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来自分离的兔视网膜穆勒(神经胶质)细胞的细胞内记录。

Intracellular recordings from isolated rabbit retinal Müller (glial) cells.

作者信息

Reichenbach A, Eberhardt W

出版信息

Pflugers Arch. 1986 Sep;407(3):348-53. doi: 10.1007/BF00585313.

Abstract

Müller (glial) cells were isolated from rabbit retinae by papaine and mechanical dissociation. The cells were fixed on a gelatine-covered glass slide by means of concanavalin A, and the slide was mounted in a perfusion chamber under a light microscope with modified optics. Besides the recording microelectrode, two other micropipettes could be adjusted with their tips near the cell. These micropipettes were used for application of test solutions into the environment of the cells. On application of high K+ solutions, the cell depolarized strongly but during prolonged application there was a marked repolarization. After the end of high K+ application the cells showed a hyperpolarization which was enhanced in both amplitude and duration with prolongation of the K+ exposure. Both repolarization and afterhyperpolarization disappeared under ouabain. Ouabain application itself caused a small reversible depolarization. Na+ free solution caused hyperpolarization. The results suggest the existence of an active membrane pump mechanism in our cells. This pump seems to be electrogenic under our experimental conditions and seems to be activated even in the absence of sodium. The cell membrane is demonstrated to contain a significant Na+ conductance.

摘要

通过木瓜蛋白酶和机械分离法从兔视网膜中分离出 Müller(神经胶质)细胞。细胞通过伴刀豆球蛋白 A 固定在明胶覆盖的载玻片上,然后将载玻片安装在配备改良光学系统的光学显微镜下的灌注室中。除了记录微电极外,另外两个微吸管的尖端可调整至靠近细胞的位置。这些微吸管用于将测试溶液施加到细胞周围环境中。施加高钾溶液时,细胞强烈去极化,但在长时间施加过程中会出现明显的复极化。高钾溶液施加结束后,细胞出现超极化,随着钾暴露时间的延长,超极化的幅度和持续时间均增强。在哇巴因作用下,复极化和超极化后电位均消失。施加哇巴因本身会引起小的可逆性去极化。无钠溶液会导致超极化。结果表明我们的细胞中存在一种活性膜泵机制。在我们的实验条件下,这种泵似乎是生电性的,甚至在没有钠的情况下似乎也会被激活。已证明细胞膜含有显著的钠电导。

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