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激动剂诱导肾小球内皮细胞中非选择性离子电流的激活。

Agonist-induced activation of a non-selective ion current in glomerular endothelial cells.

作者信息

Pavenstädt H, Henger A, Briner V, Fischer K G, Huber-Lang M, Schollmeyer P, Greger R

机构信息

Department of Nephrology, Albert-Ludwigs-Universität Freiburg, Germany.

出版信息

Kidney Int. 1997 Jul;52(1):157-64. doi: 10.1038/ki.1997.315.

Abstract

The control of intracellular calcium activity ([Ca2+]i) and membrane voltage (Vm) play an important role in regulating functions of glomerular endothelial cells (GEC). We investigated the effect of extracellular ATP on the intracellular [Ca2+]i, Vm and ion conductances in GEC. ATP (100 mumol/liter) induced a rapid increase of [Ca2+]i in GEC from 20 +/- 6 to 442 +/- 84 nmol/liter, which was followed by a sustained Ca2+ plateau of 112 +/- 29 nmol/liter. In a bath solution with a low extracellular Ca2+ concentration the ATP-induced [Ca2+]i peak was still present, but the [Ca2+]i plateau was completely prevented. In 186 experiments with the patch clamp technique the addition of ATP (1 to 100 mumol/liter) to GEC induced a transient small hyperpolarization, which was followed by a depolarization. During the ATP-induced depolarization an increase of the whole cell conductance was found. The Ca2+ ionophore A23187 (10 mumol/liter) mimicked the effect of ATP on Vm. Reduction of the extracellular Ca2+ to 1 mumol/liter itself depolarized GEC reversibly from -88 +/- 2 to -60 +/- 12 mV and increased the ATP-induced depolarization to -18 +/- 3 mV. In the absence of Na+ in the bathing solution (replacement by NMDG+) ATP induced only an attenuated depolarization and no inward current was activated. Flufenamate (100 mumol/liter), a blocker of non-selective ion channels inhibited the ATP-induced depolarization of Vm significantly by 58 +/- 13%, whereas nicardipine (10 mumol/liter) or amiloride (10 mumol/liter) had no effect. Our data indicate that the resting Vm of GEC cells is almost completely dominated by K+ conductances and that ATP activates a Ca2+ dependent non-selective ion conductance in GEC.

摘要

细胞内钙活性([Ca2+]i)和膜电压(Vm)的调控在肾小球内皮细胞(GEC)功能调节中发挥着重要作用。我们研究了细胞外ATP对GEC细胞内[Ca2+]i、Vm和离子电导的影响。ATP(100 μmol/升)可使GEC细胞内[Ca2+]i迅速从20±6 nmol/升增加至442±84 nmol/升,随后出现112±29 nmol/升的持续钙平台期。在细胞外钙浓度较低的浴液中,ATP诱导的[Ca2+]i峰值依然存在,但钙平台期完全被阻止。在186次采用膜片钳技术的实验中,向GEC添加ATP(1至100 μmol/升)会诱导短暂的小幅超极化,随后出现去极化。在ATP诱导的去极化过程中,发现全细胞电导增加。钙离子载体A23187(10 μmol/升)模拟了ATP对Vm的作用。将细胞外钙降至1 μmol/升本身可使GEC可逆地去极化,从 -88±2 mV变为 -60±12 mV,并使ATP诱导的去极化增加至 -18±3 mV。在浴液中无Na+(用NMDG+替代)时,ATP仅诱导减弱的去极化,且未激活内向电流。氟灭酸(flufenamate,100 μmol/升),一种非选择性离子通道阻滞剂,可显著抑制ATP诱导的Vm去极化,抑制率为58±13%,而硝苯地平(10 μmol/升)或阿米洛利(10 μmol/升)则无作用。我们的数据表明,GEC细胞的静息Vm几乎完全由钾电导主导,且ATP可激活GEC中一种钙依赖性非选择性离子电导。

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