DA1受体介导的大鼠肾皮质刷状缘膜小泡Na(+)-H+抗转运活性的调节。

A L Jadhav, Q Liu
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引用次数: 17

摘要

我们前期的研究表明,多巴胺(DA)在高钠摄入时调节肾脏钠(Na+)代谢中起重要作用,并且DA1受体参与急性容量扩张时的尿钠反应。研究还表明,除了肾脏血流动力学的改变外,外源性给药DA和DA1受体激动剂产生的利钠反应似乎是由于肾小管钠转运机制的改变。本研究旨在探讨DA1受体介导的大鼠肾管刷边界膜Na(+)-H+反转运活性的变化。1 μ m DA、SKF 82958、SKF 38393和非诺多巴胺分别抑制Na(+)-H+反港活性(以阿米洛胺敏感的Na+内流在BBMV中测量)37%、46%、33%和42%。DA1拮抗剂SCH 23390在单独给药时增加了抗转运活性,而当与激动剂一起给药时,它减弱了激动剂对抗转运蛋白的作用。DA2激动剂和拮抗剂不能影响抗转运活性。这些结果表明,DA和DA受体激动剂对肾皮质BBMV Na(+)-H+抗转运活性的抑制作用是由DA1受体介导的。
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DA1 receptor mediated regulation of Na(+)-H+ antiport activity in rat renal cortical brush border membrane vesicles.

Our previous studies indicate that dopamine (DA) plays an important role in regulating renal sodium (Na+) metabolism during high Na+ intake, and that DA1 receptors are involved in natriuretic response to acute volume expansion. It has also been shown that in addition to the changes in renal hemodynamics, the natriuretic response produced by exogenously administered DA and DA1 receptor agonists appears to be due to alterations in renal tubular sodium transport mechanisms. This study was designed to investigate the DA1 receptor-mediated changes in Na(+)-H+ antiport activity in tubular brush border membranes of rat kidney. The Na(+)-H+ antiport activity, measured as the amiloride-sensitive Na+ influx in BBMV, was inhibited by 37%, 46%, 33%, and 42% by 1 microM DA, SKF 82958, SKF 38393, and fenoldopam respectively. The DA1 antagonist SCH 23390 increased the antiport activity when given alone, while when administered with an agonist it attenuated the effects of the agonist on the antiporter. DA2 agonists and antagonists failed to affect the antiport activity. These results indicate that the inhibitory effects of DA and DA receptor agonists on Na(+)-H+ antiport activity in renal cortical BBMV were mediated by the DA1 receptors.

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