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连接蛋白40基因敲除小鼠右束支的高分辨率光学映射揭示了特殊传导系统中的缓慢传导。

High-resolution optical mapping of the right bundle branch in connexin40 knockout mice reveals slow conduction in the specialized conduction system.

作者信息

Tamaddon H S, Vaidya D, Simon A M, Paul D L, Jalife J, Morley G E

机构信息

Department of Pharmacology, SUNY Upstate Medical University, Syracuse, NY, USA.

出版信息

Circ Res. 2000 Nov 10;87(10):929-36. doi: 10.1161/01.res.87.10.929.

DOI:10.1161/01.res.87.10.929
PMID:11073890
Abstract

Connexin40 (Cx40) is a major gap junction protein that is expressed in the His-Purkinje system and thought to be a critical determinant of cell-to-cell communication and conduction of electrical impulses. Video maps of the ventricular epicardium and the proximal segment of the right bundle branch (RBB) were obtained using a high-speed CCD camera while simultaneously recording volume-conducted ECGs. In Cx40(-/-) mice, the PR interval was prolonged (47.4+/-1.4 in wild-type [WT] [n=6] and 57.5+/-2.8 in Cx40(-/-) [n=6]; P<0.01). WT ventricular epicardial activation was characterized by focused breakthroughs that originated first on the right ventricle (RV) and then the left ventricle (LV). In Cx40(-/-) hearts, the RV breakthrough occurred after the LV breakthrough. Additionally, Cx40(-/-) mice showed RV breakthrough times that were significantly delayed with respect to QRS complex onset (3.7+/-0.7 ms in WT [n=6] and 6.5+/-0.7 ms in Cx40(-/-) [n=6]; P<0.01), whereas LV breakthrough times did not change. Conduction velocity measurements from optical mapping of the RBB revealed slow conduction in Cx40(-/-) mice (74.5+/-3 cm/s in WT [n=7] and 43.7+/-6 cm/s in Cx40(-/-) [n=7]; P<0.01). In addition, simultaneous ECG records demonstrated significant delays in Cx40(-/-) RBB activation time with respect to P time (P-RBB time; 41.6+/-1.9 ms in WT [n=7] and 55.1+/-1.3 ms in [n=7]; P<0.01). These data represent the first direct demonstration of conduction defects in the specialized conduction system of Cx40(-/-) mice and provide new insight into the role of gap junctions in cardiac impulse propagation.

摘要

连接蛋白40(Cx40)是一种主要的间隙连接蛋白,在希氏-浦肯野系统中表达,被认为是细胞间通讯和电冲动传导的关键决定因素。使用高速CCD相机获取心室心外膜和右束支(RBB)近端节段的视频图谱,同时记录容积传导心电图。在Cx40基因敲除(-/-)小鼠中,PR间期延长(野生型[WT]为47.4±1.4[n = 6],Cx40(-/-)为57.5±2.8[n = 6];P<0.01)。WT心室心外膜激活的特征是首先起源于右心室(RV)然后是左心室(LV)的集中突破。在Cx40(-/-)心脏中,RV突破发生在LV突破之后。此外,Cx40(-/-)小鼠的RV突破时间相对于QRS波群起始明显延迟(WT为3.7±0.7毫秒[n = 6],Cx40(-/-)为6.5±0.7毫秒[n = 6];P<0.01),而LV突破时间没有变化。通过对RBB的光学标测进行的传导速度测量显示,Cx40(-/-)小鼠传导缓慢(WT为74.5±3厘米/秒[n = 7],Cx40(-/-)为43.7±6厘米/秒[n = 7];P<0.01)。此外,同步心电图记录显示,Cx40(-/-)RBB激活时间相对于P波时间有明显延迟(P-RBB时间;WT为41.6±1.9毫秒[n = 7],[n = 7]为55.1±1.3毫秒;P<0.01)。这些数据首次直接证明了Cx40(-/-)小鼠特殊传导系统中的传导缺陷,并为间隙连接在心脏冲动传播中的作用提供了新的见解。

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