Suppr超能文献

茚达立酮(MK - 196)对体内微灌注研究的髓袢升支粗段和远曲小管阳离子转运的对映体效应。

Effects of enantiomers of indacrinone (MK-196) on cation transport by the loop of Henle and distal tubule studied by microperfusion in vivo.

作者信息

Field M J, Fowler N, Giebisch G H

出版信息

J Pharmacol Exp Ther. 1984 Jul;230(1):62-8.

PMID:6747832
Abstract

We have studied the effects of the two enantiomeric forms of the diuretic agent, indacrinone (MK-196), upon transport of sodium and potassium by the loop of Henle and distal tubule, using the technique of continuous microperfusion, in vivo, of individual tubular segments in the rat kidney. In the loop of Henle, both the (+)-and (-)-enantiomers, when included in the tubular perfusion fluid at a concentration of 5 X 10(-4) M, inhibited the reabsorption of sodium and potassium, but the (-)-enantiomer was significantly more effective in this regard than the (+)-enantiomer. Although loop sodium reabsorption was incompletely blocked by either form of the drug, potassium reabsorption by the loop was on average abolished by (-)-MK-196 and was actually converted in some experiments to an appreciable net secretory flux. In the distal tubule, both enantiomers inhibited net sodium reabsorption, but neither affected the control level of potassium secretion. These experiments provide direct evidence that the natriuretic effect of this agent is due to actions on sodium transporting sites in the loop of Henle and distal tubule. Furthermore, because potassium transport was affected only in the loop, they suggest that the nature of the cellular cation transport mechanism influenced by the drug may be different at the two nephron sites studied.

摘要

我们利用对大鼠肾脏单个肾小管节段进行体内连续微量灌注的技术,研究了利尿剂茚达立酮(MK - 196)的两种对映体形式对亨利氏袢和远曲小管钠和钾转运的影响。在亨利氏袢中,当(+)-和(-)-对映体以5×10⁻⁴ M的浓度包含在肾小管灌注液中时,两者均抑制钠和钾的重吸收,但在这方面(-)-对映体比(+)-对映体显著更有效。尽管两种形式的药物都未完全阻断袢部钠的重吸收,但(-)-MK - 196平均消除了袢部钾的重吸收,并且在一些实验中实际上使其转变为可观的净分泌通量。在远曲小管中,两种对映体均抑制钠的净重吸收,但均未影响钾分泌的对照水平。这些实验提供了直接证据,表明该药物的利钠作用是由于其对亨利氏袢和远曲小管中钠转运位点的作用。此外,由于仅在亨利氏袢中钾转运受到影响,它们表明在所研究的两个肾单位位点,受该药物影响的细胞阳离子转运机制的性质可能不同。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验