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首页> 外文期刊>Journal of cardiovascular electrophysiology >In vivo electrophysiologic studies in endothelial nitric oxide synthase (eNOS)-deficient mice.
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In vivo electrophysiologic studies in endothelial nitric oxide synthase (eNOS)-deficient mice.

机译:内皮一氧化氮合酶(eNOS)缺陷小鼠的体内电生理研究。

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摘要

INTRODUCTION: Endothelial nitric oxide synthase (eNOS) mediates attenuation of the L-type calcium channel and modulates myocyte contractility. Arrhythmogenic afterdepolarizations are seen in vitro in ouabain-treated isolated myocytes from eNOS-deficient mice. The aim of these studies was to characterize the baseline electrophysiologic (EP) phenotype of eNOS-deficient mice and their potential susceptibility to cardiac conduction abnormalities and inducible arrhythmias. METHODS AND RESULTS: Surface ECG and in vivo intracardiac EP studies were performed in 27 mice lacking the eNOS gene and 21 wild-type littermate control mice. Baseline studies were performed in 10 eNOS-deficient mice and 10 wild-type controls. Subsequently, 17 eNOS-deficient mice and 11 wild-type controls were pretreated with digoxin, and ECG and EP testing were repeated. Data analysis revealed no significant differences in ECG intervals or cardiac conduction parameters, except sinus cycle length was higher in eNOS-deficient mice than wild-type mice (P < 0.01). After digoxin pretreatment, 7 of 17 eNOS-deficient mice had inducible ventricular tachycardia and 2 others had frequent ventricular premature beats, compared with only 3 of 11 wild-type mice with inducible ventricular tachycardia. In addition, 2 digoxin-treated eNOS-deficient mice and 1 wild-type mouse had inducible nonsustained atrial fibrillation. CONCLUSION: Mice with a homozygous targeted disruption of the eNOS gene have slower heart rates but no other distinguishable EP characteristics under basal sedated conditions. Partial inhibition of the Na+/K+ ATPase pump with digoxin administration increases ventricular ectopic activity in eNOS-/- mice, a phenotype analogous to afterdepolarizations seen in vitro in this eNOS-deficient mouse model.
机译:简介:内皮一氧化氮合酶(eNOS)介导L型钙通道的衰减并调节心肌细胞的收缩力。在体外,在来自eNOS缺陷小鼠的哇巴因处理的分离的心肌细胞中观察到了致心律失常后的去极化。这些研究的目的是表征eNOS缺陷小鼠的基线电生理(EP)表型及其对心脏传导异常和可诱发的心律不齐的潜在敏感性。方法和结果:对27只缺乏eNOS基因的小鼠和21只野生型同窝仔小鼠进行了表面心电图和体内心内EP研究。在10只eNOS缺陷小鼠和10只野生型对照中进行了基线研究。随后,用地高辛预处理了17只eNOS缺陷小鼠和11只野生型对照,并重复了ECG和EP测试。数据分析显示,除了eNOS缺陷型小鼠的窦周期长度比野生型小鼠高外,ECG间隔或心脏传导参数无显着差异(P <0.01)。地高辛预处理后,在17例eNOS缺陷小鼠中有7例可诱导性室性心动过速,另2例具有频繁的室性早搏,而在11例野生型可诱导性室性心动过速中,只有3例。此外,2只地高辛治疗的eNOS缺陷小鼠和1只野生型小鼠具有可诱导的非持续性心房颤动。结论:纯合子靶向靶向破坏eNOS基因的小鼠具有较慢的心律,但在基础镇静条件下没有其他可区分的EP特征。地高辛给药对Na + / K + ATPase泵的部分抑制作用增加了eNOS-/-小鼠的心室异位活性,这种表型类似于在这种eNOS缺陷小鼠模型中体外观察到的去极化作用。

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