Qian H, Ripps H
Department of Ophthalmology and Visual Sciences, Lions of Illinois Eye Research Institute, Chicago.
J Gen Physiol. 1992 Sep;100(3):457-78. doi: 10.1085/jgp.100.3.457.
The large receptive fields of retinal horizontal cells result primarily from extensive intercellular coupling via gap (electrical) junctions; thus, the extent of the receptive field provides an index of the degree to which the cells are electrically coupled. For rod-driven horizontal cells in the dark-adapted skate retina, a space constant of 1.18 +/- 0.15 mm (SD) was obtained from measurements with a moving slit stimulus, and a comparable value (1.43 +/- 0.55 mm) was obtained with variation in spot diameter. These values, and the extensive spread of a fluorescent dye (Lucifer Yellow) from the site of injection to neighboring cells, indicate that the horizontal cells of the all-rod retina of skate are well coupled electrically. Neither the receptive field properties nor the gap-junctional features of skate horizontal cells were influenced by the adaptive state of the retina: (a) the receptive field organization was unaffected by light adaptation, (b) similar dye coupling was seen in both dark- and light-adapted retinae, and (c) no significant differences were found in the gap-junctional particle densities measured in dark- and light-adapted retinas, i.e., 3,184 +/- 286/microns 2 (n = 8) and 3,073 +/- 494/microns 2 (n = 11), respectively. Moreover, the receptive fields of skate horizontal cells were not altered by either dopamine, glycine, GABA, or the GABAA receptor antagonists bicuculline and picrotoxin. We conclude that the rod-driven horizontal cells of the skate retina are tightly coupled to one another, and that the coupling is not affected by photic and pharmacological conditions that are known to modulate intercellular coupling between cone-driven horizontal cells in other species.
视网膜水平细胞的大感受野主要源于通过缝隙(电)连接的广泛细胞间耦合;因此,感受野的范围提供了细胞电耦合程度的指标。对于暗适应的鳐鱼视网膜中由视杆驱动的水平细胞,通过移动狭缝刺激测量得到的空间常数为1.18±0.15毫米(标准差),通过改变光斑直径也得到了类似的值(1.43±0.55毫米)。这些值,以及荧光染料(路西法黄)从注射部位向相邻细胞的广泛扩散,表明鳐鱼全视杆视网膜的水平细胞电耦合良好。鳐鱼水平细胞的感受野特性和缝隙连接特征均不受视网膜适应状态的影响:(a)感受野组织不受光适应的影响,(b)在暗适应和光适应的视网膜中均观察到类似的染料耦合,(c)在暗适应和光适应的视网膜中测量的缝隙连接颗粒密度无显著差异,即分别为3184±286/平方微米(n = 8)和3073±494/平方微米(n = 11)。此外,多巴胺、甘氨酸、GABA或GABAA受体拮抗剂荷包牡丹碱和印防己毒素均未改变鳐鱼水平细胞的感受野。我们得出结论,鳐鱼视网膜中由视杆驱动的水平细胞彼此紧密耦合,并且这种耦合不受已知调节其他物种中由视锥驱动的水平细胞间耦合的光和药理条件的影响。