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首页> 外文期刊>Cancer letters >Genotoxic potential of Polycyclic Aromatic Hydrocarbons-coated onto airborne Particulate Matter (PM 2.5) in human lung epithelial A549 cells.
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Genotoxic potential of Polycyclic Aromatic Hydrocarbons-coated onto airborne Particulate Matter (PM 2.5) in human lung epithelial A549 cells.

机译:涂在人肺上皮A549细胞中的空气传播颗粒物质(PM 2.5)上的多环芳烃的遗传毒性潜力。

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摘要

To improve the knowledge of the underlying mechanisms of action involved in air pollution Particulate Matter (PM)-induced toxicity in human lungs, with a particular interest of the crucial role played by coated-organic chemicals, we were interested in the metabolic activation of Polycyclic Aromatic Hydrocarbons (PAH)-coated onto air pollution PM, and, thereafter, the formation of PAH-DNA adducts in a human lung epithelial cell model (A549 cell line). Cells were exposed to Dunkerque city's PM(2.5) at its Lethal Concentrations at 10% and 50% (i.e. LC(10)=23.72 microg/mL or 6.33 microg/cm2, and LC(50)=118.60 microg/mL or 31.63 microg/cm2), and the study of Cytochrome P450 (CYP) 1A1 gene expression (i.e. RT-PCR) and protein activity (i.e. EROD activity), and the formation of PAH-DNA adducts (i.e. 32P-postlabeling), were investigated after 24, 48, and/or 72 h. PAH, PolyChlorinated Dibenzo-p-Dioxins and -Furans (PCDD/F), Dioxin-Like PolyChlorinated Biphenyls (DLPCB), and PolyChlorinated Biphenyls (PCB)-coated onto collected PM were determined (i.e. GC/MS and HRGC/HRMS, respectively), Negative (i.e. TiO2 or desorbed PM, dPM; EqLC10=19.42 microg/mL or 5.18 microg/cm2, and EqLC50=97.13 microg/mL or 25.90 microg/cm2), and positive (i.e. benzo(a)pyrene; 1 microM) controls were included in the experimental design. Statistically significant increases of CYP1A1 gene expression and protein activity were observed in A549 cells, 24, 48 and 72 h after their exposure to dPM, suggesting thereby that the employed outgassing method was not efficient enough to remove total PAH. Both the CYP1A1 gene expression and EROD activity were highly induced 24, 48 and 72 h after cell exposure to PM. However, only very low levels of PAH-DNA adducts, also not reliably quantifiable, were reported 72 h after cell exposure to dPM, and, particularly, PM. The relatively low levels of PAH together with the presence of PCDD/F, DLPCB, and PCB-coated onto Dunkerque City's PM 2.5 could notably contribute to explain the borderline detection of PAH-DNA adducts in dPM and/or PM-exposed A549 cells. Hence, remaining very low doses of PAH in dPM or relatively low doses of PAH-coated onto PM were involved in enzymatic induction, a key feature in PAH-toxicity, but failed to show a clear genotoxicity in this in vitro study. We also concluded that, in the human lung epithelial cell model we used, and in the experimental conditions we chose, bulky-DNA adduct formation was apparently not a major factor involved in the Dunkerque City's PM 2.5-induced toxicity.
机译:为了提高对空气污染所涉及的潜在作用机理的了解,特别是对于涂层有机化学物质所起的关键作用,我们特别感兴趣的是微粒物质(PM)诱导的人肺毒性,我们对多环化合物的代谢活化很感兴趣。芳香烃(PAH)涂在空气污染PM上,然后在人肺上皮细胞模型(A549细胞系)中形成PAH-DNA加合物。细胞以致死浓度10%和50%(即LC(10)= 23.72 microg / mL或6.33 microg / cm2和LC(50)= 118.60 microg / mL或31.63 microg)的致死浓度暴露于Dunkerque市的PM(2.5)中。 / cm2),并在24小时后研究了细胞色素P450(CYP)1A1基因表达(即RT-PCR)和蛋白质活性(即EROD活性)以及PAH-DNA加合物的形成(即32P后标记)的研究。 ,48和/或72小时。确定了涂覆在收集的PM上的PAH,多氯代二苯并对二恶英和呋喃(PCDD / F),类似二恶英的多氯联苯(DLPCB)和多氯联苯(PCB)(即分别为GC / MS和HRGC / HRMS ),负离子(即TiO2或解吸的PM,dPM; EqLC10 = 19.42微克/毫升或5.18微克/平方厘米,以及EqLC50 = 97.13微克/毫升或25.90微克/平方厘米)和正离子(即苯并(a);; 1 microM )控件包含在实验设计中。 CYP1A1基因表达和蛋白活性在统计学上显着增加,分别在A549细胞中暴露于dPM后24、48和72小时,这表明所采用的脱气方法不足以去除总PAH。细胞暴露于PM后24、48和72小时,CYP1A1基因的表达和EROD活性均被高度诱导。然而,在细胞暴露于dPM(尤其是PM)后72小时,仅报告了极低水平的PAH-DNA加合物,也无法可靠地定量。相对较低的PAH含量以及PCDD / F,DLPCB和涂在Dunkerque City PM 2.5上的PCB的存在可能特别有助于解释dPM和/或PM暴露的A549细胞中PAH-DNA加合物的临界检测。因此,在dPM中保持极低剂量的PAH或在PM上涂覆相对低剂量的PAH都参与了酶促诱导,这是PAH毒性的关键特征,但在这项体外研究中未能显示出明显的遗传毒性。我们还得出结论,在我们使用的人肺上皮细胞模型中,在我们选择的实验条件下,大体积DNA加合物的形成显然不是敦刻尔克市PM 2.5诱导的毒性的主要因素。

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