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Oxidative potential of secondary organic aerosols produced from photooxidation of different hydrocarbons using outdoor chamber under ambient sunlight

机译:在室外阳光下,使用室外气室,由不同碳氢化合物的光氧化产生的二次有机气溶胶的氧化势

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The oxidative potential of various secondary organic aerosols (SOA) was measured using dithiothreitol (DTT) assay to understand how organic aerosols react with cellular materials. SOA was produced via the photooxidation of four different hydrocarbons (toluene, 1,3,5-trimethylbenzene, isoprene and alpha-pinene) in the presence of NOx using a large outdoor photochemical smog chamber. The DTT consumption rate was normalized by the aerosol mass, which is expressed as DTTmass. Toluene SOA and isoprene SOA yielded higher DTTmass than 1,3,5-trimethylbenzene SOA or alpha-pinene SOA. In order to discover the correlation between the molecular structure and oxidative potential, the DTT responses of selected model compounds were also measured. Among them, conjugated aldehydes, quinones, and H2O2 showed considerable DTT response. To investigate the correlation between DTT response and cell responses in vitro, the expression of biological markers, i.e. IL-6, IL-8, and HMOX-1 were studied using small airway epithelial cells. Higher cellular expression of IL-8 was observed with toluene SOA exposure compared to 1,3,5-trimethylbenzene SOA exposure, which aligned with the results from DTT assay. Our study also suggests that within the urban atmosphere, the contribution of toluene SOA and isoprene SOA to the oxidative potential of ambient SOA will be more significant than that of alpha-pinene SOA. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用二硫苏糖醇(DTT)测定法测量了各种次级有机气溶胶(SOA)的氧化电位,以了解有机气溶胶如何与细胞物质发生反应。 SOA是在大型室外光化学烟雾室中,在NOx存在下,通过四种不同碳氢化合物(甲苯,1,3,5-三甲基苯,异戊二烯和α-pine烯)的光氧化产生的。 DTT消耗率通过气溶胶质量归一化,表示为DTT质量。甲苯SOA和异戊二烯SOA比1,3,5-三甲基苯SOA或α-pine烯SOA产生更高的DTT质量。为了发现分子结构与氧化电位之间的相关性,还测量了所选模型化合物的DTT响应。其中,共轭醛,醌和H2O2表现出相当大的DTT反应。为了研究体外DTT应答与细胞应答之间的相关性,使用小气道上皮细胞研究了生物学标记即IL-6,IL-8和HMOX-1的表达。与1,3,5-三甲基苯SOA暴露相比,甲苯SOA暴露观察到更高的IL-8细胞表达,这与DTT分析的结果一致。我们的研究还表明,在城市大气中,甲苯SOA和异戊二烯SOA对环境SOA氧化电位的贡献将比α-pine烯SOA更为重要。 (C)2016 Elsevier Ltd.保留所有权利。

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