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钾离子诱发的蟾蜍视网膜 Müller 细胞去极化产生视网膜电图的 b 波。

K(+)-evoked Müller cell depolarization generates b-wave of electroretinogram in toad retina.

作者信息

Wen R, Oakley B

机构信息

Neural and Behavioral Biology Program, University of Illinois, Urbana-Champaign 61801-2991.

出版信息

Proc Natl Acad Sci U S A. 1990 Mar;87(6):2117-21. doi: 10.1073/pnas.87.6.2117.

Abstract

We tested the hypothesis that a light-evoked increase in [K+]o produces a depolarization of the Müller cell membrane, which in turn generates the electroretinogram b-wave current. Using Bufo marinus isolated retinas and K(+)-selective microelectrodes, we recorded two distinct light-evoked increases in extracellular K+ concentration: one in the inner plexiform layer and the other near the outer plexiform layer; the "distal" K+ increase was found over only 10-microns depth and had a maximum amplitude of 0.3 mM. We also recorded the electroretinogram and the light-evoked responses of rods and Müller cells. After correction for the response time of the K(+)-selective microelectrode, the waveforms of all three of these responses were almost exactly as predicted by an earlier computer simulation of the K+/Müller cell hypothesis of the b-wave by Newman and Odette [Newman, E.A. & Odette, L.L. (1984) J. Neurophysiol. 51, 164-182]. The distal K+ increase and the b-wave varied in a similar manner as a function of stimulus irradiance. Superfusion with 0.2 mM Ba2+ attenuated both the Müller cell depolarization and the b-wave by approximately 65% but had no significant effect upon the distal K+ increase. Because Ba2+ reduces K+ conductance of Müller cells, these results are very strong support of the K+/Müller cell hypothesis of the origin of the electroretinogram b-wave; the light-evoked increase in extracellular potassium concentration still is present during superfusion with Ba2+, but the K(+)-evoked Müller cell depolarization and the b-wave are decreased in amplitude because Müller cell K+ conductance is reduced.

摘要

我们验证了这样一个假说

光诱发的细胞外钾离子浓度([K+]o)升高会导致米勒细胞膜去极化,进而产生视网膜电图b波电流。我们使用海蟾蜍分离视网膜和钾离子选择性微电极,记录到了两种不同的光诱发细胞外钾离子浓度升高:一种在内网状层,另一种在外网状层附近;“远端”钾离子升高仅在10微米深度范围内被发现,最大幅度为0.3 mM。我们还记录了视网膜电图以及视杆细胞和米勒细胞的光诱发反应。在校正了钾离子选择性微电极的响应时间后,这三种反应的波形几乎与纽曼和奥德特之前对b波的钾离子/米勒细胞假说进行的计算机模拟预测完全一致[纽曼,E.A. & 奥德特,L.L.(1984年)《神经生理学杂志》51卷,164 - 182页]。远端钾离子升高和b波随刺激辐照度的变化方式相似。用0.2 mM Ba2+灌注可使米勒细胞去极化和b波均衰减约65%,但对远端钾离子升高无显著影响。由于Ba2+会降低米勒细胞的钾离子电导,这些结果有力地支持了视网膜电图b波起源的钾离子/米勒细胞假说;在Ba2+灌注期间,光诱发的细胞外钾离子浓度升高仍然存在,但钾离子诱发的米勒细胞去极化和b波的幅度减小,因为米勒细胞的钾离子电导降低了。

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