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非髓鞘神经在后放超极化期间激活的轴突和胶质电流。

Axonal and glial currents activated during the post-tetanic hyperpolarization in non-myelinated nerve.

机构信息

Département de Pharmacologie, Centre Médical Universitaire, 1 rue Michel Servet, CH-1211 Geneva 4, Switzerland.

出版信息

Pflugers Arch. 1998 Jul;436(4):529-37. doi: 10.1007/s004240050668.

Abstract

Changes in membrane potential and potassium concentration in the extracellular space ([K+]e) of rabbit vagus nerve were measured simultaneously during electrical activity and during the period of recovery using a modified sucrose-gap method and potassium-sensitive microelectrodes. After stimulation for 15 s at 15 Hz the main activity-induced increase in [K+]e reached 16.9 mM. This increase in [K+]e was paralleled by a depolarization of the preparation. The period of activity was followed by a post-tetanic hyperpolarization (PTH) lasting tens of seconds, generated by the axonal electrogenic Na+-K+ pump and to a lesser extent by the pump of the surrounding Schwann cells. The amplitude of the PTH dramatically increased in experiments in which inward currents were blocked by removal of Cl– or after application of Cs+ or Ba2+, indicating that under normal conditions the current generated by the Na+-K+ pump is strongly short-circuited. A pharmacological and kinetic study showed that these currents are: (1) the hyperpolarization-activated current I h, and (2) the inwardly rectifying I KIR current. The results show that the latter originates from Schwann cells. Our data indicate that in non-myelinated nerves there is a subtle association of inward ionic channels which (1) helps the cell to maintain an optimal membrane potential after a period of activity, and (2) contributes to the removal of excess K+ from the extracellular space.

摘要

采用改良的蔗糖间隙法和钾敏微电极,同时测量兔迷走神经在电活动期间和恢复期膜电位和细胞外间隙钾浓度([K+]e)的变化。以 15 Hz 刺激 15 s 后,[K+]e 的主要活性诱导增加达到 16.9 mM。这种[K+]e 的增加与制备物的去极化平行。活动期后,持续数十秒的后强直超极化 (PTH),由轴突电致性 Na+-K+泵产生,周围施万细胞的泵产生较小程度。在去除 Cl–或应用 Cs+或 Ba2+阻断内向电流的实验中,PTH 的幅度显着增加,表明在正常情况下,Na+-K+泵产生的电流被强烈短路。药理学和动力学研究表明,这些电流是:(1) 超极化激活电流 Ih,和 (2) 内向整流的 IKIR 电流。结果表明,后者源自施万细胞。我们的数据表明,在无髓鞘神经中存在内向离子通道的微妙关联,这些通道 (1) 有助于细胞在活动期后维持最佳膜电位,(2) 有助于从细胞外间隙去除多余的 K+。

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