Oakley B
J Gen Physiol. 1977 Oct;70(4):405-25. doi: 10.1085/jgp.70.4.405.
Light-evoked changes in pigment epithelial cell membrane potentials and retinal extracellular potassium ion concentration, [K+]0, were measured in an in vitro frog retina-pigment epithelium-choroid preparation. Light stimuli hyperpolarized the apical membrane of the pigment epithelium. Through an electrical shunt pathway connecting the apical and basal membranes, the basal membrane also hyperpolarized, but to a lesser degree than the apical membrane. This differential hyperpolariation of the two membranes increased the transepithelial potential (TEP). This increase in TEP was shown to be the major voltage source of the c-wave of the electroretinogram (ERG). Direct measurement of [K+]0 in the distal retina, made with K+-specific microelectrodes, showed a light-evoked decrease in [K+]0 having an identical time course to the apical hyperpolarization. There was a linear relationship between the light-evoked change in TEP and the logarithm of [K+]0. This exact relationship was also found when the apical membrane was perfused directly with solutions of varying [K+]0. The change in TEP associated with the ERC c-wave, therefore, was explained solely by the response of the pigment epithelium to the light-evoked decrease in [K+]0 in the distal retina.
在体外青蛙视网膜-色素上皮-脉络膜标本中,测量了光诱发的色素上皮细胞膜电位变化以及视网膜细胞外钾离子浓度[K⁺]₀。光刺激使色素上皮的顶端膜超极化。通过连接顶端膜和基底膜的电分流途径,基底膜也发生超极化,但程度小于顶端膜。这两个膜的差异超极化增加了跨上皮电位(TEP)。已证明这种TEP的增加是视网膜电图(ERG)c波的主要电压来源。用K⁺特异性微电极直接测量远端视网膜中的[K⁺]₀,结果显示光诱发的[K⁺]₀降低,其时间进程与顶端超极化相同。光诱发的TEP变化与[K⁺]₀的对数之间存在线性关系。当直接用不同[K⁺]₀的溶液灌注顶端膜时,也发现了这种确切关系。因此,与ERC c波相关的TEP变化完全是由色素上皮对远端视网膜中光诱发的[K⁺]₀降低的反应所解释的。