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Development and characterization of electronic-cigarette exposure generation system (Ecig-EGS) for the physico-chemical and toxicological assessment of electronic cigarette emissions

机译:电子烟曝光生成系统(ECIG-EGS)对电子烟排放的物理化学和毒理学评估的开发与鉴定

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摘要

Electronic cigarettes (e-cig) have been introduced as a nicotine replacement therapy and have gained increasing attention and popularity. However, while findings on possible toxicological implications continue to grow, major knowledge gaps on both the complex chemistry of the exposure and toxicity exist, prohibiting public health assessors from assessing risks. Here, a versatile electronic cigarette exposure generation system (Ecig-EGS) has been developed and characterized. Ecig-EGS allows generation of real world e-cig emission profiles under controlled operational conditions, real time monitoring and time-integrated particle/gas sampling for physico-chemical characterization, and toxicological assessment (both in vitro and in vivo). The platform is highly versatile and can be used with all e-cig types. It enables generation of precisely controlled e-cig exposure while critical operational parameters and environmental mixing conditions can be adjusted in a systematic manner to assess their impact on complex chemistry and toxicity of emissions. Results proved the versatility and reproducibility of Ecig-EGS. E-cig emission was found to contain 10(6)-10(7) particles/cm(3) with the mode diameter around 200 nm, under air change rate of 60/h. Elevated CO2 and volatile organic specie generation was also observed. Furthermore, environmental mixing conditions also influenced e-cig emission profile. The versatility of Ecig-EGS will enable linking of operational and environmental parameters with exposure chemistry and toxicology and help in assessing health risks.
机译:电子香烟(E-CIG)已被引入尼古丁替代疗法,并获得了越来越多的关注和普及。然而,在可能的毒理学影响方面的结果继续增长,禁止公共卫生评估员评估风险的公共卫生评估员,而存在对可能的毒理学影响的可能性存在重大的知识差距。这里,已经开发并表征了一种多功能电子烟曝光生成系统(ECIG-EGS)。 ECIG-EGS允许在受控操作条件下产生现实世界E-CIG发射型材,实时监测和时间集成粒子/气体取样,用于物理化学表征,毒理学评估(体外和体内)。该平台高度多功能,可与所有E-CIG类型一起使用。它能够产生精确控制的E-CIG暴露,而可以以系统的方式调整关键操作参数和环境混合条件,以评估它们对复杂化学和排放的毒性的影响。结果证明了ECIG-EGS的多功能性和再现性。发现e-CIG发射含有10(6)-10(7)个颗粒/ cm(3),该颗粒直径约为200nm,在60 / h的空气变化率下。还观察到二氧化碳升高和挥发性有机物质生成。此外,环境混合条件也影响了E-CIG排放型材。 ECIG-EGS的多功能性将使运营和环境参数与曝光化学和毒理学进行连接,并有助于评估健康风险。

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