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应用高分辨质谱和理论模型定量分析电子烟气溶胶中的多功能羰基化合物和有机酸。

Application of High-Resolution Mass Spectrometry and a Theoretical Model to the Quantification of Multifunctional Carbonyls and Organic Acids in e-Cigarette Aerosol.

机构信息

Department of Environmental Toxicology, University of California Davis, Davis, California 95616, United States.

Center for Health and the Environment, University of California Davis, Davis, California 95616, United States.

出版信息

Environ Sci Technol. 2020 May 5;54(9):5640-5650. doi: 10.1021/acs.est.9b07387. Epub 2020 Apr 23.

DOI:10.1021/acs.est.9b07387
PMID:32271013
Abstract

Electronic (e-) cigarette aerosol (particle and gas) is a complex mixture of chemicals, of which the profile is highly dependent on device operating parameters and e-liquid flavor formulation. The thermal degradation of the e-liquid solvents propylene glycol and glycerol often generates multifunctional carbonyls that are challenging to quantify because of unavailability of standards. We developed a theoretical method to calculate the relative electrospray ionization sensitivities of hydrazones of organic acids and carbonyls with 2,4-dinitrophenylhydrazine based on their gas-phase basicities (Δ). This method enabled quantification by high-performance liquid chromatography-high-resolution mass spectrometry HPLC-HRMS in the absence of chemical standards. Accurate mass and tandem multistage MS (MS) were used for structure identification of vaping products. We quantified five simple carbonyls, six hydroxycarbonyls, four dicarbonyls, three acids, and one phenolic carbonyl in the e-cigarette aerosol with Classic Tobacco flavor. Our results suggest that hydroxycarbonyls, such as hydroxyacetone, lactaldehyde, and dihydroxyacetone can be significant components in e-cigarette aerosols but have received less attention in the literature and have poorly understood health effects. The data support the radical-mediated e-liquid thermal degradation scheme that has been previously proposed and emphasize the need for more research on the chemistry and toxicology of the complex product formation in e-cigarette aerosols.

摘要

电子烟气溶胶(颗粒和气态)是一种复杂的化学物质混合物,其成分受设备操作参数和电子烟液口味配方的影响很大。电子烟液溶剂丙二醇和甘油的热降解通常会产生多功能羰基化合物,由于缺乏标准品,这些化合物很难定量。我们开发了一种理论方法,基于气相碱度(Δ),计算 2,4-二硝基苯肼与有机酸和羰基化合物的腙的相对电喷雾电离灵敏度。该方法在没有化学标准品的情况下,通过高效液相色谱-高分辨率质谱(HPLC-HRMS)进行定量。精确质量和串联多级 MS(MS)用于蒸气产品的结构鉴定。我们在经典烟草口味的电子烟气溶胶中定量了五种简单羰基化合物、六种羟基羰基化合物、四种二羰基化合物、三种酸和一种酚羰基化合物。我们的结果表明,羟基羰基化合物,如羟基丙酮、乳醛和二羟丙酮,可能是电子烟气溶胶中的重要成分,但在文献中受到的关注较少,其健康影响也知之甚少。该数据支持了先前提出的自由基介导的电子烟液热降解方案,并强调需要对电子烟气溶胶中复杂产物形成的化学和毒理学进行更多研究。

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