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Biological effects in lung cells In vitro of exhaust aerosols from a gasoline passenger car with and without particle filter

机译:对肺细胞的生物学影响体外汽油车中的气溶胶的排放

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摘要

Exhaust aerosol from gasoline passenger cars is a complex mixture of a particulate fraction as well as volatile compounds. In contrary to the observed adverse effects of diesel exhaust particles the gasoline exhaust has, however, received little attention so far. The aim of this study was to perform a comparison of exhaust composition and biological responses from freshly produced non-filtered exhaust as well as from exhaust filtered with a noncoated gasoline particle filter (GPF). A 3D model of the human epithelial airway barrier was exposed to the exhaust directly at the air-liquid interface and different effects such as cytotoxicity, antioxidative response, pro- inflammation, and activation of the aryl hydrocarbon receptor (AhR) were studied. In addition, genotoxicity was assessed using the Ames test. By an online analysis of the exhaust, it has been shown that the GPF efficiently filters the particle count in both the cold and warm phase when the new European driving cycle (NEDC) was applied. The lung cell tests revealed that the use of the GPF increased the antioxidative glutathionine (GSH) response as well as the pro-inflammatory potential, i.e., IL-8, expression, indicating increased cell stimulation by the volatile compounds alone. The removal of the particulate fraction, however, decreased significantly the AhR activation in comparison to unfiltered exhaust, and the exhaust genotoxicity was reduced as tested by the Ames test. In conclusion, GPF exhaust did not completely reduce the adverse effects of gasoline exhaust in the in vitro test and further experiments with a coated GPF are needed in the future.
机译:汽油乘用车排出的气溶胶是颗粒物和挥发性化合物的复杂混合物。与观察到的柴油机废气颗粒的不利影响相反,到目前为止,汽油机废气很少受到关注。这项研究的目的是比较新鲜生产的未过滤排气以及使用无涂层汽油颗粒过滤器(GPF)过滤的排气的排气成分和生物学响应。人类上皮气道屏障的3D模型直接在气液界面处暴露于尾气,并研究了不同的作用,例如细胞毒性,抗氧化反应,促炎作用和芳烃受体(AhR)的活化。此外,使用Ames试验评估了遗传毒性。通过对废气的在线分析,结果表明,当应用新的欧洲行驶周期(NEDC)时,GPF有效地过滤了冷和热阶段的颗粒数。肺细胞测试显示,使用GPF可增加抗氧化型谷胱甘肽(GSH)反应以及促炎潜能(即IL-8)表达,表明仅通过挥发性化合物刺激细胞。然而,与未过滤的排气相比,微粒部分的去除显着降低了AhR活化,并且通过Ames试验测试,降低了排气的遗传毒性。总之,在体外测试中,GPF排气并不能完全减轻汽油排气的不利影响,将来需要使用涂层GPF进行进一步的实验。

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