Dun Wen, Boyden Penelope A
Department of Pharmacology, Center for Molecular Therapeutics, Columbia University, New York, NY, USA.
J Mol Cell Cardiol. 2008 Nov;45(5):617-24. doi: 10.1016/j.yjmcc.2008.08.001. Epub 2008 Aug 8.
Cardiac Purkinje fibers, due to their unique anatomical location, cell structure and electrophysiologic characteristics, play an important role in cardiac conduction and arrhythmogenesis. Purkinje cell action potentials are longer than their ventricular counterpart, and display two levels of resting potential. Purkinje cells provide for rapid propagation of the cardiac impulse to ventricular cells and have pacemaker and triggered activity, which differs from ventricular cells. Additionally, a unique intracellular Ca2+ release coordination has been revealed recently for the normal Purkinje cell. However, since the isolation of single Purkinje cells is difficult, particularly in small animals, research using Purkinje cells has been restricted. This review concentrates on comparison of Purkinje and ventricular cells in the morphology of the action potential, ionic channel function and molecular determinants by summarizing our present day knowledge of Purkinje cells.
心脏浦肯野纤维因其独特的解剖位置、细胞结构和电生理特性,在心脏传导和心律失常的发生中起着重要作用。浦肯野细胞动作电位比心室细胞的动作电位长,并表现出两个静息电位水平。浦肯野细胞使心脏冲动快速传播至心室细胞,并具有起搏和触发活动,这与心室细胞不同。此外,最近发现正常浦肯野细胞存在独特的细胞内Ca2+释放协调机制。然而,由于分离单个浦肯野细胞很困难,尤其是在小动物中,因此使用浦肯野细胞的研究受到了限制。本综述通过总结我们目前对浦肯野细胞的认识,着重比较浦肯野细胞和心室细胞在动作电位形态、离子通道功能和分子决定因素方面的差异。