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哺乳动物肌梭初级末梢感受器电位的离子基础。

Ionic basis of the receptor potential in primary endings of mammalian muscle spindles.

作者信息

Hunt C C, Wilkinson R S, Fukami Y

出版信息

J Gen Physiol. 1978 Jun;71(6):683-98. doi: 10.1085/jgp.71.6.683.

Abstract

The effect of changing the ionic composition of bathing fluid on the receptor potential of primary endings has been examined in isolated mammalian spindles whose capsule was removed in the sensory region. After impulse activity is blocked by tetrodotoxin, ramp-and-hold stretch evokes a characteristic pattern of potential change consisting of a greater dynamic depolarization during the ramp phase and a smaller static depolarization during the hold phase. After a high-velocity ramp there is a transient post-dynamic undershoot to below the static level. On release from hold stretch, the potential shows a postrelease undershoot relative to base line. The depolarization produced by stretch is rapidly decreased by the removal of Na+ and Ca2+. Addition of normal Ca2+ partly restores the response. Stretch appears to increase the conductance to Na+ and Ca2+ in the sensory terminals. The postdynamic undershoot is diminished by raising external K+ and blocked by tetraethylammonium (TEA). It apparently results from a voltage-dependent potassium conductance. The postrelease undershoot is decreased by raising external K+, but is not blocked by TEA. It is presumably caused by a relative increase in potassium conductance on release. Substitution of isethionate for Cl- or the addition of ouabain does not alter the postdynamic and postrelease undershoots.

摘要

在感觉区域去除被膜的离体哺乳动物纺锤体中,研究了改变灌流液离子成分对初级终末感受器电位的影响。在用河豚毒素阻断冲动活动后,斜坡-保持拉伸诱发一种特征性的电位变化模式,包括斜坡期更大的动态去极化和保持期较小的静态去极化。高速斜坡后有一个短暂的动态后超射,低于静态水平。从保持拉伸释放时,电位相对于基线显示出释放后超射。去除Na+和Ca2+可使拉伸产生的去极化迅速降低。添加正常Ca2+可部分恢复反应。拉伸似乎增加了感觉终末对Na+和Ca2+的电导。提高细胞外K+可减少动态后超射,四乙铵(TEA)可阻断该超射。它显然是由电压依赖性钾电导引起的。提高细胞外K+可减少释放后超射,但TEA不能阻断。它可能是由释放时钾电导的相对增加引起的。用羟乙基磺酸替代Cl-或添加哇巴因不会改变动态后超射和释放后超射。

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