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蟾蜍膀胱上皮细胞膜特性的运输相关调节

Transport-related modulation of the membrane properties of toad urinary bladder epithelium.

作者信息

Lewis S A, Clausen C, Wills N K

机构信息

Department of Physiology, University of Texas, Medical Branch, Galveston 77550.

出版信息

Biochim Biophys Acta. 1991 Nov 18;1070(1):99-110. doi: 10.1016/0005-2736(91)90151-w.

Abstract

Impedance analysis and transepithelial electrical measurements were used to assess the effects of the apical membrane Na+ channel blocker amiloride and anion replacement on the apical and basolateral membrane conductances and areas of the toad urinary bladder (Bufo marinus). Mucosal amiloride addition decreased both apical and basolateral membrane conductances (Ga and Gbl, respectively) with no change in membrane capacitances (Ca and Cbl). Consequently, the specific conductances of these membranes decreased without significant changes in membrane area. Following amiloride removal, an increase was obtained in the steady-state rate of sodium transport compared to values before amiloride addition. This increase was independent of the initial transport rate, suggesting activation of a quiescent pool of apical sodium channels. Chloride replacement by acetate or gluconate had no significant effects on apical or basolateral membrane capacitances. The effects of these replacements on membrane conductances depended on the anion species. Gluconate (which induces cell shrinkage) decreased both membrane conductances. In contrast, acetate (which induces cell swelling) increased Ga and had no effect on Gbl. The increase in the apical membrane conductance was due to an increase in the amiloride-sensitive Na+ conductance of this membrane. In summary, mucosal amiloride addition or chloride replacements led to changes in membrane conductances without significant effects on net membrane areas.

摘要

采用阻抗分析和跨上皮电学测量方法,评估顶端膜钠离子通道阻滞剂氨氯吡咪及阴离子替代物对蟾蜍(海蟾蜍)膀胱顶端膜和基底外侧膜电导及面积的影响。添加黏膜氨氯吡咪会降低顶端膜和基底外侧膜的电导(分别为Ga和Gbl),而膜电容(Ca和Cbl)无变化。因此,这些膜的比电导降低,而膜面积无显著变化。去除氨氯吡咪后,与添加氨氯吡咪前的值相比,钠转运的稳态速率增加。这种增加与初始转运速率无关,提示顶端钠离子通道的静止池被激活。用醋酸盐或葡萄糖酸盐替代氯离子对顶端膜或基底外侧膜电容无显著影响。这些替代物对膜电导的影响取决于阴离子种类。葡萄糖酸盐(可诱导细胞收缩)降低了两种膜的电导。相反,醋酸盐(可诱导细胞肿胀)增加了Ga,而对Gbl无影响。顶端膜电导的增加是由于该膜对氨氯吡咪敏感的钠离子电导增加。总之,添加黏膜氨氯吡咪或替代氯离子会导致膜电导发生变化,而对膜净面积无显著影响。

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