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牛磺酸对大鼠背根神经节神经元电压敏感性钠通道的调节作用。

Taurine-induced modulation of voltage-sensitive Na+ channels in rat dorsal root ganglion neurons.

作者信息

Yu Shan-Shan, Yu Kuai, Gu Yan, Ruan Di-Yun

机构信息

School of Life Science, University of Science and Technology of China, Hefei, Anhui 230027, PR China.

出版信息

Brain Res Bull. 2005 Aug 15;66(3):259-67. doi: 10.1016/j.brainresbull.2005.05.012.

Abstract

The physiological role of taurine, an abundant free amino acid in the neural system, is still poorly understood. The aim of this study was to investigate its effect on TTX-sensitive (TTX-S) and TTX-resistant (TTX-R) Na+ currents in enzymatically dissociated neurons from rat dorsal root ganglion (DRG) with conventional whole-cell recording manner under voltage-clamp conditions. A TTX-S Na+ current was recorded preferentially from large DRG neurons and a TTX-R Na+ current preferentially from small ones. For TTX-S Na+ channel, taurine of the concentration > or = 10 mM shifted the activation curve in the depolarizing direction and the inactivation curve in the hyperpolarizing direction. There was no change in the activation curve for TTX-R Na+ channel and the inactivation curve was shifted in the hyperpolarizing direction slightly in the presence of taurine > or = 20 mM. When the recovery kinetics was examined, the presence of taurine resulted in a slower recovery from inactivation of TTX-S currents and no change of TTX-R ones. All the effects of taurine were weakly concentration-dependent and partly recovered quite slowly after washout. Our data indicate that taurine alters the properties of Na+ currents in intact DRG neurons. These may contribute to the understanding of taurine as a natural neuroprotectant and the potential of taurine as a useful medicine for the treatment of sensory neuropathies.

摘要

牛磺酸是神经系统中一种丰富的游离氨基酸,其生理作用仍知之甚少。本研究旨在采用传统的全细胞记录方式,在电压钳条件下,研究其对大鼠背根神经节(DRG)酶解神经元中TTX敏感型(TTX-S)和TTX耐药型(TTX-R)Na+电流的影响。TTX-S Na+电流优先从大型DRG神经元记录到,而TTX-R Na+电流优先从小型DRG神经元记录到。对于TTX-S Na+通道,浓度≥10 mM的牛磺酸使激活曲线向去极化方向移动,使失活曲线向超极化方向移动。对于TTX-R Na+通道,激活曲线没有变化,在≥20 mM牛磺酸存在下,失活曲线略微向超极化方向移动。当检测恢复动力学时,牛磺酸的存在导致TTX-S电流失活后的恢复变慢,而TTX-R电流没有变化。牛磺酸的所有作用都呈弱浓度依赖性,洗脱后部分恢复相当缓慢。我们的数据表明,牛磺酸改变了完整DRG神经元中Na+电流的特性。这些可能有助于理解牛磺酸作为一种天然神经保护剂的作用,以及牛磺酸作为治疗感觉神经病变的有用药物的潜力。

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