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新生大鼠脊髓完整制剂中运动神经元内多种内向整流器的5-羟色胺调节

5-HT modulation of multiple inward rectifiers in motoneurons in intact preparations of the neonatal rat spinal cord.

作者信息

Kjaerulff O, Kiehn O

机构信息

Division of Neurophysiology, Department of Medical Physiology, The Panum Institute, University of Copenhagen, DK-2200 Copenhagen, Denmark.

出版信息

J Neurophysiol. 2001 Feb;85(2):580-93. doi: 10.1152/jn.2001.85.2.580.

Abstract

This study introduces novel aspects of inward rectification in neonatal rat spinal motoneurons (MNs) and its modulation by serotonin (5-HT). Whole cell tight-seal recordings were made from MNs in an isolated lumbar spinal cord preparation from rats 1-2 days of age. In voltage clamp, hyperpolarizing step commands were generated from holding potentials of -50 to -40 mV. Discordant with previous reports involving slice preparations, fast inward rectification was commonly expressed and in 44% of the MNs co-existed with a slow inward rectification related to activation of I(h). The fast inward rectification is likely caused by an I(Kir). Thus it appeared around E(K) and was sensitive to low concentrations (100-300 microM) of Ba2+ but not to ZD 7288, which blocked I(h). Both I(Kir) and I(h) were inhibited by Cs2+ (0.3-1.5 mM). Extracellular addition of 5-HT (10 microM) reduced the instantaneous conductance, most strongly at membrane potentials above E(K). Low [Ba2+] prevented the 5-HT-induced instantaneous conductance reduction below, but not that above, E(K). This suggests that 5-HT inhibits I(Kir), but also other instantaneous conductances. The biophysical parameters of I(h) were evaluated before and under 5-HT. The maximal I(h) conductance, G(max), was 12 nS, much higher than observed in slice preparations. G(max) was unaffected by 5-HT. In contrast, 5-HT caused a 7-mV depolarizing shift in the activation curve of I(h). Double-exponential fits were generally needed to describe I(h) activation. The fast and slow time constants obtained by these fits differed by an order of magnitude. Both time constants were accelerated by 5-HT, the slow time constant to the largest extent. We conclude that spinal neonatal MNs possess multiple forms of inward rectification. I(h) may be carried by two spatially segregated channel populations, which differ in kinetics and sensitivity to 5-HT. 5-HT increases MN excitability in several ways, including inhibition of a barium-insensitive leak conductance, inhibition of I(Kir), and enhancement of I(h). The quantitative characterization of these effects should be useful for further studies seeking to understand how neuromodulation prepares vertebrate MNs for concerted behaviors such as locomotor activity.

摘要

本研究介绍了新生大鼠脊髓运动神经元(MNs)内向整流的新特性及其受5-羟色胺(5-HT)调节的情况。在1至2日龄大鼠的离体腰段脊髓标本中,对MNs进行全细胞膜片钳紧密封接记录。在电压钳模式下,从-50至-40 mV的钳制电位产生超极化阶跃指令。与先前涉及脑片标本的报道不同,快速内向整流普遍存在,且在44%的MNs中与因I(h)激活而产生的缓慢内向整流共存。快速内向整流可能由I(Kir)引起。因此,它出现在E(K)附近,对低浓度(100 - 300 microM)的Ba2+敏感,但对阻断I(h)的ZD 7288不敏感。I(Kir)和I(h)均被Cs2+(0.3 - 1.5 mM)抑制。细胞外添加5-HT(10 microM)降低了瞬时电导,在膜电位高于E(K)时最为明显。低浓度[Ba2+]可防止5-HT诱导的瞬时电导在E(K)以下降低,但不能防止在E(K)以上降低。这表明5-HT抑制I(Kir),但也抑制其他瞬时电导。在5-HT存在前后评估I(h)的生物物理参数。I(h)的最大电导G(max)为12 nS,远高于在脑片标本中观察到的值。G(max)不受5-HT影响。相反,5-HT使I(h)激活曲线发生7 mV的去极化偏移。通常需要双指数拟合来描述I(h)的激活。通过这些拟合得到的快速和慢速时间常数相差一个数量级。两个时间常数均被5-HT加速,慢速时间常数加速程度最大。我们得出结论,脊髓新生MNs具有多种形式的内向整流。I(h)可能由两个在空间上分离的通道群体携带,它们在动力学和对5-HT的敏感性方面存在差异。5-HT通过多种方式增加MN兴奋性,包括抑制钡不敏感的漏电流、抑制I(Kir)以及增强I(h)。这些效应的定量表征对于进一步研究理解神经调节如何使脊椎动物MNs为诸如运动活动等协同行为做好准备应是有用的。

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