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黏膜溶液成分变化对蟾蜍膀胱上皮电特性的影响。

Effects of changes in the composition of the mucosal solution on the electrical properties of the toad urinary bladder epithelium.

作者信息

Reuss L, Finn A L

出版信息

J Membr Biol. 1975;20(1-2):191-204. doi: 10.1007/BF01870636.

Abstract

By the use of microelectrode techniques, the potential profile and the electrical resistances of the cellular and shunt pathways across the toad urinary bladder epithelium were measured under control conditions and after exposing the mucosal side to solutions of low and high NaCl concentrations and osmolalities. The resistance of the shunt pathway increases at low NaCl concentration (even if the osmolality is kept constant), and decreases at high NaCl concentration (by a nonspecific osmotic mechanism). The inverse relationship between mucosal NaCl concentration and shunt resistance suggests a regulatory mechanism of net sodium transport by reduction of the passive blood-to-urine sodium flux at low urinary sodium concentrations. In addition, the transepithelial potential and the potentials at both cell borders fall in both low and high mucosal NaCl, and the magnitude of these changes is such that they cannot be explained by changes in the shunt pathway alone.

摘要

运用微电极技术,在对照条件下以及将黏膜侧暴露于低、高氯化钠浓度和渗透压的溶液后,测量了蟾蜍膀胱上皮细胞和旁路途径的电位分布及电阻。在低氯化钠浓度下(即使渗透压保持恒定),旁路途径的电阻增加,而在高氯化钠浓度下(通过非特异性渗透机制)电阻降低。黏膜氯化钠浓度与旁路电阻之间的反比关系表明,在低尿钠浓度时,通过减少被动的血 - 尿钠通量,存在一种钠净转运的调节机制。此外,在低和高黏膜氯化钠浓度下,跨上皮电位以及两个细胞边界处的电位均下降,且这些变化的幅度无法仅通过旁路途径的变化来解释。

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