Connexins and cardiac arrhythmias.

Harold V M van Rijen, Toon A B van Veen, Daniel Gros, Ronald Wilders, Jacques M T de Bakker
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引用次数: 57

Abstract

During cardiac remodeling, impulse conduction in the heart is altered by changes in excitability, electrical coupling, and tissue architecture. The impairment of normal impulse conduction is one of the factors that increases the propensity for arrhythmias. This chapter focuses on the relationship between electrical coupling between ventricular myocytes and arrhythmogenesis. Mouse models of decreased electrical coupling in the heart have shown that a clinically relevant 50% reduction in gap junctions in the heart has no effect on impulse conduction or arrhythmogenesis. To impair conduction and arrhythmias, coupling has to be reduced to very low levels. Apparently, there is a large conduction reserve, which can preserve normal impulse conduction even when electrical coupling is moderately reduced. However, cardiac remodeling is also associated with reduced excitability and increased levels of collagen deposition (fibrosis). It is therefore presumably the combination of, in itself ineffective, reduction of electrical coupling with other impairments like fibrosis or reduced excitability that causes the limits of conduction reserve to be exceeded, thereby resulting in abnormal impulse conduction and enhanced arrhythmogenesis.

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连接素和心律失常。
在心脏重构过程中,心脏的冲动传导会因兴奋性、电耦合和组织结构的变化而改变。正常冲动传导障碍是增加心律失常倾向的因素之一。本章主要讨论心室肌细胞电偶联与心律失常的关系。心脏电偶联减少的小鼠模型显示,临床相关的心脏间隙连接减少50%对冲动传导或心律失常没有影响。为了损害传导和心律失常,耦合必须降低到非常低的水平。显然,存在较大的传导储备,即使电耦合适度降低,也能保持正常的脉冲传导。然而,心脏重塑也与兴奋性降低和胶原沉积(纤维化)水平增加有关。因此,可能是电偶联的减少与其他损伤(如纤维化或兴奋性降低)本身无效的结合,导致传导储备的极限被超越,从而导致脉冲传导异常和心律失常的增强。
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