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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >The genotoxic effect of carcinogenic PAHs, their artificial and environmental mixtures (EOM) on human diploid lung fibroblasts.
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The genotoxic effect of carcinogenic PAHs, their artificial and environmental mixtures (EOM) on human diploid lung fibroblasts.

机译:致癌的PAH,其人工和环境混合物(EOM)对人二倍体肺成纤维细胞的遗传毒性作用。

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摘要

The aim of this study was to investigate the genotoxic effect of single carcinogenic polycyclic aromatic hydrocarbons (c-PAHs), as well as their binary and artificial mixtures containing c-PAHs in the same relative proportions as real complex mixtures, and to investigate the genotoxic effect of environmental mixtures such as EOM (extractable organic matter adsorbed to respirable air particles). We used normal human diploid lung fibroblasts (HEL) in a confluent ("quiescent") state as being closer to in vivo conditions. We determined DNA adducts by (32)P -postlabelling and the expression of p53 and p21(WAF1) proteins by Western blotting. Our results showed that the DNA binding potencies of c-PAHs in quiescent HEL cells were as follows: DB[al]PB[a]PB[b]F approximately CHRY approximately B[k]F approximately B[a]A approximately DB[ah]A approximately I[cd]P > B[ghi]P. Both DB[al]P and B[a]P were chosen to assess the genotoxic effect of other c-PAHs when present in binary mixtures. In all cases, co-treatment resulted in significantly lower DNA adduct levels as compared with adduct levels resulting from single compounds. The highest inhibitory effect was found in the presence of DB[ah]A followed by B[k]F. In both artificial and EOM mixtures a strong inhibitory effect of other compounds was observed. BPDE-adduct levels were up to five-fold lower in an artificial c-PAH mixture and up to 10-fold lower in an EOM sample than expected from applying B[a]P alone at the same concentration. These results suggest a competition for the metabolic activation enzymes, their saturation and/or inactivation by PAH metabolites. We did not observe the decrease of DNA adducts and induced levels of both p53 and p21(WAF1) proteins during the post-treatment period up to 6 days following exposure. We suggest that parent c-PAHs accumulate inside cells and that they are further activated by newly synthesised enzymes during the post-treatment period. Therefore, unaltered c-PAHs may act as a reservoir inside the cells for the long-term production of active metabolites. The total DNA adduct levels induced in HEL cells after exposure to EOM were generally low as compared with exposure to B[a]P alone under the same conditions. Human diploid lung fibroblasts possess low metabolic capacity than other human target cells. Therefore, it may be easier to competitively inhibit the metabolising enzymes in this cell system. We hypothesise that this finding might explain the generally low PAH-DNA adduct levels detected in human studies using surrogate cells such as blood WBC or lymphocytes that also possess low metabolic capacity.
机译:这项研究的目的是调查单个致癌多环芳烃(c-PAHs)的遗传毒性作用,以及与实际复杂混合物具有相同相对比例的二元和人工混合物中含有c-PAHs的遗传毒性,并研究其遗传毒性。环境混合物的影响,例如EOM(吸附到可吸入空气颗粒中的可萃取有机物)。由于融合蛋白(“静止”)状态接近体内条件,我们使用了正常的人类二倍体肺成纤维细胞(HEL)。我们通过(32)P-后标记测定了DNA加合物,并通过Western印迹测定了p53和p21(WAF1)蛋白的表达。我们的结果表明,静态HEL细胞中c-PAHs的DNA结合力如下:DB [al] P B [a] P B [b] F约CHRY约B [k] F约B [ a] A近似为DB [ah] A近似为IcdP> BgP。选择DB [al] P和B [a] P来评估二元混合物中其他c-PAH的遗传毒性作用。在所有情况下,与单一化合物产生的加合物水平相比,共同处理导致的DNA加合物水平明显降低。在存在DB [ah] A然后是B [k] F时发现抑制作用最高。在人工混合物和EOM混合物中,均观察到其他化合物的强抑制作用。在人工c-PAH混合物中,BPDE加合物的水平比在相同浓度下单独施用B [a] P所预期的水平低多达五倍,而在EOM样品中则高达十倍。这些结果表明,对于代谢活化酶,它们的饱和和/或被PAH代谢物失活的竞争。我们没有观察到在暴露后长达6天的后处理期间DNA加合物的减少以及p53和p21(WAF1)蛋白的诱导水平的降低。我们建议母体c-PAHs在细胞内积累,并在后期处理期间被新合成的酶进一步激活。因此,未改变的c-PAHs可以充当细胞内部的储存库,以长期产生活性代谢产物。与在相同条件下单独接触B [a] P相比,接触EOM后在HEL细胞中诱导的总DNA加合物水平通常较低。人二倍体肺成纤维细胞具有比其他人靶细胞低的代谢能力。因此,在该细胞系统中竞争性抑制代谢酶可能更容易。我们假设这一发现可能解释了在人类研究中使用替代细胞(如血液白细胞或淋巴细胞也具有低代谢能力)检测到的普遍较低的PAH-DNA加合物水平。

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