A Practical Framework for Novel Electronic Nicotine Delivery System Evaluation: Chemical and Toxicological Characterization of JUUL2 Aerosol and Comparison with Reference Cigarettes

Toxics Pub Date : 2024-01-04 DOI:10.3390/toxics12010041
David K. Cook, Guy Lalonde, Michael J. Oldham, Jiaming Wang, Austin L. Bates, Sifat Ullah, Christina Sulaiman, Karen Carter, Candice Jongsma, Gary Dull, I. G. Gillman
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Abstract

Electronic nicotine delivery systems (ENDSs) are designed as a non-combustible alternative to cigarettes, aiming to deliver nicotine without the harmful byproducts of tobacco combustion. As the category evolves and new ENDS products emerge, it is important to continually assess the levels of toxicologically relevant chemicals in the aerosols and characterize any related toxicology. Herein, we present a proposed framework for characterizing novel ENDS products (i.e., devices and formulations) and determining the reduced risk potential utilizing analytical chemistry and in vitro toxicological studies with a qualitative risk assessment. To demonstrate this proposed framework, long-term stability studies (12 months) analyzing relevant toxicant emissions from six formulations of a next-generation product, JUUL2, were conducted and compared to reference combustible cigarette (CC) smoke under both non-intense and intense puffing regimes. In addition, in vitro cytotoxicity, mutagenicity, and genotoxicity assays were conducted on aerosol and smoke condensates. In all samples, relevant toxicants under both non-intense and intense puffing regimes were substantially lower than those observed in reference CC smoke. Furthermore, neither cytotoxicity, mutagenicity, nor genotoxicity was observed in aerosol condensates generated under both intense and non-intense puffing regimes, in contrast to results observed for reference cigarettes. Following the proposed framework, the results demonstrate that the ENDS products studied in this work generate significantly lower levels of toxicants relative to reference cigarettes and were not cytotoxic, mutagenic, or genotoxic under these in vitro assay conditions.
新型电子尼古丁释放系统评估的实用框架:JUUL2 气溶胶的化学和毒理学特征以及与参考香烟的比较
电子尼古丁递送系统(ENDS)被设计为香烟的不可燃替代品,旨在递送尼古丁而不产生烟草燃烧的有害副产品。随着该类别产品的不断发展和新型 ENDS 产品的出现,持续评估气溶胶中与毒理学相关的化学物质含量并确定相关毒理学特征非常重要。在此,我们提出了一个拟议框架,用于描述新型 ENDS 产品(即设备和配方)的特征,并利用分析化学和体外毒理学研究以及定性风险评估来确定降低风险的可能性。为了证明这一拟议框架,我们进行了长期稳定性研究(12 个月),分析了下一代产品 JUUL2 的六种配方的相关毒物排放,并将其与非密集和密集吸食模式下的可燃卷烟(CC)烟雾进行了比较。此外,还对气溶胶和烟雾凝结物进行了体外细胞毒性、诱变性和遗传毒性检测。在所有样本中,非密集和密集抽吸模式下的相关毒性物质均大大低于参考 CC 烟雾中的相关毒性物质。此外,在高强度和非高强度抽吸条件下产生的气溶胶冷凝物中均未观察到细胞毒性、致突变性或遗传毒性,这与在参考香烟中观察到的结果截然不同。根据提出的框架,研究结果表明,这项工作中研究的ENDS产品产生的毒物水平明显低于参考香烟,并且在这些体外检测条件下不具有细胞毒性、致突变性或遗传毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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