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超声香烟:化学成分和细胞毒性与加热线圈式烟弹电子烟相似。

Ultrasonic Cigarettes: Chemicals and Cytotoxicity are Similar to Heated-Coil Pod-Style Electronic Cigarettes.

机构信息

Department of Molecular, Cell, and Systems Biology. University of California, Riverside, California 92521, United States.

Department of Civil and Environmental Engineering, Portland State University, Portland, Oregon 97207, United States.

出版信息

Chem Res Toxicol. 2024 Aug 19;37(8):1329-1343. doi: 10.1021/acs.chemrestox.4c00085. Epub 2024 Jul 25.

Abstract

Our purpose was to test the hypothesis that ultrasonic cigarettes (u-cigarettes), which operate at relatively low temperatures, produce aerosols that are less harmful than heated-coil pod-style electronic cigarettes (e-cigarettes). The major chemicals in SURGE u-cigarette fluids and aerosols were quantified, their cytotoxicity and cellular effects were assessed, and a Margin of Exposure risk assessment was performed on chemicals in SURGE fluids. Four SURGE u-cigarette flavor variants ("Blueberry Ice," "Watermelon Ice," "Green Mint," and "Polar Mint") were evaluated. Flavor chemicals were quantified in fluids and aerosols using gas chromatography/mass spectrometry. Cytotoxicity and cell dynamics were assessed using the MTT assay, live-cell imaging, and fluorescence microscopy. WS-23 (a coolant) and total flavor chemical concentrations in SURGE were similar to e-cigarettes, while SURGE nicotine concentrations (13-19 mg/mL) were lower than many fourth generation e-cigarettes. Transfer efficiencies of dominant chemicals to aerosols in SURGE ranged from 44-100%. SURGE fluids and aerosols had four dominant flavor chemicals (>1 mg/mL). Toxic aldehydes were usually higher in SURGE aerosols than in SURGE fluids. SURGE fluids and aerosols had aldehyde concentrations significantly higher than pod-style e-cigarettes. Chemical constituents, solvent ratios, and aldehydes varied among SURGE flavor variants. SURGE fluids and aerosols inhibited cell growth and mitochondrial reductases, produced attenuated and round cells, and depolymerized actin filaments, effects that depended on pod flavor, chemical constituents, and concentration. The MOEs for nicotine, WS-23, and propylene glycol were <100 based on consumption of 1-2 SURGE u-cigarettes/day. Replacing the heating coil with a sonicator did not eliminate chemicals, including aldehydes, in aerosols or diminish toxicity in comparisons between SURGE and other e-cigarette pod products. The high concentrations of nicotine, WS-23, flavor chemicals, and aldehydes and the cytotoxicity of SURGE aerosols do not support the hypothesis that aerosols from u-cigarettes are less harmful than those from e-cigarettes.

摘要

我们的目的是验证一个假设,即工作在相对低温下的超声香烟(u 香烟)所产生的气溶胶比加热线圈式电子烟(电子烟)产生的气溶胶危害性更小。我们对 SURGE u 香烟烟液和气溶胶中的主要化学物质进行了定量分析,评估了它们的细胞毒性和细胞效应,并对 SURGE 烟液中的化学物质进行了暴露量评估。我们评估了四种 SURGE u 香烟口味变体(“蓝莓冰”、“西瓜冰”、“绿薄荷”和“极地薄荷”)。使用气相色谱/质谱法对烟液和气溶胶中的调味化学品进行了定量分析。使用 MTT 测定法、活细胞成像和荧光显微镜评估了细胞毒性和细胞动力学。WS-23(一种冷却剂)和 SURGE 中的总调味化学品浓度与电子烟相似,而 SURGE 尼古丁浓度(13-19mg/ml)低于许多第四代电子烟。SURGE 中主要化学物质向气溶胶的转移效率为 44-100%。SURGE 烟液和气溶胶中有四种主要调味化学品(>1mg/ml)。SURGE 气溶胶中的毒性醛通常高于烟液。SURGE 烟液和气溶胶中的醛浓度明显高于 pod 式电子烟。SURGE 口味变体之间的化学成分、溶剂比例和醛类物质存在差异。SURGE 烟液和气溶胶抑制细胞生长和线粒体还原酶,产生变形和圆形细胞,并使肌动蛋白丝解聚,这些作用取决于 pod 口味、化学成分和浓度。根据每天吸 1-2 支 SURGE u 香烟的消费情况,尼古丁、WS-23 和丙二醇的 MOE 值<100。用超声换能器代替加热线圈并不能消除气溶胶中的化学物质,包括醛类物质,也不能减轻 SURGE 与其他电子烟 pod 产品相比的毒性。SURGE 气溶胶中尼古丁、WS-23、调味化学品和醛类物质的高浓度以及其细胞毒性都不支持这样一个假设,即超声香烟产生的气溶胶比电子烟产生的气溶胶危害性更小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c55/11337213/34237f212d0b/tx4c00085_0001.jpg

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