Lung Cancer Program, Lovelace Respiratory Research Institute, Albuquerque, New Mexico 87108.
Departments of Biochemistry and Genetics, Graduate School of Medical and Dental Sciences, Kagoshima University, Kagoshima, Japan.
Toxicol Sci. 2021 Jan 28;179(2):220-228. doi: 10.1093/toxsci/kfaa174.
Electronic cigarettes are the most commonly used nicotine containing product among teenagers. The oral epithelium is the first site of exposure and our recent work revealed considerable diversity among e-liquids for composition and level of chemical constituents that impact nicotine deposition in a human oral-trachea cast and affect the formation of reactive carbonyls. Here, we evaluate the dose response for cytotoxicity and genotoxicity of e-cigarette-generated aerosols from 10 diverse flavored e-liquid products with and without nicotine compared with unflavored in 3 immortalized oral epithelial cell lines. Three e-liquids, Blue Pucker, Love Potion, and Jamestown caused ≥20% cell toxicity assessed by the neutral red uptake assay. Nine products induced significant levels of oxidative stress up to 2.4-fold quantified by the ROS-Glo assay in at least 1 cell line, with dose response seen for Love Potion with and without nicotine across all cell lines. Lipid peroxidation detected by the thiobarbituric acid reactive substances assay was less common among products; however, dose response increases up to 12-fold were seen for individual cell lines. Micronuclei formation indicative of genotoxicity was increased up to 5-fold for some products. Blue Pucker was the most genotoxic e-liquid, inducing micronuclei across all cell lines irrespective of nicotine status. A potency score derived from all assays identified Blue Pucker and Love Potion as the most hazardous e-liquids. These in vitro acute exposure studies provide new insight about the potential for some flavored vaping products to induce significant levels of oxidative stress and genotoxicity.
电子烟是青少年最常使用的含尼古丁产品。口腔上皮组织是第一个接触部位,我们最近的研究发现,电子烟液在组成和影响尼古丁在人体口腔气管铸型中沉积的化学成分水平以及影响反应性羰基形成方面存在相当大的差异。在这里,我们评估了 10 种不同口味的电子烟液(含尼古丁和不含尼古丁)与无味电子烟液在 3 种永生化口腔上皮细胞系中的细胞毒性和遗传毒性的剂量反应。三种电子烟液,蓝色 Pucker、爱情药水和 Jamestown,通过中性红摄取测定法评估细胞毒性,超过 20%的细胞毒性。9 种产品在至少 1 种细胞系中通过 ROS-Glo 测定法诱导了显著的氧化应激水平,高达 2.4 倍,Love Potion 有和没有尼古丁的细胞系都有剂量反应。通过硫代巴比妥酸反应物质测定法检测到的脂质过氧化在产品中较少见;然而,在个别细胞系中观察到高达 12 倍的剂量反应增加。微核形成表明遗传毒性增加了高达 5 倍,对于一些产品。Blue Pucker 是最具遗传毒性的电子烟液,在所有细胞系中都诱导微核,无论尼古丁状态如何。从所有测定中得出的效力评分将 Blue Pucker 和 Love Potion 确定为最危险的电子烟液。这些体外急性暴露研究为一些调味电子烟产品诱导显著水平的氧化应激和遗传毒性提供了新的见解。