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布美他尼对美西钝口螈胆囊氯化钠转运的抑制作用。

Bumetanide inhibition of NaCl transport by Necturus gallbladder.

作者信息

Larson M, Spring K R

出版信息

J Membr Biol. 1983;74(2):123-9. doi: 10.1007/BF01870501.

Abstract

Salt transport by the Necturus gallbladder epithelium is the result of the coupled entry of NaCl into the cells across the apical membrane and the active transport of Na out of the cells across the basolateral membrane. The NaCl entry step was studied by measuring the rate of cell volume increase accompanying ouabain inhibition of the Na--K-ATPase in the basolateral membrane. When bumetanide, a diuretic analog of furosemide, was added to the mucosal bathing solution it reversibly blocked the entry of NaCl into the cells and abolished fluid transport. A dose-response relationship showed half-maximal inhibition of NaCl entry at a bumetanide concentration of 10(-9) M; complete inhibition of coupled NaCl movement occurred with as little as 10(-7) M bumetanide. Partial substitution of Na or Cl in the mucosal solution failed to demonstrate competition between bumetanide and either of the ions. The drug was also effective in blocking NaCl entry in the absence of ouabain; addition of the diuretic to the mucosal bathing solution resulted in prompt cell shrinkage and a decrease in intracellular NaCl. Cell volume decrease followed bumetanide addition to the mucosal bath because NaCl entry was blocked but active Na transport continued for several minutes until the intracellular Na transport pool was depleted.

摘要

美西螈胆囊上皮的盐转运是氯化钠通过顶膜协同进入细胞以及钠通过基底外侧膜主动转运出细胞的结果。通过测量哇巴因抑制基底外侧膜上的钠钾ATP酶时细胞体积增加的速率来研究氯化钠进入步骤。当将布美他尼(速尿的一种利尿类似物)添加到黏膜浴液中时,它可逆地阻断了氯化钠进入细胞,并消除了液体转运。剂量反应关系表明,在布美他尼浓度为10^(-9) M时,氯化钠进入受到半数最大抑制;仅10^(-7) M的布美他尼就能完全抑制氯化钠的协同转运。在黏膜溶液中部分替代钠或氯未能证明布美他尼与任何一种离子之间存在竞争。该药物在没有哇巴因的情况下也能有效阻断氯化钠进入;将利尿剂添加到黏膜浴液中会导致细胞迅速收缩和细胞内氯化钠减少。在黏膜浴中加入布美他尼后细胞体积减小,因为氯化钠进入被阻断,但钠的主动转运持续了几分钟,直到细胞内钠转运池耗尽。

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