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布比卡因对人TREK-1通道的抑制作用。

Inhibition of human TREK-1 channels by bupivacaine.

作者信息

Punke Mark A, Licher Thomas, Pongs Olaf, Friederich Patrick

机构信息

*Department of Anesthesiology, University Hospital Hamburg-Eppendorf; and †Institute of Neural Signal Transduction, University of Hamburg, Hamburg, Germany.

出版信息

Anesth Analg. 2003 Jun;96(6):1665-1673. doi: 10.1213/01.ANE.0000062524.90936.1F.

Abstract

UNLABELLED

Human TWIK-related K(+) channels (TREK-1) stabilize the membrane potential (mp) of neurons and have a major role in the regulation of membrane excitability. In view of their physiological significance, interaction of bupivacaine with TREK-1 channels may be clinically important. Our aim was to characterize with the patch-clamp technique the properties of human TREK-1 channels and the effects of bupivacaine on these channels expressed in Chinese hamster ovary (CHO) cells. Transfection of CHO cells with TREK-1 channels (CHO(TREK-1) cells) hyperpolarized the mp from -33 +/- 13 to -78 +/- 4 mV. The channels were stimulated by intracellular acidosis. Inhibition of TREK-1 channels by bupivacaine was reversible, concentration-dependent, voltage-independent, and increased with intracellular acidosis. Bupivacaine depolarized the mp of CHO(TREK-1) cells in a reversible and concentration-dependent manner. Concentrations for channel inhibition and membrane depolarization were not linearly related (50% inhibitory concentration value for channel inhibition 370 +/- 20 micro M, Hill coefficient 1.8 +/- 0.1, n = 51; 50% inhibitory concentration value for membrane depolarization 856 +/- 14 micro M, Hill coefficient 2.4 +/- 0.1, mean +/- SEM, n = 27). The results suggest that protonated bupivacaine elicits the observed effects via a site of interaction accessible from the intracellular space. Inhibition of TREK-1 channels and consecutive depolarization of the cell membrane by bupivacaine may contribute to blockade of neuronal signal conduction during regional anesthesia.

IMPLICATIONS

The interaction of bupivacaine with human TREK-1 channels was studied with the patch-clamp technique. Bupivacaine inhibited TREK-1 channels and depolarized the membrane potential of cells expressing TREK-1 channels in a concentration-dependent and reversible manner. Both effects may contribute to conductance block caused by bupivacaine.

摘要

未标记

人 TWIK 相关钾通道(TREK - 1)可稳定神经元的膜电位(mp),在调节膜兴奋性方面起主要作用。鉴于其生理意义,布比卡因与 TREK - 1 通道的相互作用可能具有临床重要性。我们的目的是运用膜片钳技术表征人 TREK - 1 通道的特性以及布比卡因对在中国仓鼠卵巢(CHO)细胞中表达的这些通道的影响。用 TREK - 1 通道转染 CHO 细胞(CHO(TREK - 1)细胞)使膜电位从 -33±13 mV 超极化至 -78±4 mV。这些通道受到细胞内酸中毒的刺激。布比卡因对 TREK - 1 通道的抑制是可逆的、浓度依赖性的、电压非依赖性的,并且随着细胞内酸中毒而增强。布比卡因以可逆且浓度依赖性的方式使 CHO(TREK - 1)细胞的膜电位去极化。通道抑制和膜去极化的浓度并非线性相关(通道抑制的 50%抑制浓度值为 370±20 μM,希尔系数 1.8±0.1,n = 51;膜去极化的 50%抑制浓度值为 856±14 μM,希尔系数 2.4±0.1,平均值±标准误,n = 27)。结果表明,质子化的布比卡因通过细胞内空间可及的相互作用位点引发观察到的效应。布比卡因对 TREK - 1 通道的抑制以及随后细胞膜的去极化可能有助于区域麻醉期间神经元信号传导的阻滞。

启示

运用膜片钳技术研究了布比卡因与人 TREK - 1 通道的相互作用。布比卡因抑制 TREK - 1 通道并以浓度依赖性和可逆的方式使表达 TREK - 1 通道的细胞的膜电位去极化。这两种效应可能都有助于布比卡因引起的传导阻滞。

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