Christina Lee Brown Envirome Institute, University of Louisville, Louisville, KY, USA.
American Heart Association Tobacco Regulation and Addiction Center, Louisville, KY, USA.
Nat Commun. 2022 Oct 25;13(1):6088. doi: 10.1038/s41467-022-33203-1.
E-cigarette use has surged, but the long-term health effects remain unknown. E-cigarette aerosols containing nicotine and acrolein, a combustion and e-cigarette byproduct, may impair cardiac electrophysiology through autonomic imbalance. Here we show in mouse electrocardiograms that acute inhalation of e-cigarette aerosols disturbs cardiac conduction, in part through parasympathetic modulation. We demonstrate that, similar to acrolein or combustible cigarette smoke, aerosols from e-cigarette solvents (vegetable glycerin and propylene glycol) induce bradycardia, bradyarrhythmias, and elevations in heart rate variability during inhalation exposure, with inverse post-exposure effects. These effects are slighter with tobacco- or menthol-flavored aerosols containing nicotine, and in female mice. Yet, menthol-flavored and PG aerosols also increase ventricular arrhythmias and augment early ventricular repolarization (J amplitude), while menthol uniquely alters atrial and atrioventricular conduction. Exposure to e-cigarette aerosols from vegetable glycerin and its byproduct, acrolein, diminish heart rate and early repolarization. The pro-arrhythmic effects of solvent aerosols on ventricular repolarization and heart rate variability depend partly on parasympathetic modulation, whereas ventricular arrhythmias positively associate with early repolarization dependent on the presence of nicotine. Our study indicates that chemical constituents of e-cigarettes could contribute to cardiac risk by provoking pro-arrhythmic changes and stimulating autonomic reflexes.
电子烟的使用量激增,但长期的健康影响仍不清楚。电子烟气含有尼古丁和丙烯醛,一种燃烧产物和电子烟的副产物,可能通过自主神经失衡损害心脏电生理学。在这里,我们在小鼠心电图中表明,电子烟气的急性吸入会干扰心脏传导,部分是通过副交感神经调节。我们证明,类似于丙烯醛或可燃香烟烟雾,电子烟溶剂(丙三醇和丙二醇)的气溶胶在吸入暴露期间引起心动过缓和心动过缓,心率变异性升高,暴露后出现相反的影响。含有尼古丁的烟草或薄荷味气溶胶和雌性小鼠的这些影响较轻。然而,薄荷味和 PG 气溶胶也会增加室性心律失常并增加早期心室复极(J 波幅度),而薄荷味独特地改变心房和房室传导。丙三醇及其副产物丙烯醛的电子烟气暴露会降低心率和早期复极。溶剂气溶胶对心室复极和心率变异性的致心律失常作用部分取决于副交感神经调节,而室性心律失常与早期复极的正相关取决于尼古丁的存在。我们的研究表明,电子烟的化学成分可能通过引发致心律失常变化和刺激自主反射来增加心脏风险。