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首页> 外文期刊>Journal of cardiovascular electrophysiology >Evolution of action potential propagation and repolarization in cultured neonatal rat ventricular myocytes.
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Evolution of action potential propagation and repolarization in cultured neonatal rat ventricular myocytes.

机译:在新生大鼠心室肌细胞中动作电位的传播和复极化的演变。

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INTRODUCTION: Cultured neonatal rat ventricular myocytes (NRVM) reestablish gap junctions as they form synchronously and spontaneously beating monolayers, thus providing a useful model for studying activation and repolarization. METHODS AND RESULTS: We used the multielectrode array data acquisition system with 60 unipolar electrodes to investigate the functional organization of cultured NRVM, by determining propagation and repolarization patterns. Activation maps were constructed from the local activation times at each electrode. During days 3 to 8 in culture, QRS amplitude and dV/dt(max) increased with age. Concomitantly, with the culture maturation, QT interval (representing action potential duration) decreased, and T wave amplitude and slopes of the T wave ascending and descending limbs progressively increased. The changes in conduction velocity were different than those of the electrogram properties, slightly increasing during the first 3 to 5 days and gradually declining toward day 8 in culture. CONCLUSION: Establishment of uniform activation patterns in spontaneously firing or driven myocytes in monolayer cultures is accompanied by organization of activation and repolarization whose evolution appears in concert with that of a mature connexin43 staining pattern. The experimental techniques developed in this study provide useful tools to investigate the complex relations among gap junctions, conduction velocity, and propagation patterns, as well as a means to learn how gap junctional remodeling under pathophysiologic conditions predisposes the myocardium to arrhythmias.
机译:简介:培养的新生大鼠心室肌细胞(NRVM)会重新建立间隙连接,因为它们形成同步并自发地跳动单层,从而为研究激活和复极化提供了有用的模型。方法和结果:我们使用具有60个单极电极的多电极阵列数据采集系统,通过确定传播和复极化模式来研究培养的NRVM的功能组织。根据每个电极的局部激活时间构建激活图。在培养的第3至8天中,QRS幅度和dV / dt(max)随着年龄的增长而增加。同时,随着培养的成熟,QT间期(代表动作电位持续时间)减小,T波振幅和T波上升和下降肢体的斜率逐渐增加。传导速度的变化与电图特性的变化不同,在培养的前3至5天略有增加,并在培养的第8天逐渐下降。结论:在单层培养中自发激发或驱动的心肌细胞中建立统一的激活模式,伴随着激活和复极化的组织,其进化与成熟的连接蛋白43染色模式一致。在这项研究中开发的实验技术提供了有用的工具,以研究间隙连接,传导速度和传播模式之间的复杂关系,以及了解病理生理条件下间隙连接重塑如何使心肌易患心律失常的一种手段。

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