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完整离体正常人心脏的心脏激活-复极模式及离子通道表达图谱

Cardiac activation-repolarization patterns and ion channel expression mapping in intact isolated normal human hearts.

作者信息

Opthof Tobias, Remme Carol Ann, Jorge Esther, Noriega Francisco, Wiegerinck Rob F, Tasiam Arlin, Beekman Leander, Alvarez-Garcia Jesus, Munoz-Guijosa Cristian, Coronel Ruben, Cinca Juan

机构信息

Department of Clinical and Experimental Cardiology, Heart Center Amsterdam, Amsterdam, The Netherlands; Department of Medical Physiology, University Medical Center Utrecht, Utrecht, The Netherlands.

Department of Clinical and Experimental Cardiology, Heart Center Amsterdam, Amsterdam, The Netherlands.

出版信息

Heart Rhythm. 2017 Feb;14(2):265-272. doi: 10.1016/j.hrthm.2016.10.010. Epub 2016 Oct 11.

Abstract

BACKGROUND

The repolarization pattern of the human heart is unknown.

OBJECTIVE

The purpose of this study was to perform a multisite analysis of the activation-repolarization patterns and mRNA expression patterns of ion channel subunits in isolated human hearts.

METHODS

Hearts from 3 donors without reported cardiac disease were Langendorff perfused with the patient's own blood. A standard ECG was obtained before explantation. Up to 92 unipolar electrograms from 24 transmural needles were obtained during right atrial pacing. Local activation and repolarization times and activation-recovery intervals (ARI) were measured. The mRNA levels of subunits of the channels carrying the transient outward current and slow and rapid components of the delayed rectifier current were determined by quantitative reverse transcriptase polymerase chain reaction at up to 63 sites.

RESULTS

The repolarization gradients in the 3 hearts were different and occurred along all axes without midmural late repolarization. A negative activation-repolarization relationship occurred along the epicardium, but this relationship was positive in the whole hearts. Coefficients of variation of mRNA levels (40%-80%) and of the Kv7.1 protein (alpha-subunit slow delayed rectifier channel) were larger than those of ARIs (7%-17%). The regional mRNA expression patterns were similar in the 3 hearts, unlike the ARI profiles. The expression level of individual mRNAs and of Kv7.1 did not correlate with local ARIs at the same sites.

CONCLUSION

In the normal human heart, repolarization gradients encompass all axes, without late midmural repolarization. Last activated areas do not repolarize first as previously assumed. Gradients of mRNAs of single ion channel subunits and of ARIs do not correlate.

摘要

背景

人类心脏的复极模式尚不清楚。

目的

本研究旨在对离体人心脏中离子通道亚基的激活 - 复极模式和mRNA表达模式进行多部位分析。

方法

对3名无心脏病报告的供体心脏进行Langendorff灌注,灌注液为患者自身血液。在心脏取出前记录标准心电图。右心房起搏期间,从24根透壁针获取多达92个单极电图。测量局部激活和复极时间以及激活 - 恢复间期(ARI)。通过定量逆转录聚合酶链反应在多达63个位点测定携带瞬时外向电流以及延迟整流电流的慢速和快速成分的通道亚基的mRNA水平。

结果

3颗心脏中的复极梯度各不相同,沿所有轴发生,无中层晚期复极。沿心外膜出现负性激活 - 复极关系,但在整个心脏中这种关系为正性。mRNA水平(40% - 80%)和Kv7.1蛋白(α亚基慢速延迟整流通道)的变异系数大于ARI的变异系数(7% - 17%)。与ARI分布图不同,3颗心脏中的区域mRNA表达模式相似。单个mRNA和Kv7.1的表达水平与同一位点的局部ARI不相关。

结论

在正常人体心脏中,复极梯度涵盖所有轴,无中层晚期复极。最后激活的区域并不像之前所认为的那样最先复极。单个离子通道亚基的mRNA梯度与ARI梯度不相关。

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