遗传毒性
彗星试验
背景(考古学)
碎屑成因
微核试验
基因突变
体内
氧化应激
电子烟
致癌物
药理学
微核
化学
DNA损伤
毒理
毒性
生物
遗传学
突变
基因
生物化学
DNA
有机化学
古生物学
作者
Anne Platel,Romain Dusautoir,Gwenola Kervoaze,Gonzague Dourdin,Eulalie Gateau,Smaïl Talahari,Ludovic Huot,Sophie Simar,Anaïs Ollivier,William Laine,Jérôme Kluza,Philippe Gosset,Guillaume Garçon,Sébastien Anthérieu,Jean‐Marc Lo‐Guidice,Fabrice Nesslany
标识
DOI:10.1016/j.jhazmat.2021.127246
摘要
Tobacco smoking is classified as a human carcinogen. A wide variety of new products, in particular electronic cigarettes (e-cigs), have recently appeared on the market as an alternative to smoking. Although the in vitro toxicity of e-cigs is relatively well known, there is currently a lack of data on their long-term health effects. In this context, the aim of our study was to compare, on a mouse model and using a nose-only exposure system, the in vivo genotoxic and mutagenic potential of e-cig aerosols tested at two power settings (18 W and 30 W) and conventional cigarette (3R4F) smoke. The standard comet assay, micronucleus test and Pig-a gene mutation assay were performed after subacute (4 days), subchronic (3 months) and chronic (6 months) exposure. The generation of oxidative stress was also assessed by measuring the 8-hydroxy-2'-deoxyguanosine and by using the hOGG1-modified comet assay. Our results show that only the high-power e-cig and the 3R4F cigarette induced oxidative DNA damage in the lung and the liver of exposed mice. In return, no significant increase in chromosomal aberrations or gene mutations were noted whatever the type of product. This study demonstrates that e-cigs, at high-power setting, should be considered, contrary to popular belief, as hazardous products in terms of genotoxicity in mouse model.
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