Current Knowledge and Challenges of Particle Size Measurements of Mainstream E-Cigarette Aerosols and their Implication on Respiratory Dosimetry

Hua Jiang, Xiang Gao, Yong Gao, Yatao Liu
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Abstract

The E-cigarette has been promoted as an alternative nicotine delivery device with potentially fewer toxicant emissions. The objective of this review is to summarize the current knowledge on the particle size distribution (PSD) of e-cigarette emissions and to analyze the knowledge gaps between existing particle size measurements and the vision toward harm reduction from e-cigarette use. Here, we focus on firstly describing the physical parameters used to characterize PSD, followed by comparing particle size measurement approaches, investigating the factors that impact the PSD of e-cigarette mainstream aerosols, and conclude by linking size distribution to the respiratory dosimetry by demonstrating the modeling results of particle deposition in the respiratory tract. This review calls for a harmonized testing protocol to conduct inter-comparisons and further understand e-cigarette particle sizes. Among the influencing factors investigated, puff topography, operation power, flavorings, PG/VG ratio, and nicotine strength impose a substantial impact on the PSD, but the underlying mechanisms have not yet been fully investigated. The effects brought by the type of device refill and nicotine are yet inconclusive due to lack of evidence. Coil aging has no significant impact on the PSD of e-cigarette aerosols within the coil lifetime. Lastly, while computational models of particle deposition have been adopted to profile the deposition of e-cigarette mainstream emissions, existing models have limited applicability and generality when dealing with e-cigarette aerosols that have high volatility and hygroscopicity, which can dynamically evaporate or grow during the transport process. Additionally, the size-dependent chemical composition (e.g., nicotine and harmful and potentially harmful constituents) of e-cigarette aerosols is unknown, impeding the understanding of the health effects of e-cigarette use. Therefore, it is essential for future studies to bridge these knowledge gaps and unveil the mechanisms determining PSD and respiratory deposition.
主流电子烟气溶胶粒径测量的现状和挑战及其对呼吸剂量学的影响
电子烟一直被宣传为一种替代尼古丁输送装置,它可能释放的有毒物质更少。本综述的目的是总结目前关于电子烟排放的粒径分布(PSD)的知识,并分析现有粒径测量与减少电子烟使用危害的愿景之间的知识差距。本文首先描述了表征PSD的物理参数,然后比较了粒径测量方法,研究了影响电子烟主流气溶胶PSD的因素,最后通过展示呼吸道颗粒沉积的建模结果,将粒径分布与呼吸剂量学联系起来。这篇综述呼吁制定统一的测试方案,以进行相互比较,并进一步了解电子烟的颗粒大小。在研究的影响因素中,烟状地形、操作功率、香料、PG/VG比和尼古丁强度对PSD有较大影响,但其潜在机制尚未得到充分研究。由于缺乏证据,这种类型的设备补充和尼古丁带来的影响还没有定论。卷材老化对电子烟气溶胶的PSD在卷材寿命内无显著影响。最后,虽然粒子沉积的计算模型已经被用于描述电子烟主流排放物的沉积,但现有模型在处理具有高挥发性和吸湿性的电子烟气溶胶时适用性和通用性有限,这些气溶胶在运输过程中会动态蒸发或生长。此外,电子烟气雾剂的大小依赖化学成分(如尼古丁和有害和潜在有害成分)尚不清楚,阻碍了对使用电子烟对健康影响的了解。因此,未来的研究必须弥合这些知识差距,揭示PSD和呼吸沉积的决定机制。
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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