Public Health England, Centre for Radiation, Chemical and Environmental Hazards, Chilton, Didcot, Oxfordshire, OX11 ORQ, UK.
J Physiol. 2020 Nov;598(22):5073-5089. doi: 10.1113/JP278366. Epub 2020 Jun 26.
Electronic cigarettes divide opinions. Some consider them key to reducing smoking incidence while others are concerned over potential for detrimental health consequences. It will take many years to identify the health consequences of e-cigarette use if we rely only upon human data. However, there is a growing body of work using rodent models that inform on these potential toxicities. These studies have focused upon the pulmonary, cardiovascular and central nervous systems. Observations include perturbations of pro-inflammatory, pro-fibrotic and oxidative stress markers, sometimes together with DNA damage and downregulation of DNA repair and antioxidant enzymes. However, the markers affected are often different between studies. A more consistent observation has been the increase in airway hyperresponsiveness, a characteristic of asthma, on exposure to electronic cigarettes, across mouse strains, sex and ages. Detrimental effects in this and other susceptible animal models such as the apolipoprotein E knock-out mouse model of atherosclerosis, suggest greater risk where there is an existing predisposition. Other adverse reactions, including weight loss, oxidative stress and angiogenesis, are reported in animal studies with nicotine-containing devices. These effects remain less severe than cigarette smoke, where investigated. Animal studies have identified therefore that e-cigarettes are potentially hazardous, especially in susceptible populations, nicotine is integral to risk of health effects, but overall e-cigarettes are much less hazardous than cigarettes.
电子烟存在争议。一些人认为电子烟是减少吸烟发生率的关键,而另一些人则担心其潜在的健康危害。如果我们只依赖人类数据,那么要确定电子烟使用的健康后果将需要很多年。然而,越来越多的使用啮齿动物模型的研究为这些潜在的毒性提供了信息。这些研究集中在肺部、心血管和中枢神经系统。观察结果包括促炎、促纤维化和氧化应激标志物的改变,有时伴随着 DNA 损伤和 DNA 修复及抗氧化酶的下调。然而,在不同的研究中,受影响的标志物往往不同。一个更一致的观察结果是,暴露于电子烟后,不同品系的小鼠在气道高反应性(哮喘的特征)方面均有增加。在易受影响的动物模型中,如载脂蛋白 E 敲除动脉粥样硬化小鼠模型中观察到的这种有害作用表明,在存在易感性的情况下,风险更大。在含有尼古丁的装置的动物研究中还报告了其他不良反应,包括体重减轻、氧化应激和血管生成。与香烟烟雾相比,这些影响仍然较轻。因此,动物研究表明电子烟具有潜在的危害性,尤其是在易受影响的人群中,尼古丁是健康影响风险的组成部分,但总体而言,电子烟的危害远小于香烟。