Jeon Jennifer, Zhang Qian, Chepaitis Patrick S, Greenwald Roby, Black Marilyn, Wright Christa
Chemical Insights Research Institute, UL Research Institutes, Marietta, GA 30067, USA.
School of Public Health, Georgia State University, Atlanta, GA 303132, USA.
Toxics. 2023 Feb 7;11(2):155. doi: 10.3390/toxics11020155.
Electronic nicotine delivery systems (ENDS) aerosols are complex mixtures of chemicals, metals, and particles that may present inhalation hazards and adverse respiratory health risks. Despite being considered a safer alternative to tobacco cigarettes, metal exposure levels and respiratory effects associated with device aging and vaping frequency have not been fully characterized. In this study, we utilize an automated multi-channel ENDS aerosol generation system (EAGS) to generate aerosols from JUUL pod-type ENDS using tobacco-flavored e-liquid. Aerosol puff fractions (1-50) and (101-150) are monitored and sampled using various collection media. Extracted aerosols are prepared for metal and toxicological analysis using human primary small airway epithelial cells (SAEC). ENDS aerosol-mediated cellular responses, including reactive oxygen species (ROS), oxidative stress, cell viability, and DNA damage, are evaluated after 24 h and 7-day exposures. Our results show higher particle concentrations in later puff fractions (0.135 mg/m) than in initial puff fractions (0.00212 mg/m). Later puff fraction aerosols contain higher toxic metal concentrations, including chromium, copper, and lead, which elicit increased levels of ROS followed by significant declines in total glutathione and cell viability. Notably, a 30% increase in DNA damage was observed after 7 days because of later puff fraction exposures. This work is consistent with ENDS aerosols becoming more hazardous across the use of pre-filled pod devices, which may threaten respiratory health.
电子尼古丁传送系统(ENDS)气雾剂是化学物质、金属和颗粒的复杂混合物,可能存在吸入危害和呼吸道健康风险。尽管被认为是比香烟更安全的替代品,但与设备老化和吸电子烟频率相关的金属暴露水平和呼吸道影响尚未完全明确。在本研究中,我们利用自动多通道ENDS气雾剂生成系统(EAGS),使用烟草味电子烟液从JUUL烟弹型ENDS生成气雾剂。使用各种收集介质监测并采集气雾剂抽吸部分(1 - 50)和(101 - 150)。使用人原代小气道上皮细胞(SAEC)对提取的气雾剂进行金属和毒理学分析准备。在暴露24小时和7天后,评估ENDS气雾剂介导的细胞反应,包括活性氧(ROS)、氧化应激、细胞活力和DNA损伤。我们的结果显示,后期抽吸部分(0.135毫克/立方米)的颗粒浓度高于初始抽吸部分(0.00212毫克/立方米)。后期抽吸部分的气雾剂含有更高浓度的有毒金属,包括铬、铜和铅,这些金属会引发ROS水平升高,随后总谷胱甘肽和细胞活力显著下降。值得注意的是,由于后期抽吸部分的暴露,7天后观察到DNA损伤增加了30%。这项工作与在使用预填充烟弹设备过程中ENDS气雾剂变得更具危害性一致,这可能会威胁呼吸道健康。