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Human exposure to polycyclic aromatic hydrocarbons: Metabolomics perspective

机译:人体暴露于多环芳烃的代谢组学研究

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Polycyclic aromatic hydrocarbons (PAHs) are organic contaminants exhibiting carcinogenic toxicity. They are widespread in the environment, especially in urban areas. Humans are exposed to PAHs via inhalation, ingestion and dermal contact. Though much research has investigated their toxicity, little is known regarding the metabolic responses in humans after exposing to PAHs. However, those studies are important since PAHs become carcinogenic after metabolic activation by humans as indirect-acting carcinogens. As such, it is important to study their metabolism in humans based on metabolomics analysis. The goal of metabolomics study is to obtain a comprehensive view of metabolic reactions in humans after exposing to PAHs to better control the underlying metabolisms and reduce their genotoxicity. This article reviewed the biomarkers, analytical techniques including nuclear magnetic resonance and mass spectrometry, big data multivariate statistical analysis, and animal models that have been utilized to better understand the biological effects of PAHs, PAH-derivatives, and their metabolites and biotransformation products on humans.
机译:多环芳烃(PAHs)是有机污染物,具有致癌性。它们在环境中很普遍,尤其是在城市地区。人类通过吸入,食入和皮肤接触暴露于多环芳烃。尽管已有大量研究调查了它们的毒性,但对暴露于PAHs后人体的代谢反应知之甚少。但是,这些研究很重要,因为PAHs在人类被代谢激活后作为间接作用的致癌物而致癌。因此,根据代谢组学分析研究它们在人体内的代谢非常重要。代谢组学研究的目的是在暴露于PAHs后获得人类代谢反应的全面视图,以更好地控制基础代谢并降低其遗传毒性。本文回顾了生物标记,包括核磁共振和质谱在内的分析技术,大数据多元统计分析以及已被用来更好地理解PAHs,PAH衍生物及其代谢产物和生物转化产物对人类的生物学影响的动物模型。 。

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