MOD, POD和一次性POD电子烟气雾剂中的砷和砷种类:一项试点研究

Mina W. Tehrani, Angela D. Ahererra, Stefan Tanda, Rui Chen, Aryan Borole, W. Goessler, A. Rule
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摘要

电子烟(e- cigg)的日益普及引发了人们对电子烟使用对健康影响的质疑。以前的研究已经报道了从电子烟中暴露于砷(As)和其他金属(样物质)的可能性,但对吸入的气溶胶中As的形态知之甚少,这是毒性的重要决定因素。无机砷(iAs)种类AsIII和AsV通常比有机砷更危险。本研究旨在调查流行商业电子烟产品冷凝气溶胶中的总砷和特定砷,并将其与法规暴露限值进行比较。采用高效液相色谱法和电感耦合等离子体质谱法测定电子烟气溶胶凝聚物的砷含量。该分析包括三种类型的电子烟设备的样本:MODs, PODs和一次性pod (d-POD)设备。在所有23个分析的电子烟气溶胶冷凝物样品中都鉴定出了iAs物种,其中MODs的气溶胶浓度最高。本研究中在MOD装置中观察到的iAs几何平均(范围)浓度为2.3 (1.2-5.1)μ g/m3,超过了美国国家职业安全与健康研究所规定的15分钟或更短时间吸入暴露2 μ g/m3的建议暴露限值。这些初步结果表明,在某些MOD产品的可吸入气雾剂中,iAs物种的含量超过了iAs吸入的规定限值。
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Arsenic and arsenic species in MOD, POD, and disposable POD electronic cigarette aerosols: a pilot study
The growing popularity of electronic cigarettes (e-cig) has raised questions about the health effects of e-cig use, or vaping. Previous studies have reported on the potential of exposure to arsenic (As) and other metal(loid)s from vaping, but little is known about the speciation of As in the inhaled aerosols, an important determinant of toxicity. Inorganic As (iAs) species AsIII and AsV are generally more hazardous than organic As species. This study aimed to investigate total and speciated As in condensed aerosols of popular commercial e-cig products and to compare them with regulatory exposure limits. High-performance liquid chromatography and inductively-coupled plasma mass spectrometry were used for As measurements of e-cig aerosol condensates. The analysis included samples from three types of e-cig devices: MODs, PODs, and disposable pod (d-POD) devices. iAs species were identified in all 23 analyzed e-cig aerosol condensate samples, with the highest aerosol concentrations measured in MODs. The geometric mean (range) iAs concentration of 2.3 (1.2-5.1) µg/m3 observed in MOD devices in this study exceeded the recommended exposure limit of 2 µg/m3 for 15-min or shorter inhalation exposures set by the United States National Institute for Occupational Safety and Health. These preliminary results suggest that iAs species are present in inhalable aerosols of some MOD products at levels above regulatory limits for iAs inhalation.
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