首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Comparative Analysis of Toxic Responses of Organic Extracts from Diesel and Selected Alternative Fuels Engine Emissions in Human Lung BEAS-2B Cells
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Comparative Analysis of Toxic Responses of Organic Extracts from Diesel and Selected Alternative Fuels Engine Emissions in Human Lung BEAS-2B Cells

机译:柴油中有机提取物与某些替代燃料发动机排放物对人肺BEAS-2B细胞毒性反应的比较分析

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摘要

This study used toxicogenomics to identify the complex biological response of human lung BEAS-2B cells treated with organic components of particulate matter in the exhaust of a diesel engine. First, we characterized particles from standard diesel (B0), biodiesel (methylesters of rapeseed oil) in its neat form (B100) and 30% by volume blend with diesel fuel (B30), and neat hydrotreated vegetable oil (NEXBTL100). The concentration of polycyclic aromatic hydrocarbons (PAHs) and their derivatives in organic extracts was the lowest for NEXBTL100 and higher for biodiesel. We further analyzed global gene expression changes in BEAS-2B cells following 4 h and 24 h treatment with extracts. The concentrations of 50 µg extract/mL induced a similar molecular response. The common processes induced after 4 h treatment included antioxidant defense, metabolism of xenobiotics and lipids, suppression of pro-apoptotic stimuli, or induction of plasminogen activating cascade; 24 h treatment affected fewer processes, particularly those involved in detoxification of xenobiotics, including PAHs. The majority of distinctively deregulated genes detected after both 4 h and 24 h treatment were induced by NEXBTL100; the deregulated genes included, e.g., those involved in antioxidant defense and cell cycle regulation and proliferation. B100 extract, with the highest PAH concentrations, additionally affected several cell cycle regulatory genes and p38 signaling.
机译:这项研究使用毒理基因组学来鉴定用柴油机排气中的颗粒物有机成分处理过的人肺BEAS-2B细胞的复杂生物学反应。首先,我们对标准柴油(B0),生物柴油(菜籽油的甲酯),其纯净形式(B100)和30%体积比与柴油燃料(B30)的混合物以及净加氢处理的植物油(NEXBTL100)进行了表征。 NEXBTL100的有机提取物中多环芳烃(PAHs)及其衍生物的浓度最低,而生物柴油的浓度更高。我们进一步分析了提取物处理4 h和24 h后BEAS-2B细胞中的全局基因表达变化。 50 µg提取物/ mL的浓度引起相似的分子反应。处理4小时后诱发的常见过程包括抗氧化剂防御,异生素和脂质的代谢,促凋亡刺激的抑制或纤溶酶原激活级联的诱导。 24小时治疗影响较少的过程,尤其是那些涉及异种生物(包括PAHs)排毒的过程。 NEXBTL100诱导了在处理4小时和24小时后检测到的大多数明显失调的基因。失调的基因包括例如涉及抗氧化剂防御以及细胞周期调节和增殖的基因。具有最高PAH浓度的B100提取物还影响了几个细胞周期调控基因和p38信号传导。

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