Wilders Ronald
Department of Physiology, Academic Medical Center, University of Amsterdam, Meibergdreef 15, 1105 AZ Amsterdam, The Netherlands.
J Physiol. 2006 Oct 15;576(Pt 2):349-59. doi: 10.1113/jphysiol.2006.115840. Epub 2006 Jul 27.
Dynamic clamp is a collection of closely related techniques that have been employed in cardiac electrophysiology to provide direct answers to numerous research questions regarding basic cellular mechanisms of action potential formation, action potential transfer and action potential synchronization in health and disease. Building on traditional current clamp, dynamic clamp was initially used to create virtual gap junctions between isolated myocytes. More recent applications include the embedding of a real pacemaking myocyte in a simulated network of atrial or ventricular cells and the insertion of virtual ion channels, either simulated in real time or simultaneously recorded from an expression system, into the membrane of an isolated myocyte. These applications have proven that dynamic clamp, which is characterized by the real-time evaluation and injection of simulated membrane current, is a powerful tool in cardiac electrophysiology. Here, each of the three different experimental configurations used in cardiac electrophysiology is reviewed. Also, directions are given for the implementation of dynamic clamp in the cardiac electrophysiology laboratory. With the growing interest in the application of dynamic clamp in cardiac electrophysiology, it is anticipated that dynamic clamp will also prove to be a powerful tool in basic research on biological pacemakers and in identification of specific ion channels as targets for drug development.
动态钳是一系列密切相关的技术,已应用于心脏电生理学,以直接回答众多关于健康和疾病状态下动作电位形成、动作电位传递及动作电位同步的基本细胞机制的研究问题。基于传统的电流钳,动态钳最初用于在分离的心肌细胞之间创建虚拟缝隙连接。最近的应用包括将一个真正的起搏心肌细胞嵌入心房或心室细胞的模拟网络中,以及将实时模拟或从表达系统同步记录的虚拟离子通道插入分离心肌细胞的膜中。这些应用证明,以实时评估和注入模拟膜电流为特征的动态钳是心脏电生理学中的一种强大工具。在此,对心脏电生理学中使用的三种不同实验配置进行综述。同时,给出了在心脏电生理学实验室实施动态钳的指导。随着对动态钳在心脏电生理学中应用的兴趣日益增加,预计动态钳也将被证明是生物起搏器基础研究以及识别作为药物开发靶点的特定离子通道的强大工具。