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使用自动膜片钳电生理学对钠通道抑制剂作用机制的化合物特异性、浓度无关生物物理特性进行表征。

Characterization of Compound-Specific, Concentration-Independent Biophysical Properties of Sodium Channel Inhibitor Mechanism of Action Using Automated Patch-Clamp Electrophysiology.

作者信息

Pesti Krisztina, Földi Mátyás C, Zboray Katalin, Toth Adam V, Lukacs Peter, Mike Arpad

机构信息

Department of Biochemistry, ELTE Eötvös Loránd University, Budapest, Hungary.

School of Ph.D. Studies, Semmelweis University, Budapest, Hungary.

出版信息

Front Pharmacol. 2021 Aug 23;12:738460. doi: 10.3389/fphar.2021.738460. eCollection 2021.

Abstract

We have developed an automated patch-clamp protocol that allows high information content screening of sodium channel inhibitor compounds. We have observed that individual compounds had their specific signature patterns of inhibition, which were manifested irrespective of the concentration. Our aim in this study was to quantify these properties. Primary biophysical data, such as onset rate, the shift of the half inactivation voltage, or the delay of recovery from inactivation, are concentration-dependent. We wanted to derive compound-specific properties, therefore, we had to neutralize the effect of concentration. This study describes how this is done, and shows how compound-specific properties reflect the mechanism of action, including binding dynamics, cooperativity, and interaction with the membrane phase. We illustrate the method using four well-known sodium channel inhibitor compounds, riluzole, lidocaine, benzocaine, and bupivacaine. Compound-specific biophysical properties may also serve as a basis for deriving parameters for kinetic modeling of drug action. We discuss how knowledge about the mechanism of action may help to predict the frequency-dependence of individual compounds, as well as their potential persistent current component selectivity. The analysis method described in this study, together with the experimental protocol described in the accompanying paper, allows screening for inhibitor compounds with specific kinetic properties, or with specific mechanisms of inhibition.

摘要

我们开发了一种自动化膜片钳技术方案,可对钠通道抑制剂化合物进行高信息量筛选。我们观察到,单个化合物具有其特定的抑制特征模式,且该模式与浓度无关。本研究的目的是量化这些特性。诸如起始速率、半失活电压的偏移或失活恢复延迟等主要生物物理数据是浓度依赖性的。因此,我们想要得出化合物特异性特性,就必须消除浓度的影响。本研究描述了如何做到这一点,并展示了化合物特异性特性如何反映作用机制,包括结合动力学、协同性以及与膜相的相互作用。我们使用四种著名的钠通道抑制剂化合物利鲁唑、利多卡因、苯佐卡因和布比卡因来说明该方法。化合物特异性生物物理特性也可作为推导药物作用动力学模型参数的基础。我们讨论了关于作用机制的知识如何有助于预测单个化合物的频率依赖性及其潜在的持续电流成分选择性。本研究中描述的分析方法,连同随附论文中描述的实验方案,可用于筛选具有特定动力学特性或特定抑制机制的抑制剂化合物。

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