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鳚科硬骨鱼奇异吉利鳚膀胱的离子转运

Ion transport by the urinary bladder of the gobiid teleost, Gillichthys mirabilis.

作者信息

Loretz C A, Bern H A

出版信息

Am J Physiol. 1980 Nov;239(5):R415-23. doi: 10.1152/ajpregu.1980.239.5.R415.

Abstract

Transport characteristics of the two epithelial cell types lining the urinary bladder of the goby can be studied in Ussing-type chambers. Cuboidal cell regions from seawater- and 5% seawater-acclimated fish exhibit little mucosal-to-serosal Na or Cl transport. In contrast, columnar cell regions from both seawater- and 5% seawater-acclimated fish transport substantial amounts of Na and Cl. Whereas all electrolyte transport in 5% seawater-acclimated fish is electrically silent (neutral), columnar cell regions from seawater-acclimated fish possess an electrogenic Na transport component in addition to the neutral transport. Columnar cell regions also possess a Cl/Cl exchange diffusion mechanism. Neutral Na and Cl transport are not altered in response to external salinity; electrogenic transport varies both with acclimation to salinity and season. Reabsorption of Na and Cl from urine reduces excretory losses of these ions from 5% seawater-acclimated fish and drives urinary bladder water reabsorption in seawater-acclimated fish.

摘要

可以在尤斯灌流室中研究虾虎鱼膀胱内衬的两种上皮细胞类型的转运特性。来自适应海水和5%海水环境的鱼类的立方体细胞区域,黏膜到浆膜的钠或氯转运很少。相比之下,来自适应海水和5%海水环境的鱼类的柱状细胞区域能转运大量的钠和氯。在适应5%海水环境的鱼类中,所有电解质转运都是电沉默的(中性的),而来自适应海水环境的鱼类的柱状细胞区域除了中性转运外,还具有一个电生性钠转运成分。柱状细胞区域还具有氯/氯交换扩散机制。中性钠和氯转运不会因外部盐度而改变;电生性转运随盐度适应和季节而变化。从尿液中重吸收钠和氯可减少适应5%海水环境的鱼类这些离子的排泄损失,并促使适应海水环境的鱼类膀胱重吸收水分。

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