El-Kaassamani Malak, Yen Miaoshan, Talih Soha, El-Hellani Ahmad
Department of Chemistry, American University of Beirut Faculty of Arts and Sciences, Beirut, Lebanon.
Department of Biostatistics, Virginia Commonwealth University School of Medicine, Richmond, Virginia, USA.
Tob Control. 2022 May 13. doi: 10.1136/tobaccocontrol-2021-056986.
To highlight the general features of IQOS literature focusing on the chemical analysis of IQOS emissions.
PubMed, Web of Science and Scopus databases were searched on 8 November 2021 using the terms 'heated tobacco product', 'heat-not-burn', 'IQOS' and 'tobacco heating system' with time restriction (2010-2021). The search yielded 5480 records.
Relevant publications on topics related to IQOS assessment were retrieved (n=341). Two reviewers worked separately and reached agreement by consensus.
Data on author affiliation and funding, article type and date of publication were extracted. Publications were categorised depending on their focus and outcomes. Data on IQOS emissions from the chemical analysis category were extracted.
Of the included publications, 25% were published by Philip Morris International (PMI) affiliates or PMI-funded studies. PMI-sponsored publications on emissions, toxicology assessments and health effects were comparable in number to those reported by independent research, in contrast to publications on IQOS use, market trends and regulation. Data on nicotine yield, carbonyl emissions, other mainstream emissions, secondhand emissions and IQOS waste were compared between data sources to highlight agreement or disagreement between PMI-sponsored and independent research.
Our analysis showed agreement between the data sources on nicotine yield from IQOS under the same puffing conditions. Also, both sources agreed that IQOS emits significantly reduced levels of some emissions compared with combustible cigarettes. However, independent studies and examination of PMI's data showed significant increases in other emissions from and beyond the Food and Drug Administration's harmful and potentially harmful constituents list.
重点介绍有关IQOS文献的一般特征,重点是IQOS烟雾的化学分析。
2021年11月8日在PubMed、科学网和Scopus数据库中进行检索,使用检索词“加热烟草制品”“加热不燃烧”“IQOS”和“烟草加热系统”,并设置时间限制(2010 - 2021年)。检索结果为5480条记录。
检索与IQOS评估相关主题的相关出版物(n = 341)。两名评审员独立工作,通过共识达成一致。
提取作者所属机构和资金、文章类型及发表日期的数据。出版物根据其重点和结果进行分类。提取化学分析类别中有关IQOS烟雾的数据。
在所纳入的出版物中,25%由菲利普莫里斯国际公司(PMI)附属机构或PMI资助的研究发表。PMI赞助的关于烟雾、毒理学评估和健康影响的出版物数量与独立研究报告的数量相当,这与关于IQOS使用、市场趋势和监管的出版物形成对比。比较不同数据源之间关于尼古丁产量、羰基排放、其他主流排放、二手排放和IQOS废弃物的数据,以突出PMI赞助研究和独立研究之间的一致或分歧。
我们的分析表明,在相同抽吸条件下,不同数据源关于IQOS尼古丁产量的数据一致。此外,两个数据源都认为,与可燃卷烟相比,IQOS某些排放物的水平显著降低。然而,独立研究以及对PMI数据的审查显示,除食品药品监督管理局列出的有害和潜在有害成分之外,IQOS的其他排放物显著增加。