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首页> 外文期刊>Journal of cardiovascular electrophysiology >Accelerated inactivation of voltage-dependent K+ outward current in cardiomyocytes from thyroid hormone receptor alpha1-deficient mice.
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Accelerated inactivation of voltage-dependent K+ outward current in cardiomyocytes from thyroid hormone receptor alpha1-deficient mice.

机译:甲状腺激素受体alpha1缺陷小鼠心肌细胞中电压依赖性K +外向电流的加速失活。

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摘要

INTRODUCTION: Thyroid hormone affects the electrophysiologic properties of the heart. It is not known which of the different subtypes of thyroid hormone receptors mediate these effects. METHODS AND RESULTS: Using standard patch-clamp techniques, we studied time- and voltage-dependent properties of depolarization-activated K+ currents in ventricular heart cells isolated from mice lacking the thyroid hormone receptor alpha1 (TR alpha1) and compared these currents with those in respective wild-type cells. In both groups of cells, the time course of current decay could be described by two inactivating exponential components and a sustained current component. In TR alpha1-deficient cells, the total inactivation time course was accelerated due to both increase of the relative contribution of the fast component and shortening of the slow time constant. The peak amplitude of the total current was not altered. The main component of steady-state inactivation of the voltage-dependent K+ outward current was shifted to more hyperpolarized voltages by 7 mV in TR alpha1-deficient cells compared with that in wild-type cells. Under current-clamp conditions, action potential duration at 90% repolarization was prolonged in TR alpha1-deficient cells compared with that in wild-type cells by 3.6 msec. CONCLUSION: The resulting acceleration of the total inactivation time course is proposed to contribute to action potential prolongation and thus to the increased QTend-time observed previously on ECG of TR alpha1-deficient mice.
机译:简介:甲状腺激素会影响心脏的电生理特性。尚不清楚甲状腺激素受体的不同亚型中的哪一种介导这些作用。方法和结果:使用标准的膜片钳技术,我们研究了从缺乏甲状腺激素受体α1(TR alpha1)的小鼠分离的心室心脏细胞中去极化激活的K +电流的时间和电压依赖性,并将这些电流与各自的野生型细胞。在两组电池中,电流衰减的时间过程可以通过两个失活的指数分量和一个持续电流分量来描述。在TR alpha1缺陷的细胞中,由于快速成分的相对贡献的增加和慢时间常数的缩短,总的失活时间过程得以加速。总电流的峰值幅度没有改变。与野生型细胞相比,TR alpha1缺陷型细胞的电压依赖性K +外向电流稳态失活的主要成分被转移到更多的超极化电压7 mV。在电流钳制条件下,与野生型细胞相比,TR alpha1缺陷型细胞在90%复极化时的动作电位持续时间延长了3.6毫秒。结论:总的失活时间过程的最终加速作用被认为有助于动作电位的延长,从而增加了先前在TRα1缺陷型小鼠的ECG上观察到的QTend-time。

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