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托哌酮对七种不同电压依赖性钠通道亚型作用的比较研究。

A comparative study of the action of tolperisone on seven different voltage dependent sodium channel isoforms.

作者信息

Hofer Doris, Lohberger Birgit, Steinecker Bibiane, Schmidt Kurt, Quasthoff Stefan, Schreibmayer Wolfgang

机构信息

Molecular Physiology Laboratory, Institute of Biophysics, Center for Physiological Medicine, Medical University of Graz, Harrachgasse 21/4, A-8010 Graz, Austria.

出版信息

Eur J Pharmacol. 2006 May 24;538(1-3):5-14. doi: 10.1016/j.ejphar.2006.03.034. Epub 2006 Mar 21.

Abstract

The specific, acute interaction of tolperisone, an agent used as a muscle relaxant and for the treatment of chronic pain conditions, with the Na(v1.2), Na(v1.3), Na(v1.4), Na(v1.5), Na(v1.6), Na(v1.7), and Na(v1.8) isoforms of voltage dependent sodium channels was investigated and compared to that of lidocaine. Voltage dependent sodium channels were expressed in the Xenopus laevis oocyte expression system and sodium currents were recorded with the two electrode voltage clamp technique. Cumulative dose response relations revealed marked differences in IC(50) values between the two drugs on identical isoforms, as well as between isoforms. A detailed kinetic analysis uncovered that tolperisone as well as lidocaine exhibited their blocking action not only via state dependent association/dissociation with voltage dependent sodium channels, but a considerable fraction of inhibition is tonic, i.e. permanent and basic in nature. Voltage dependent activation was affected to a minor extent only. A shift in steady-state inactivation to more negative potentials could be observed for most drug/isoform combinations. The contribution of this shift to overall block was, however, small at drug concentrations resulting in considerable overall block. Recovery from inactivation was affected notably by both drugs. Lidocaine application led to a pronounced prolongation of the time constant of the fast recovery process for the Na(v1.3), Na(v1.5), and Na(v1.7) isoforms, indicating common structural properties in the local anesthetic receptor site of these three proteins. Interestingly, this characteristic drug action was not observed for tolperisone.

摘要

托哌酮是一种用于肌肉松弛和治疗慢性疼痛疾病的药物,研究了它与电压依赖性钠通道的Na(v1.2)、Na(v1.3)、Na(v1.4)、Na(v1.5)、Na(v1.6)、Na(v1.7)和Na(v1.8)亚型的特异性急性相互作用,并与利多卡因进行了比较。电压依赖性钠通道在非洲爪蟾卵母细胞表达系统中表达,并用双电极电压钳技术记录钠电流。累积剂量反应关系显示,两种药物在相同亚型以及不同亚型之间的IC(50)值存在显著差异。详细的动力学分析发现,托哌酮和利多卡因不仅通过与电压依赖性钠通道的状态依赖性结合/解离表现出阻断作用,而且相当一部分抑制作用是持续性的,即本质上是永久性和基础性的。电压依赖性激活仅受到轻微影响。对于大多数药物/亚型组合,可以观察到稳态失活向更负电位的偏移。然而,在导致相当程度总体阻断的药物浓度下,这种偏移对总体阻断的贡献很小。两种药物对失活恢复均有显著影响。应用利多卡因导致Na(v1.3)、Na(v1.5)和Na(v1.7)亚型的快速恢复过程的时间常数明显延长,表明这三种蛋白质的局部麻醉药受体位点具有共同的结构特性。有趣的是,托哌酮未观察到这种特征性的药物作用。

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