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动态钳位技术:研究钾通道功能的强大工具包。

The Dynamic Clamp Technique: A Robust Toolkit for Investigating Potassium Channel Function.

机构信息

Department of Electrical, Electronic and Information Engineering 'Guglielmo Marconi', University of Bologna, Cesena, Italy.

Department of Biotechnology and Biosciences, University of Milano-Bicocca, Milan, Italy.

出版信息

Methods Mol Biol. 2024;2796:211-227. doi: 10.1007/978-1-0716-3818-7_13.

Abstract

The dynamic clamp technique has emerged as a powerful tool in the field of cardiac electrophysiology, enabling researchers to investigate the intricate dynamics of ion currents in cardiac cells. Potassium channels play a critical role in the functioning of cardiac cells and the overall electrical stability of the heart. This chapter provides a comprehensive overview of the methods and applications of dynamic clamp in the study of key potassium currents in cardiac cells. A step-by-step guide is presented, detailing the experimental setup and protocols required for implementing the dynamic clamp technique in cardiac cell studies. Special attention is given to the design and construction of a dynamic clamp setup with Real Time eXperimental Interface, configurations, and the incorporation of mathematical models to mimic ion channel behavior. The chapter's core focuses on applying dynamic clamp to elucidate the properties of various potassium channels in cardiac cells. It discusses how dynamic clamp can be used to investigate channel kinetics, voltage-dependent properties, and the impact of different potassium channel subtypes on cardiac electrophysiology. The chapter will also include examples of specific dynamic clamp experiments that studied potassium currents or their applications in cardiac cells.

摘要

动态钳位技术在心脏电生理学领域已经成为一种强大的工具,使研究人员能够研究心脏细胞中离子电流的复杂动力学。钾通道在心脏细胞的功能和心脏的整体电稳定性中起着关键作用。本章全面概述了动态钳位在心脏细胞中关键钾电流研究中的方法和应用。提供了一个详细的实验设置和协议指南,介绍了在心脏细胞研究中实施动态钳位技术所需的实验设置和协议。特别关注使用实时实验接口设计和构建动态钳位设置、配置以及整合数学模型来模拟离子通道行为。本章的核心重点是应用动态钳位来阐明心脏细胞中各种钾通道的特性。它讨论了如何使用动态钳位来研究通道动力学、电压依赖性特性以及不同钾通道亚型对心脏电生理学的影响。该章还将包括研究钾电流或其在心脏细胞中的应用的具体动态钳位实验的例子。

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