首页> 外文期刊>The Journal of Physiology >Effect of androgen deficiency on mouse ventricular repolarization.
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Effect of androgen deficiency on mouse ventricular repolarization.

机译:雄激素缺乏对小鼠心室复极的影响。

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We previously demonstrated that female mouse ventricles have longer action potential durations (APDs) than males. This delayed repolarization results from a lower current density of the ultrarapid delayed rectifier K(+) current (I(K,ur)) and a lower expression level of its underlying K(+) channel (Kv1.5). To evaluate whether this sex difference could be attributable to the action of male sex hormones, we studied the effect of androgen deficiency on ventricular repolarization. We compared cardiac electrophysiological properties in castrated (orchiectomized; ORC) and control (CTL) male mice. Q-Tc intervals as well as APDs measured at 20 %, 50 % and 90 % of repolarization were all significantly longer in ORC than in CTL. The current density of I(K,ur) was significantly lower in ORC than in CTL (at +50 mV, ORC: 29 +/- 4 pA pF(-1), n = 25; CTL: 48 +/- 5 pA pF(-1), n = 17; P = 0.006). In contrast, all the other K(+) currents present in mouse ventricular myocytes were comparable between ORC and CTL. Moreover,results of Western blot analysis showed a lower expression level of Kv1.5 protein in ORC but no difference between the two groups for the other K(+) channels studied. This study demonstrates that androgen deficiency leads to a reduction in the density of I(K,ur) and Kv1.5 in mouse ventricle, and consequently, to prolongation of APD and Q-Tc interval. In conclusion, these findings strongly suggest that male sex hormones contribute to the sex difference that we previously reported in cardiac repolarization in adult mouse heart.
机译:我们先前证明,雌性小鼠心室的动作电位持续时间(APD)比雄性更长。这种延迟的重新极化是由于超快速延迟整流器K(+)电流(I(K,ur))的较低电流密度和其基础K(+)通道的较低表达水平(Kv1.5)导致的。为了评估这种性别差异是否可归因于男性性激素的作用,我们研究了雄激素缺乏对心室复极的影响。我们比较了cast割(睾丸切除; ORC)和对照(CTL)雄性小鼠的心脏电生理特性。在ORC中,Q-Tc间隔以及在复极化的20%,50%和90%处测得的APD均明显长于CTL。 ORC中的I(K,ur)电流密度显着低于CTL(在+50 mV时,ORC:29 +/- 4 pA pF(-1),n = 25; CTL:48 +/- 5 pA pF(-1),n = 17; P = 0.006)。相反,在小鼠心室肌细胞中存在的所有其他K(+)电流在ORC和CTL之间是可比的。此外,蛋白质印迹分析的结果显示,ORC中Kv1.5蛋白的表达水平较低,但对于其他研究的K(+)通道,两组之间没有差异。这项研究表明,雄激素缺乏导致小鼠心室中I(K,ur)和Kv1.5的密度降低,从而延长了APD和Q-Tc间隔。总之,这些发现强烈表明,男性性激素促成我们先前在成年小鼠心脏的心脏复极过程中报道的性别差异。

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