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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >In vitro toxicological evaluation of emissions from catalytic oxidation removal of industrial VOCs by air/liquid interface (ALI) exposure system in repeated mode
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In vitro toxicological evaluation of emissions from catalytic oxidation removal of industrial VOCs by air/liquid interface (ALI) exposure system in repeated mode

机译:在重复模式下,空气/液体界面(ALI)曝光系统催化氧化除去工业VOC的排放的体外毒理学评价

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Toxicity of toluene and by-products formed during its catalytic oxidative degradation was studied in human bronchial BEAS-2B cells repeatedly exposed. BEAS-2B cells were exposed using an Air-Liquid Interface (ALI) System (Vitrocell (R)) for 1 h per day during 1, 3 or 5 days to gaseous flows: toluene vapors (100 and 1000 ppm) and outflow after catalytic oxidation of toluene (10 and 100%). After exposure to gaseous flow, cytotoxicity, inflammatory response and Xenobiotic Metabolism Enzymes (XME) gene expression were investigated. No significant cytotoxicity was found after 5 days for every condition of exposure. After cells exposure to catalytic oxidation flow, IL-6 level increased no significantly in a time- and dose-dependent way, while an inverted U-shaped profile of IL-8 secretion was observed. XME genes induction, notably CYP2E1 and CYP2F1 results were in line with the presence of unconverted toluene and benzene formed as a by-product, detected by analytical methods. Exposure to pure toluene also demonstrated the activation of these XMEs involved in its metabolism. Repeated exposure permits to show CYP1A1, CYP1B1 and CY2S1 expression, probably related to the formation of other by-products, as PAHs, not detected by standard analytical methods used for the development of catalysts.
机译:在人支气管BEA-2B细胞中研究了在催化氧化降解期间形成的甲苯和副产物的毒性。在1,3或5天内,使用空气液界面(ALI)系统(vitrocell)(vitrocell)(vitrocell)(vitrocell(r))暴露于气态流量:甲苯蒸汽(100和1000ppm)和催化剂外流出甲苯氧化(10和100%)。在暴露于气体流动后,研究了细胞毒性,炎症反应和异蛋白代谢酶(XME)基因表达。在5天后没有显着的细胞毒性,每种曝光条件都会发现。在细胞暴露于催化氧化流动后,IL-6水平以时间和剂量依赖性的方式显着增加,而观察到IL-8分泌的倒的U形曲线。 XME基因诱导,特别是CYP2E1和CYP2F1结果与通过分析方法检测的未转化的甲苯和苯形成为副产物的存在。暴露于纯甲苯还证明了这些XME涉及其新陈代谢的激活。重复的曝光允许展示CYP1A1,CYP1B1和CY2S1表达,可能与其他副产物的形成有关,作为PAHS,未被用于开发催化剂的开发的标准分析方法。

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