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一种新型雾化技术的体外评估。

The in vitro assessment of a novel vaping technology.

作者信息

Breheny D, Thorne D, Baxter A, Bozhilova S, Jaunky T, Santopietro S, Taylor M, Terry A, Gaça M

机构信息

British American Tobacco, R&D, Southampton, Hampshire, SO15 8TL, UK.

出版信息

Toxicol Rep. 2020 Aug 22;7:1145-1156. doi: 10.1016/j.toxrep.2020.08.016. eCollection 2020.

Abstract

We have developed a novel vaping product (NVP) IS1.0(TT), which utilises a stainless-steel mesh to transfer and vaporise the e-liquid, mitigating some of the potential sources of toxicants that can be generated using the more traditional 'wick and coil' approach. The emissions from IS1.0(TT) have previously been found to have lower levels of toxicants overall when directly compared with a commercial wick and coil e-cig. This current study assessed the toxicological responses to aerosols from this NVP. Responses induced by IS1.0(TT)were compared to those from a 3R4F reference cigarette, using test methods which included regulatory genetic toxicological assays as well as some more contemporary screening approaches. The experimental conditions were designed to facilitate the testing of aerosol from this vaping product at doses that in most cases greatly exceeded those of the 3R4F comparator showed little to no toxicological responses and demonstrated significantly reduced effects in these assays when compared to 3R4F. Furthermore, the extreme doses tested in the present study indicate that the toxicant profile of this NVP translates to lower biological activity , and suggests that the absolute risk hazard level associated with electronic cigarettes can be reduced through continuous improvement as the technology evolves.

摘要

我们开发了一种新型电子烟产品(NVP)IS1.0(TT),它利用不锈钢网来转移和汽化电子烟液,减少了一些可能使用更传统的“棉芯和线圈”方法产生的潜在毒物来源。与商用棉芯和线圈电子烟直接比较时,此前发现IS1.0(TT)的排放物总体上毒物水平较低。本研究评估了对该新型电子烟产品气溶胶的毒理学反应。使用包括监管遗传毒理学检测以及一些更现代的筛查方法在内的测试方法,将IS1.0(TT)引起的反应与3R4F参考卷烟引起的反应进行了比较。实验条件旨在便于测试该电子烟产品的气溶胶,在大多数情况下,其剂量大大超过3R4F对照物的剂量,结果显示几乎没有毒理学反应,并且与3R4F相比,在这些检测中显示出显著降低的效应。此外,本研究中测试的极端剂量表明,这种新型电子烟产品的毒物特征转化为较低的生物活性,这表明随着技术的发展,通过持续改进可以降低与电子烟相关的绝对风险危害水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fe8/7494588/aa2d9392a5b5/ga1.jpg

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