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共存的环境细颗粒物加剧了电子烟对人体呼吸道细胞的毒性。

Co-existing ambient fine particulate matter exacerbated electronic cigarette toxicity on human respiratory cells.

机构信息

Department of Environmental Health, School of Public Health, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Science and Technology Museum of Inner Mongolia, Hohhot, Inner Mongolia, China.

出版信息

Inhal Toxicol. 2024 Aug-Sep;36(7-8):461-473. doi: 10.1080/08958378.2024.2416428. Epub 2024 Oct 21.

DOI:10.1080/08958378.2024.2416428
PMID:39431444
Abstract

Respiratory co-exposure to ambient PM and electronic cigarettes (e-cigarettes) frequently occurs in public. However, the combined effects on human respiratory health have not been well documented. To discuss potential co-effects and possible biological mechanisms, A549/THP-1 co-cultures and BEAS-2B cells were exposed to unvapedtobacco or mint-flavored e-liquids (0-7.2% v/v), e-cigarette aerosol extract (ECE, 0-50% v/v), PM (60 μg/mL), or PM + ECE for 24 h. Cell viability assessments on e-liquids, ECE, PM + ECE showed that the mint flavor exhibited higher cytotoxicity compared to the tobacco flavor in both A549/THP-1 and BEAS-2B. However, the influence of flavors on ROS levels and mRNA expression of inflammatory markers (IL-6, TNF-α, IL-8, IL-1β) after ECE exposure demonstrated inconsistency in the two cell models. PM + ECE treatment notably elevated ROS production and inflammation responses compared to ECE alone exposure. Only co-exposure induced a significant increase in nuclear transcription factor-κB p65 (NF-κB p65) and NOD-like receptor 3 (NLRP3) protein expression regardless of flavors. Our results indicate that PM-treated cells exacerbate the adverse effects induced by ECE in both A549/THP-1 and BEAS-2B cells. Flavors in unvaped e-liquids affect cytotoxicity, oxidative stress and inflammation response, but these effects vary depending on the vaping process and the specific cell line.

摘要

在公共场所,人们经常会同时接触环境 PM 和电子烟(e-cigarettes)。然而,其对人体呼吸健康的综合影响尚未得到充分证实。为了探讨潜在的共同作用和可能的生物学机制,我们使用 A549/THP-1 共培养细胞和 BEAS-2B 细胞作为研究模型,分别将其暴露于未雾化的烟草或薄荷味电子烟液(0-7.2% v/v)、电子烟气溶胶提取物(ECE,0-50% v/v)、PM(60μg/mL)或 PM+ECE 中 24 小时。细胞活力评估结果显示,与烟草味 e-liquid 相比,薄荷味 e-liquid、ECE 和 PM+ECE 对 A549/THP-1 和 BEAS-2B 细胞的毒性更高。然而,ECE 暴露后,风味对 ROS 水平和炎症标志物(IL-6、TNF-α、IL-8、IL-1β)mRNA 表达的影响在两种细胞模型中表现出不一致性。与单独 ECE 暴露相比,PM+ECE 处理显著增加了 ROS 产生和炎症反应。仅共同暴露会诱导核转录因子-κB p65(NF-κB p65)和 NOD 样受体 3(NLRP3)蛋白表达显著增加,而与风味无关。我们的研究结果表明,PM 处理的细胞会加剧 ECE 在 A549/THP-1 和 BEAS-2B 细胞中诱导的不良反应。未雾化电子烟液中的风味会影响细胞毒性、氧化应激和炎症反应,但这些影响因雾化过程和特定细胞系而异。

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