Stockton R A, Slaughter M M
Department of Biophysical Sciences, State University of New York, School of Medicine, Buffalo 14214.
J Gen Physiol. 1989 Jan;93(1):101-22. doi: 10.1085/jgp.93.1.101.
Light-evoked intraretinal field potentials (electroretinogram, ERG) have been measured simultaneously with extracellular potassium fluxes in the amphibian retina. The application of highly selective pharmacologic agents permitted us to functionally isolate various classes of retinal neurons. It was found that: (a) application of APB (2-amino-4-phosphonobutyrate), which has previously been shown to selectively abolish the light responsiveness of ON bipolar cells, causes a concomitant loss of the ERG b-wave and ON potassium flux. (b) Conversely, PDA (cis 2,3-piperidine-dicarboxylic acid) or KYN (kynurenic acid), which have been reported to suppress the light responses of OFF bipolar, horizontal, and third-order retinal neurons, causes a loss of the ERG d-wave as well as OFF potassium fluxes. The b-wave and ON potassium fluxes, however, remain undiminished. (c) NMA (N-methyl-DL-aspartate) or GLY (glycine), which have been reported to suppress the responses of third-order neurons, do not diminish the b- or d-waves, nor the potassium fluxes at ON or OFF. This leads to the conclusion that the b-wave of the ERG is a result of the light-evoked depolarization of the ON bipolar neurons. This experimental approach has resulted in two further conclusions: (a) that the d-wave is an expression of OFF bipolar and/or horizontal cell depolarization at the termination of illumination and (b) that light-induced increases in extracellular potassium concentration in both the inner (proximal) and outer (distal) retina are the result of ON bipolar cell depolarization.
在两栖动物视网膜中,已同时测量了光诱发的视网膜内场电位(视网膜电图,ERG)和细胞外钾离子通量。应用高度选择性的药理试剂使我们能够在功能上分离出各类视网膜神经元。结果发现:(a)应用APB(2-氨基-4-磷酸丁酸),先前已证明它能选择性消除ON双极细胞的光反应性,同时导致ERG b波和ON钾离子通量丧失。(b)相反,据报道PDA(顺式2,3-哌啶二羧酸)或犬尿氨酸(KYN)可抑制OFF双极、水平和三级视网膜神经元的光反应,导致ERG d波以及OFF钾离子通量丧失。然而,b波和ON钾离子通量并未减少。(c)据报道NMA(N-甲基-DL-天冬氨酸)或甘氨酸(GLY)可抑制三级神经元的反应,但不会减少b波或d波,也不会减少ON或OFF时的钾离子通量。由此得出结论,ERG的b波是ON双极神经元光诱发去极化的结果。这种实验方法还得出了另外两个结论:(a)d波是光照终止时OFF双极和/或水平细胞去极化的表现;(b)光诱导的视网膜内层(近端)和外层(远端)细胞外钾离子浓度增加是ON双极细胞去极化的结果。