首页> 美国卫生研究院文献>International Journal of Molecular Sciences >The Biological Effects of Complete Gasoline Engine Emissions Exposure in a 3D Human Airway Model (MucilAirTM) and in Human Bronchial Epithelial Cells (BEAS-2B)
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The Biological Effects of Complete Gasoline Engine Emissions Exposure in a 3D Human Airway Model (MucilAirTM) and in Human Bronchial Epithelial Cells (BEAS-2B)

机译:在3D人气道模型(MucilAirTM)和人支气管上皮细胞(BEAS-2B)中完全汽油发动机排放物暴露的生物效应

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摘要

The biological effects induced by complete engine emissions in a 3D model of the human airway (MucilAir ) and in human bronchial epithelial cells (BEAS-2B) grown at the air–liquid interface were compared. The cells were exposed for one or five days to emissions generated by a Euro 5 direct injection spark ignition engine. The general condition of the cells was assessed by the measurement of transepithelial electrical resistance and mucin production. The cytotoxic effects were evaluated by adenylate kinase (AK) and lactate dehydrogenase (LDH) activity. Phosphorylation of histone H2AX was used to detect double-stranded DNA breaks. The expression of the selected 370 relevant genes was analyzed using next-generation sequencing. The exposure had minimal effects on integrity and AK leakage in both cell models. LDH activity and mucin production in BEAS-2B cells significantly increased after longer exposures; DNA breaks were also detected. The exposure affected and expression in MucilAir . There were no effects of this kind observed in BEAS-2B cells; in this system gene expression was rather affected by the time of treatment. The type of cell model was the most important factor modulating gene expression. In summary, the biological effects of complete emissions exposure were weak. In the specific conditions used in this study, the effects observed in BEAS-2B cells were induced by the exposure protocol rather than by emissions and thus this cell line seems to be less suitable for analyses of longer treatment than the 3D model.
机译:比较了在人气道的3D模型(MucilAir)和在气液界面生长的人支气管上皮细胞(BEAS-2B)中完全排放发动机引起的生物效应。电池暴露于由Euro 5直喷式火花点火发动机产生的排放物排放一到五天。通过测量跨上皮电阻和粘蛋白产生来评估细胞的一般状况。通过腺苷酸激酶(AK)和乳酸脱氢酶(LDH)活性评估细胞毒性作用。组蛋白H2AX的磷酸化用于检测双链DNA断裂。使用下一代测序分析了选定的370个相关基因的表达。在两种细胞模型中,暴露对完整性和AK泄漏的影响均最小。长时间暴露后,BEAS-2B细胞中的LDH活性和粘蛋白产生显着增加。 DNA断裂也被检测到。暴露影响并在MucilAir中表达。在BEAS-2B细胞中未观察到这种作用。在该系统中,基因表达受治疗时间的影响较大。细胞模型的类型是调节基因表达的最重要因素。总而言之,完全暴露于排放物的生物学效应很弱。在这项研究中使用的特定条件下,在BEAS-2B细胞中观察到的效应是通过暴露方案而不是通过放射来诱导的,因此,这种细胞系似乎比3D模型更不适合用于更长治疗的分析。

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