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在犬心室中离子通道的表达和生物物理学的发育变化。

Developmental changes in expression and biophysics of ion channels in the canine ventricle.

机构信息

Department of Experimental Cardiology, Masonic Medical Research Laboratory, 2150 Bleecker St., Utica, NY 13501, USA.

出版信息

J Mol Cell Cardiol. 2013 Nov;64:79-89. doi: 10.1016/j.yjmcc.2013.09.001. Epub 2013 Sep 10.

Abstract

BACKGROUND

Developmental changes in the electrical characteristics of the ventricular myocardium are not well defined. This study examines the contribution of inwardly rectifying K(+) current (IK1), transient outward K(+) current (Ito), delayed rectifier K(+) currents (IKr and IKs) and sodium channel current (INa) to repolarization in the canine neonate myocardium.

METHODS

Single myocytes isolated from the left ventricle of 2-3week old canine neonate hearts were studied using patch-clamp techniques.

RESULTS

Neonate cells were ~6-fold smaller than those of adults (28.8±8.8 vs. 176±6.7pF). IK1 was larger in neonate myocytes and displayed a substantial inward component and an outward component with negative slope conductance, peaking at -60mV (4.13 pA/pF). IKr tail currents (at -40mV), were small (<20pA). IKs could not be detected, even after exposure to isoproterenol (100nM). Ito was also absent in the neonate, consistent with the absence of a phase 1 in the action potential. Peak INa, late INa and ICa were smaller in the neonate compared with adults. KCND3, KCNIP2 and KCNQ1 mRNA expression was half, while KCNH2 was equal and KCNJ2 was greater in the neonate when compared with adults.

CONCLUSIONS

Two major repolarizing K(+) currents (IKs and Ito) present in adult ventricular cells are absent in the 2week old neonate. Peak and late INa are significantly smaller in the neonate. Our results suggest that the absence of these two currents in the neonate heart may increase the susceptibility to arrhythmias under certain long QT conditions.

摘要

背景

心室心肌电生理特性的发育变化尚不清楚。本研究旨在探讨内向整流钾电流(IK1)、瞬间外向钾电流(Ito)、延迟整流钾电流(IKr 和 IKs)以及钠通道电流(INa)对犬新生儿心肌复极的贡献。

方法

采用膜片钳技术研究来自 2-3 周龄犬新生儿左心室的单个心肌细胞。

结果

新生儿细胞比成人细胞小约 6 倍(28.8±8.8 比 176±6.7pF)。IK1 在新生儿心肌细胞中较大,并显示出一个实质性的内向成分和一个具有负斜率电导的外向成分,在-60mV 时达到峰值(4.13pA/pF)。IKr 尾电流(在-40mV 时)较小(<20pA)。即使在接触异丙肾上腺素(100nM)后,也无法检测到 IKs。新生儿 Ito 也不存在,这与动作电位中没有相 1 一致。与成人相比,新生儿的峰值 INa、晚期 INa 和 ICa 较小。与成人相比,KCND3、KCNIP2 和 KCNQ1 mRNA 表达减半,而 KCNH2 相等,KCNJ2 更大。

结论

在成年心室细胞中存在的两种主要复极钾电流(IKs 和 Ito)在 2 周龄新生儿中不存在。新生儿的峰值和晚期 INa 明显较小。我们的研究结果表明,在新生儿心脏中缺乏这两种电流可能会增加在某些长 QT 条件下发生心律失常的易感性。

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