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牛色素性和非色素性睫状上皮细胞中的离子转运不对称性与功能偶联

Ion transport asymmetry and functional coupling in bovine pigmented and nonpigmented ciliary epithelial cells.

作者信息

Edelman J L, Sachs G, Adorante J S

机构信息

Department of Medicine, Wadsworth Veterans Administration Hospital, Los Angeles, California.

出版信息

Am J Physiol. 1994 May;266(5 Pt 1):C1210-21. doi: 10.1152/ajpcell.1994.266.5.C1210.

Abstract

The solute and water transport properties of the bovine ciliary epithelium were studied using isolated pigmented (PE) and nonpigmented (NPE) cells. It was shown that these cells were functionally coupled by demonstrating dye diffusion between paired PE and NPE cells after microinjection of lucifer yellow. Electronic cell sizing was used to measure cell volume changes of isolated PE and NPE cells in suspension after anisosmotic perturbations and after transport inhibition under isosmotic conditions. The PE cells showed the presence of a regulatory volume increase when subjected to osmotic shrinkage with NaCl, whereas the NPE cells did not demonstrate a regulatory volume increase under these conditions. In contrast, the NPE cells exhibited a regulatory volume decrease when subjected to osmotic swelling, whereas the PE cells did not recover from swelling. The regulatory volume decrease in NPE cells was inhibited by increased bath K or pretreatment with quinine (1 mM). The presence of a bumetanide-sensitive mechanism capable of moving measurable amounts of solute and water, probably Na-K-2Cl cotransport, was demonstrated in the PE cells but absent in the NPE cells. Bumetanide produced a dose-dependent shrinkage of PE cells at concentrations as low as 1 microM. Isosmotically reducing bath Cl, Na, or K concentration caused a rapid shrinkage of PE cells that was bumetanide inhibitable. The asymmetry of transport properties in PE and NPE cells supports a functional syncytium model of aqueous humor formation (39) across the two layers of the ciliary epithelium wherein ion uptake from the blood is carried out by the PE cells and ion extrusion by the NPE cells. Gap-junction coupling between the cells allows the ions taken up by the PE cells to move into the NPE cells. Extrusion of Na by the Na-K pump across the aqueous facing (basolateral) membranes of the NPE cells, most likely accompanied by Cl, determines the formation of the aqueous humor.

摘要

利用分离出的色素上皮细胞(PE)和非色素上皮细胞(NPE)研究了牛睫状体上皮的溶质和水转运特性。通过在微量注射荧光素黄后证明成对的PE细胞和NPE细胞之间的染料扩散,表明这些细胞在功能上是耦合的。电子细胞大小测量用于在等渗扰动后以及在等渗条件下运输抑制后测量悬浮的分离的PE细胞和NPE细胞的细胞体积变化。当用NaCl进行渗透性收缩时,PE细胞表现出调节性体积增加,而在这些条件下NPE细胞未表现出调节性体积增加。相反,当受到渗透性肿胀时,NPE细胞表现出调节性体积减小,而PE细胞不能从肿胀中恢复。NPE细胞中的调节性体积减小被浴液中K增加或用奎宁(1 mM)预处理所抑制。在PE细胞中证明存在能够移动可测量量的溶质和水的布美他尼敏感机制,可能是Na-K-2Cl共转运,而在NPE细胞中不存在。布美他尼在低至1 microM的浓度下使PE细胞产生剂量依赖性收缩。等渗降低浴液中的Cl、Na或K浓度会导致PE细胞迅速收缩,这是布美他尼可抑制的。PE细胞和NPE细胞转运特性的不对称支持了房水形成的功能性合胞体模型(39),即跨睫状体上皮两层,其中PE细胞从血液中摄取离子,NPE细胞进行离子外排。细胞间的缝隙连接耦合允许PE细胞摄取的离子移动到NPE细胞中。NPE细胞通过Na-K泵跨面向房水的(基底外侧)膜排出Na,最可能伴随着Cl,决定了房水的形成。

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