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左、右心室希氏-浦肯野传导网络的解剖学和分子映射。

Anatomical and molecular mapping of the left and right ventricular His-Purkinje conduction networks.

机构信息

Cardiovascular Medicine, University of Manchester, UK.

出版信息

J Mol Cell Cardiol. 2011 Nov;51(5):689-701. doi: 10.1016/j.yjmcc.2011.05.020. Epub 2011 Jun 29.

Abstract

Functioning of the cardiac conduction system depends critically on its structure and its complement of ion channels. Therefore, the aim of this study was to document both the structure and ion channel expression of the left and right ventricular His-Purkinje networks, as we have previously done for the sinoatrial and atrioventricular nodes. A three-dimensional (3D) anatomical computer model of the His-Purkinje network of the rabbit heart was constructed after staining the network by immunoenzyme labelling of a marker protein, middle neurofilament. The bundle of His is a ribbon-like structure and the architecture of the His-Purkinje network differs between the left and right ventricles. The 3D model is able to explain the breakthrough points of the action potential on the ventricular epicardium during sinus rhythm. Using quantitative PCR, the expression levels of the major ion channels were measured in the free running left and right Purkinje fibres of the rabbit heart. Expression of ion channels differs from that of the working myocardium and can explain the specialised electrical activity of the Purkinje fibres as suggested by computer simulations; the expression profile of the left Purkinje fibres is more specialised than that of the right Purkinje fibres. The structure and ion channel expression of the Purkinje fibres are highly specialised and tailored to the functioning of the system. The His-Purkinje network in the left ventricle is more developed than that in the right ventricle and this may explain its greater clinical importance.

摘要

心脏传导系统的功能取决于其结构及其离子通道的组成。因此,本研究的目的是记录左、右心室希氏-浦肯野网络的结构和离子通道表达,就像我们之前对窦房结和房室结所做的那样。通过免疫酶标记标记蛋白中间神经丝对网络进行染色后,构建了兔心希氏-浦肯野网络的三维(3D)解剖计算机模型。希氏束是一种带状结构,左、右心室希氏-浦肯野网络的结构不同。该 3D 模型能够解释窦性节律下心室心外膜上动作电位的突破点。使用定量 PCR 测量了兔心自由运行的左、右浦肯野纤维中主要离子通道的表达水平。离子通道的表达与工作心肌不同,这可以解释计算机模拟所提示的浦肯野纤维的特殊电活动;左浦肯野纤维的表达谱比右浦肯野纤维更具特异性。浦肯野纤维的结构和离子通道表达高度专业化,适应系统的功能。左心室的希氏-浦肯野网络比右心室更发达,这可能解释了其更大的临床重要性。

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