDL中为10毫秒,比目鱼肌中为500毫秒)的测试脉冲获得的Vt时,EDL纤维比目鱼肌纤维以更少的条件去极化变得失活。用1 mM钴或20 mM CaEGTA时,Vt的增加变得更陡峭,并且在比目鱼肌纤维中去神经支配会使Vt向更正电位移动。我们得出结论,失活(i)在-60至-40 mV的条件电位下对阈收缩没有强烈影响,并且(ii)以取决于测试脉冲持续时间的方式影响-40至0 mV之间的Vt。

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