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硬骨鱼视网膜中视锥水平细胞活性的调节。III. 长期黑暗和多巴胺对水平细胞间电耦合的影响。

Modulation of cone horizontal cell activity in the teleost fish retina. III. Effects of prolonged darkness and dopamine on electrical coupling between horizontal cells.

作者信息

Tornqvist K, Yang X L, Dowling J E

机构信息

Biological Laboratories, Harvard University, Cambridge, Massachusetts 02138.

出版信息

J Neurosci. 1988 Jul;8(7):2279-88. doi: 10.1523/JNEUROSCI.08-07-02279.1988.

Abstract

The effects of prolonged darkness and dopamine on the coupling between horizontal cells in the isolated, superfused white perch retina were studied. Two assays of coupling were employed; area versus amplitude relationships (area-response curves) and the diffusion of the fluorescent dye Lucifer yellow from intracellularly injected cells to neighboring cells. In prolonged dark-adapted retinas, area-response curves were difficult to determine because of the small light responses; however, light-evoked responses did not increase in size when light spots were larger than 0.8 mm in diameter. Following the presentation of dim background illumination that partially sensitized the retina, responses to light spots of various sizes were enhanced and an area-response curve could be constructed. Subsequent presentation of moderate background illumination that more fully sensitized the retina resulted in reduced responses to small spots (less than 1.6 mm in diameter) and enhanced responses to large spot or full-field stimuli. In retinas exposed to moderate background illumination, Lucifer yellow injected intracellularly into cone horizontal cells diffused into many neighboring horizontal cells. The coupled cells were very similar in morphology, suggesting they were of the same type. In prolonged dark-adapted retinas, on the other hand, the dye was usually restricted to the injected cell and a few adjacent cells. These results indicate that coupling between cone horizontal cells is modulated by prolonged darkness and background illumination. Following dopamine (50 microM) application, in both 6-OHDA-treated and untreated retinas, changes in area-response curves of cone horizontal cells were observed just opposite to those that occurred when prolonged dark-adapted retinas were exposed to background illumination. That is, following 5 min application of dopamine to the retina, responses to small spots (less than 2 mm in diameter) increased in size while responses to larger spots decreased in amplitude compared with control responses. Following 20 min of superfusion with dopamine, the recorded responses were very small, and an accurate area-response curve could not be determined. Following dopamine application to light-sensitized retinas, Lucifer yellow was restricted to the injected cells or to the injected cell and a few neighboring cells. The results suggest that the modulation of coupling between cone horizontal cells by prolonged darkness and background illumination may be mediated by dopamine. Spatial properties of rod horizontal cells were also examined.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

研究了长时间黑暗和多巴胺对分离的、经灌流的白鲈视网膜中水平细胞之间耦合的影响。采用了两种耦合测定方法:面积与幅度关系(面积-反应曲线)以及荧光染料鲁米诺黄从细胞内注射的细胞向相邻细胞的扩散。在长时间暗适应的视网膜中,由于光反应较小,难以确定面积-反应曲线;然而,当光斑直径大于0.8毫米时,光诱发反应的大小并未增加。在呈现部分使视网膜敏感化的昏暗背景照明后,对各种大小光斑的反应增强,并且可以构建面积-反应曲线。随后呈现更充分使视网膜敏感化的中等背景照明,导致对小光斑(直径小于1.6毫米)的反应降低,而对大光斑或全视野刺激的反应增强。在暴露于中等背景照明的视网膜中,细胞内注射到视锥水平细胞中的鲁米诺黄扩散到许多相邻的水平细胞中。耦合的细胞在形态上非常相似,表明它们是同一类型。另一方面,在长时间暗适应的视网膜中,染料通常局限于注射的细胞和少数相邻细胞。这些结果表明,视锥水平细胞之间的耦合受到长时间黑暗和背景照明的调节。在应用多巴胺(50微摩尔)后,在6-羟基多巴胺处理和未处理的视网膜中,视锥水平细胞的面积-反应曲线的变化与长时间暗适应的视网膜暴露于背景照明时发生的变化相反。也就是说,在向视网膜应用多巴胺5分钟后,与对照反应相比,对小光斑(直径小于2毫米)的反应大小增加,而对较大光斑的反应幅度降低。在多巴胺灌流20分钟后,记录的反应非常小,无法确定准确的面积-反应曲线。在向光敏感化的视网膜应用多巴胺后,鲁米诺黄局限于注射的细胞或注射的细胞和少数相邻细胞。结果表明,长时间黑暗和背景照明对视锥水平细胞之间耦合的调节可能由多巴胺介导。还研究了视杆水平细胞的空间特性。(摘要截短至400字)

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