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盐皮质激素对皮质集合管基底外侧膜转运特性的影响。

Effects of mineralocorticoids on transport properties of cortical collecting duct basolateral membrane.

作者信息

Sansom S C, O'Neil R G

出版信息

Am J Physiol. 1986 Oct;251(4 Pt 2):F743-57. doi: 10.1152/ajprenal.1986.251.4.F743.

Abstract

The effects of long-term mineralocorticoid (deoxycorticosterone acetate, DOCA) elevation for 9-16 days on the active and passive transport properties of the basolateral cell membrane of rabbit cortical collecting ducts were assessed using microelectrode techniques. It was found that both the transepithelial membrane voltage (Vte) and basolateral membrane voltage (Vb) hyperpolarized and the basolateral membrane conductance (Gb) increased on chronic elevation of mineralocorticoid levels. Barium (5 mM) addition to the bathing solution effectively blocked an induced K+ current across the basolateral cell membrane without an immediate affect on the other barriers. Therefore Ba2+ was used to quantitate the basolateral cell membrane K+ conductance (GbK). It was found that GbK increased from 1.0 +/- 0.2 mS X cm-2 (controls) to 3.7 +/- 1.0 mS X cm-2 in DOCA-treated animals. The basolateral membrane electrogenic pump current (Ibact) was quantitated from the change in the basolateral membrane equivalent emf on addition of either ouabain (0.1 mM) to the bath or of amiloride (50 microM) to the perfusate. There was a large increase in Ibact from 32 microA X cm-2 in controls to 195 microA X cm-2 in the DOCA-treated group. In addition, the estimated Na+-to-K+ coupling ratio of the Na+ pump was observed to increase from 1.6 to 1.0 in the control group to 3.2 to 1.0 in the DOCA-treated group. The estimated basolateral membrane passive K+ current (IbK) increased from a value that was not significantly different from 0 in controls to approximately -45 microA X cm-2 (from bath to cell) in the DOCA-treated group. These findings support a model whereby mineralocorticoids induce an increase in electrogenic Na+ pump activity in response to chronically elevated rates of Na+ transport. This results in a hyperpolarization of Vb, which is well above EbK, thereby resulting in a net driving force for K+ uptake into the cell, bringing about an increased rate of K+ secretion.

摘要

采用微电极技术评估了长期(9 - 16天)升高盐皮质激素(醋酸脱氧皮质酮,DOCA)对兔皮质集合管基底外侧细胞膜主动和被动转运特性的影响。结果发现,长期升高盐皮质激素水平时,跨上皮膜电压(Vte)和基底外侧膜电压(Vb)均发生超极化,且基底外侧膜电导(Gb)增加。向浴液中添加钡(5 mM)可有效阻断诱导的跨基底外侧细胞膜的钾电流,且对其他屏障无即时影响。因此,用Ba2+来定量基底外侧细胞膜钾电导(GbK)。结果发现,在DOCA处理的动物中,GbK从1.0±0.2 mS·cm-2(对照组)增加到3.7±1.0 mS·cm-2。通过向浴液中添加哇巴因(0.1 mM)或向灌流液中添加氨氯吡脒(50 μM)后基底外侧膜等效电动势的变化来定量基底外侧膜生电泵电流(Ibact)。Ibact有大幅增加,从对照组的32 μA·cm-2增加到DOCA处理组的195 μA·cm-2。此外,观察到钠泵的估计钠钾偶联比从对照组的1.6∶1.0增加到DOCA处理组的3.2∶1.0。估计的基底外侧膜被动钾电流(IbK)从对照组中与0无显著差异的值增加到DOCA处理组中约-45 μA·cm-2(从浴液到细胞)。这些发现支持了一种模型,即盐皮质激素在钠离子转运长期升高时诱导生电钠泵活性增加。这导致Vb超极化,其远高于钾平衡电位(EbK),从而产生钾离子摄取进入细胞的净驱动力,导致钾分泌速率增加。

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