Berecki Géza, Verkerk Arie O, van Ginneken Antoni C G, Wilders Ronald
Health Innovations Research Institute, RMIT University, Melbourne, VIC, Australia.
Methods Mol Biol. 2014;1183:309-26. doi: 10.1007/978-1-4939-1096-0_20.
Today, the patch-clamp technique is the main technique in electrophysiology to record action potentials or membrane current from isolated cells, using a patch pipette to gain electrical access to the cell. The common recording modes of the patch-clamp technique are current clamp and voltage clamp. In the current clamp mode, the current injected through the patch pipette is under control while the free-running membrane potential of the cell is recorded. Current clamp allows for measurements of action potentials that may either occur spontaneously or in response to an injected stimulus current. In voltage clamp mode, the membrane potential is held at a set level through a feedback circuit, which allows for the recording of the net membrane current at a given membrane potential.A less common configuration of the patch-clamp technique is the dynamic clamp. In this configuration, a specific non-predetermined membrane current can be added to or removed from the cell while it is in free-running current clamp mode. This current may be computed in real time, based on the recorded action potential of the cell, and injected into the cell. Instead of being computed, this current may also be recorded from a heterologous expression system such as a HEK-293 cell that is voltage-clamped by the free-running action potential of the cell ("dynamic action potential clamp"). Thus, one may directly test the effects of an additional or mutated membrane current, a synaptic current or a gap junctional current on the action potential of a patch-clamped cell. In the present chapter, we describe the dynamic clamp on the basis of its application in cardiac cellular electrophysiology.
如今,膜片钳技术是电生理学中用于记录分离细胞动作电位或膜电流的主要技术,它使用膜片吸管实现对细胞的电连接。膜片钳技术常见的记录模式是电流钳和电压钳。在电流钳模式下,通过膜片吸管注入的电流受到控制,同时记录细胞的自主膜电位。电流钳可用于测量可能自发出现或响应注入刺激电流而产生的动作电位。在电压钳模式下,膜电位通过反馈电路维持在设定水平,这使得能够记录给定膜电位下的净膜电流。膜片钳技术一种不太常见的配置是动态钳。在这种配置中,当细胞处于自主电流钳模式时,可以向细胞添加或从细胞去除特定的非预先确定的膜电流。该电流可以基于记录的细胞动作电位实时计算,并注入细胞。这种电流也可以不是通过计算得到,而是从诸如HEK - 293细胞这样的异源表达系统记录,该系统由细胞的自主动作电位进行电压钳制(“动态动作电位钳”)。因此,人们可以直接测试额外的或突变的膜电流、突触电流或缝隙连接电流对膜片钳制细胞动作电位的影响。在本章中,我们将基于其在心脏细胞电生理学中的应用来描述动态钳。