首页> 美国卫生研究院文献>Physiological Reports >Ex vivo microelectrode analysis of conduction through the AV node of wild‐type and Nkx2‐5 mutant mouse hearts as guided by a Cx40‐eGFP transgenic reporter
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Ex vivo microelectrode analysis of conduction through the AV node of wild‐type and Nkx2‐5 mutant mouse hearts as guided by a Cx40‐eGFP transgenic reporter

机译:在Cx40-eGFP转基因报告基因的指导下通过微电极对野生型和Nkx2-5突变小鼠心脏的AV节点进行传导的微电极分析

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摘要

Mutations of the cardiac transcription factor NKX2‐5 cause hypoplastic development of the AV node and conduction block. How the anatomy of the mutant AV node relates to its function is unknown. We thus studied conduction through the AV nodal region in ex vivo preparations of wild‐type and Nkx2‐5+/− mouse hearts in which the central conduction system was highlighted by a transgenic Cx40‐eGFP reporter. Fluorescence imaging guided electrode placement and pacing of the inferior and superior approaches to the AV node. Nkx2‐5+/− hearts had a prolonged atrio‐His interval compared to the wild type, consistent with previous in vivo observations. The conduction time to the His bundle from the Cx40 AV nodal region that is superior to and immediately adjacent to the Cx40+ lower node is slightly, but not significantly greater in Nkx2‐5+/− than wild‐type hearts. A novel phenotype was also observed. Pacing the Cx40 inferior approach to the AV node with increasing stimulus strength led to progressive shortening of the stimulus‐to‐His conduction interval in wild‐type but not Nkx2‐5+/− hearts. The strength of pacing at the Cx40 superior approach had no effect on the conduction interval in either group. The prolonged AV delay in the Nkx2‐5+/− heart appears to arise before the Cx40+ lower node. Whether the pacing phenotype explains the mutant's conduction defect is uncertain, but the observation adds to a number of unique properties of the inferior approach to the AV node.
机译:心脏转录因子NKX2-5的突变导致AV结和传导阻滞发育不良。突变的AV节点的解剖结构与其功能之间的关系尚不清楚。因此,我们研究了野生型和Nkx2-5 +/- 小鼠心脏离体制剂中通过AV结区的传导,其中通过Cx40-eGFP转基因报告子突出了中央传导系统。荧光成像指导电极的放置和起搏,以及对AV结节的上,下进路。与野生型相比,Nkx2-5 +/- 心脏的atrio-His间隔延长。在Nkx2中,从Cx40 - AV结点区域优于并紧邻Cx40 + 下结点到His束的传导时间略长,但不明显‐5 +/− 比野生型心脏好。还观察到了新的表型。在刺激强度增加的情况下,将Cx40 -逼近AV结点可导致野生型的刺激至His传导间隔逐渐缩短,但Nkx2-5 +/- < / sup>心。 Cx40 -优越方法的起搏强度对两组的传导间隔均无影响。 Nkx2-5 +/- 心脏的AV延迟似乎出现在Cx40 + 下节之前。起搏表型是否解释了突变体的传导缺陷尚不确定,但观察结果增加了劣势性AV结的许多独特性质。

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