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首页> 外文期刊>Cancer prevention research. >Comparison of Systemic Exposure to Toxic and/or Carcinogenic Volatile Organic Compounds (VOC) during Vaping, Smoking, and Abstention
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Comparison of Systemic Exposure to Toxic and/or Carcinogenic Volatile Organic Compounds (VOC) during Vaping, Smoking, and Abstention

机译:在Vaping,吸烟和弃权期间对毒性和/或致癌挥发性有机化合物(VOC)进行系统性暴露的比较

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摘要

Comparisons of systemic exposure to toxicants during monitored cigarette smoking, electronic cigarette (e-cigarette) use, and abstention are needed to enhance our understanding of the risks of e-cigarette use (vaping). In a crossover study, we measured 10 mercapturic acid metabolites of volatile organic compounds (VOCs) in 24-hour urine samples collected from 36 dual users (8 women) of e-cigarettes and cigarettes during 2 days of ad libitum vaping or cigarette-only use, and 2 days of enforced abstention. Concentrations of VOC metabolites were higher during smoking compared with vaping, except for the methylating agents' metabolite. The fold-difference in concentrations when smoking relative to vaping ranged from 1.31(1.06-1.61; geometric mean, 95% confidence interval; 1,3-butadiene) to 7.09 (5.88-8.54; acrylonitrile). Metabolites of acrylamide [fold difference of 1.21 (1.03-1.43)] and benzene [1.46 (1.13-1.90)] were higher during vaping compared with abstention. The 1,3-butadiene and propylene oxide metabolites were higher in variable-power tank users compared with users of cig-a-likes. E-cigarettes expose users to lower levels of toxic VOCs compared with cigarette smoking, supporting their harm reduction potential among smokers. However, some e-cigarettes expose users to VOCs such as acrylamide, benzene, and propylene oxide, and may pose health risks to nonsmoking users. The results of our study will inform regulators in assessing e-cigarettes with respect to the balance between its potential harm reduction for adult smokers and risk to nonsmoking users.
机译:在受监控的吸烟中的系统暴露于毒物,电子烟(电子烟)使用和弃权需要比较,以提高我们对电子烟的风险(Vaping)的理解。在交叉研究中,我们在24小时尿液样本中测量了来自36小时的尿液样本的挥发性有机化合物(VOC)的氟酸代谢物,在AD Libitum Vaping或卷烟的2天内从36人的电子烟和香烟中收集使用,以及执行额外的2天。除了甲基化试剂的代谢物之外,吸烟期间,吸烟期间霉菌代谢物的浓度较高。吸烟时浓度的折叠差异范围为1.31(1.06-1.61;几何平均值,95%置信区间; 1,3-丁二烯)至7.09(5.88-8.54;丙烯腈)。与弃权相比,丙烯酰胺的代谢产物[1.21(1.03-1.43)]和苯(1.03-1.43)]和苯(1.46(1.46(1.13-1.90)]更高。可变功率罐用户的1,3-丁二烯和环氧丙烷代谢物与CIG-A-Likes的用户相比较高。电子卷烟将用户暴露于与吸烟吸烟相比降低有毒转霉液,支持吸烟者的损害潜力。然而,一些电子卷烟将用户暴露给丙烯酰胺,苯和环氧丙烷等VOC,并且可能对非莫斯文用户带来健康风险。我们研究的结果将告知监管机构在评估成人吸烟者潜在伤害之间的平衡方面评估电子卷烟,以及对非莫斯文用户的风险。

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  • 来源
    《Cancer prevention research.》 |2020年第2期|共10页
  • 作者单位

    Univ Calif San Francisco Zuckerberg San Francisco Gen Hosp Dept Med Clin Pharmacol Res Program;

    Univ Bern Bern Univ Hosp Dept Gen Internal Med Clin Pharmacol &

    Toxicol Inselspital Bern;

    Univ Calif San Francisco Zuckerberg San Francisco Gen Hosp Dept Med Clin Pharmacol Res Program;

    Univ Calif San Francisco Zuckerberg San Francisco Gen Hosp Dept Med Clin Pharmacol Res Program;

    Univ Calif San Francisco Zuckerberg San Francisco Gen Hosp Dept Med Clin Pharmacol Res Program;

    Univ Calif San Francisco Zuckerberg San Francisco Gen Hosp Dept Med Clin Pharmacol Res Program;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
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