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结构异质性促进心肌细胞单层中的触发活动、反射和心律失常发生。

Structural heterogeneity promotes triggered activity, reflection and arrhythmogenesis in cardiomyocyte monolayers.

机构信息

Center for Arrhythmia Research, University of Michigan, Ann Arbor, MI 48108, USA.

出版信息

J Physiol. 2011 May 1;589(Pt 9):2363-81. doi: 10.1113/jphysiol.2010.200576. Epub 2011 Mar 8.

Abstract

Patients with structural heart disease are predisposed to arrhythmias by incompletely understood mechanisms. We hypothesized that tissue expansions promote source-to-sink mismatch leading to early after-depolarizations (EADs) and reflection of impulses in monolayers of well-polarized neonatal rat ventricular cardiomyocytes.We traced electrical propagation optically in patterned monolayers consisting of two wide regions connected by a thin isthmus.Structural heterogeneities provided a substrate for EADs, retrograde propagation along the same pathway (reflection) and reentry initiation. Reflection always originated during the action potential (AP) plateau at the distal expansion. To determine whether increased sodium current(INa) would promote EADs, we employed adenoviral transfer of Nav1.5 (Ad-Nav1.5). Compared with uninfected and adenoviral expression of green fluorescent protein (Ad-GFP; viral control),Ad-Nav1.5 significantly increased Nav1.5 protein expression, peak and persistent INa density, A Pupstroke velocity, AP duration, conduction velocity and EAD incidence, as well as reflection incidence (29.2%, n =48 vs. uninfected, 9.4%, n =64; and Ad-GFP, 4.8%, n =21). Likewise,the persistent INa agonist veratridine (0.05–3 μM) prolonged the AP, leading to EADs and reflection. Reflection led to functional reentry distally and bigeminal and trigeminal rhythms proximally. Reflection was rare in the absence of structural heterogeneities.Computer simulations demonstrated the importance of persistent INa in triggering reflection and predicted that the gradient between the depolarizing cells at the distal expansion and the repolarizing cells within the isthmus enabled retrograde flow of depolarizing electrotonic current to trigger EADs and reflection. A combination of a substrate (structural heterogeneity) and a trigger (increased persistent INa and EADs) promotes reflection and arrhythmogenesis.

摘要

结构性心脏病患者由于机制尚未完全阐明而容易发生心律失常。我们假设组织扩张会导致源到汇的不匹配,从而导致早期后除极(EAD)和冲动在极化良好的新生大鼠心室心肌细胞单层中的反射。我们在由两个宽区域通过薄峡部连接的图案化单层中通过光学追踪电传播。结构异质性为 EAD、沿同一路径逆行传播(反射)和折返起始提供了底物。反射总是在远端扩张的动作电位(AP)平台期间开始。为了确定增加的钠电流(INa)是否会促进 EAD,我们采用腺病毒转染 Nav1.5(Ad-Nav1.5)。与未感染和腺病毒表达绿色荧光蛋白(Ad-GFP;病毒对照)相比,Ad-Nav1.5 显著增加了 Nav1.5 蛋白表达、峰值和持续 INa 密度、AP 上升速度、AP 持续时间、传导速度和 EAD 发生率以及反射发生率(29.2%,n=48 与未感染,9.4%,n=64;和 Ad-GFP,4.8%,n=21)。同样,持续的 INa 激动剂维拉帕米(0.05-3μM)延长了 AP,导致 EAD 和反射。反射导致在远端功能性折返,在近端导致二联律和三联律。在没有结构异质性的情况下,反射很少见。计算机模拟表明持续 INa 在触发反射中的重要性,并预测在远端扩张处去极化细胞和峡部内复极化细胞之间的去极化电紧张电流的逆行流能够触发 EAD 和反射。底物(结构异质性)和触发(增加的持续 INa 和 EAD)的组合促进了反射和心律失常的发生。

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