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首页> 外文期刊>Archives of Toxicology >Toxification of polycyclic aromatic hydrocarbons by commensal bacteria from human skin
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Toxification of polycyclic aromatic hydrocarbons by commensal bacteria from human skin

机译:来自人体皮肤的非团状芳烃的味道多环芳烃

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The ubiquitous occurrence of polycyclic aromatic hydrocarbons (PAHs) leads to constant human exposure at low levels. Toxicologically relevant are especially the high-molecular weight substances due to their (pro-)carcinogenic potential. Following ingestion or uptake, the eukaryotic phase I metabolism often activates these substances to become potent DNA binders, and unsurprisingly metabolism and DNA-adduct formation of model substances such as benzo[a]pyrene (B[a]P) are well studied. However, apart from being subjected to eukaryotic transformations PAHs are also carbon and energy sources for the myriads of commensal microbes inhabiting man's every surface. Yet, we know little about the microbiome's PAH-metabolism capacity and its potentially adverse impact on the human host. This study now shows that readily isolable skin commensals transform B[a]P into a range of highly cyto- and genotoxic metabolites that are excreted in toxicologically relevant concentrations during growth. The respective bacterial supernatants contain a mixture of established eukaryotic as well as hitherto unknown prokaryotic metabolites, the combination of which leads to an increased toxicity. Altogether we show that PAH metabolism of the microbiome has to be considered a potential hazard.
机译:多环芳烃(PAHS)的普遍存在的发生导致低水平的持续人体暴露。由于其(Pro-)致癌潜力,毒性相关尤其是高分子量的物质。摄入或摄取后,真核相I代谢通常激活这些物质,以变为有效的DNA粘合剂,并且对苯并[A]芘(B [A]芘(B [A] P)的模型物质(B [A] P)进行未沉旧的代谢和DNA加合物形成。然而,除了进行真核转化外,PAH也也是居住在人类的各种表面的多元素的碳和能源。然而,我们对微生物组的PAH代谢能力很少及其对人体宿主产生的可能性不利影响。本研究现在表明,随着可分离的皮肤共生将B [A] P变为一系列高度细胞和遗传毒性代谢产物,其在生长期间在毒理学相关浓度下排出。各种细菌上清液含有成熟的真核和迄今为止未知原核代谢物的混合物,其组合导致毒性增加。完全证明微生物组的PAH代谢必须被认为是潜在的危险。

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