Gallemore R P, Steinberg R H
Department of Physiology, University of California, San Francisco 94143-0444.
Invest Ophthalmol Vis Sci. 1991 Nov;32(12):3041-52.
While using cobalt (Co2+) to block synaptic transmission in an in vitro preparation of chick retina, the authors observed significant changes in the DC electroretinogram (DC ERG). Cobalt (3.0 mM) increased the amplitudes of all three photoreceptor-dependent responses of the retinal pigment epithelium (RPE): the c-wave, fast-oscillation trough, and light peak. Intracellular recordings from RPE cells revealed that Co2+ increased those light-evoked changes in RPE membrane potentials that contribute to each of these responses. Monitoring of subretinal [K+]o with K(+)-selective microelectrodes showed that Co2+ increased the amplitude of the light-evoked [K+]o decrease, and this must contribute to the observed increase in c-wave and fast-oscillation trough because both are generated by this [K+]o change. Cobalt also increased the initial rate of [K+]o decrease at light-onset, the rate of subretinal [K+]o reaccumulation during maintained illumination, and the amplitude of the [K+]o overshoot at light-offset. The Co(2+)-induced increases in light-evoked RPE responses and subretinal [K+]o changes may arise from a direct effect on photoreceptors because (1) blockade of postphotoreceptoral activity did not block these effects of Co2+; and (2) Co2+ did not alter significantly the electrical properties of isolated RPE-choroid tissues. The authors conclude that, in the cone-dominated chick retina, Co2+ may act directly on the photoreceptors to increase the light response.
在利用钴离子(Co2+)阻断鸡视网膜体外制备物中的突触传递时,作者观察到直流视网膜电图(DC ERG)有显著变化。钴离子(3.0 mM)增加了视网膜色素上皮(RPE)所有三种光感受器依赖性反应的幅度:c波、快速振荡波谷和光峰。从RPE细胞进行的细胞内记录显示,Co2+增加了那些导致这些反应的RPE膜电位的光诱发变化。用钾离子选择性微电极监测视网膜下[K+]o表明,Co2+增加了光诱发的[K+]o降低的幅度,这必然导致观察到的c波和快速振荡波谷增加,因为两者都是由这种[K+]o变化产生的。钴离子还增加了光照开始时[K+]o降低的初始速率、持续光照期间视网膜下[K+]o的重新积累速率以及光照结束时[K+]o过冲的幅度。Co(2+)诱导的光诱发RPE反应和视网膜下[K+]o变化的增加可能源于对光感受器的直接作用,因为(1)阻断光感受器后活动并未阻断Co2+的这些作用;(2)Co2+并未显著改变分离的RPE -脉络膜组织的电特性。作者得出结论,在以视锥细胞为主的鸡视网膜中,Co2+可能直接作用于光感受器以增强光反应。