Dusautoir Romain, Zarcone Gianni, Verriele Marie, Garçon Guillaume, Fronval Isabelle, Beauval Nicolas, Allorge Delphine, Riffault Véronique, Locoge Nadine, Lo-Guidice Jean-Marc, Anthérieu Sébastien
Univ. Lille, CHU Lille, Institut Pasteur de Lille, ULR 4483, IMPECS - IMPact de l'Environnement Chimique sur la Santé humaine, F-59000, Lille, France.
IMT Lille Douai, Univ. Lille, SAGE, F-59000, Lille, France.
J Hazard Mater. 2021 Jan 5;401:123417. doi: 10.1016/j.jhazmat.2020.123417. Epub 2020 Jul 7.
The electronic cigarettes (e-cigs) and more recently the heated tobacco products (HTP) provide alternatives for smokers as they are generally perceived to be less harmful than conventional cigarettes. However, it is crucial to compare the health risks of these different emergent devices, in order to determine which product should be preferred to substitute cigarette. The present study aimed to compare the composition of emissions from HTP, e-cigs and conventional cigarettes, regarding selected harmful or potentially harmful compounds, and their toxic impacts on the human bronchial epithelial BEAS-2B cells. The HTP emitted less polycyclic aromatic hydrocarbons and carbonyls than the conventional cigarette. However, amounts of these compounds in HTP aerosols were still higher than in e-cig vapours. Concordantly, HTP aerosol showed reduced cytotoxicity compared to cigarette smoke but higher than e-cig vapours. HTP and e-cig had the potential to increase oxidative stress and inflammatory response, in a manner similar to that of cigarette smoke, but after more intensive exposures. In addition, increasing e-cig power impacted levels of certain toxic compounds and related oxidative stress. This study provides important data necessary for risk assessment by demonstrating that HTP might be less harmful than tobacco cigarette but considerably more harmful than e-cig.
电子烟和最近出现的加热烟草制品(HTP)为吸烟者提供了替代选择,因为人们普遍认为它们比传统香烟危害更小。然而,比较这些不同新兴产品的健康风险至关重要,以便确定哪种产品更适合替代香烟。本研究旨在比较HTP、电子烟和传统香烟在选定的有害或潜在有害化合物方面的排放成分,以及它们对人支气管上皮BEAS-2B细胞的毒性影响。HTP排放的多环芳烃和羰基化合物比传统香烟少。然而,HTP气溶胶中这些化合物的含量仍高于电子烟蒸汽中的含量。相应地,与香烟烟雾相比,HTP气溶胶的细胞毒性有所降低,但高于电子烟蒸汽。HTP和电子烟有增加氧化应激和炎症反应的潜力,其方式与香烟烟雾类似,但需要更强烈的暴露。此外,增加电子烟功率会影响某些有毒化合物的水平和相关的氧化应激。这项研究通过证明HTP可能比烟草香烟危害小,但比电子烟危害大得多,为风险评估提供了重要数据。