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Biotransformation of BDE-47 to Potentially Toxic Metabolites Is Predominantly Mediated by Human CYP2B6

机译:BDE-47潜在毒性代谢物的生物转化主要由人类CYP2B6介导。

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摘要

Background: Previous studies have indicated that cytochrome P450s (CYPs) are involved in the metabolism of polybrominated diphenyl ether (PBDE) flame retardants in humans, resulting in the formation of hydroxylated PBDEs (OH-PBDEs) that are potentially more toxic than the parent PBDEs. However, the specific enzymes responsible for the formation of OH-PBDEs are unknown.Objectives: The purposes of this study were to characterize the in vitro metabolism of 2,2´,4,4´-tetrabromodiphenyl ether (BDE-47) by human liver microsomes (HLM) and recombinant human CYPs, and to identify the CYP(s) that are active in the oxidative metabolism of BDE-47.Methods: Recombinant human CYPs (CYP1A1, 1A2, 1B1, 2A6, 2B6, 2C8, 2C9, 2C19, 2D6, 2E1, and 3A4) were incubated with BDE-47 (20 µM), and the metabolites were measured and characterized using gas chromatography with tandem mass spectrometry (GC-MS/MS). For kinetic studies, CYP2B6 and pooled human liver microsomes (HLMs) were incubated with BDE-47 (0–60 µM).Results: CYP2B6 was the predominant CYP capable of forming six OH-BDEs, including 3-OH-BDE-47, 5-OH-BDE-47, 6-OH-BDE-47, 4-OH-BDE-42, 4´-OH-BDE-49, and a metabolite tentatively identified as 2´-OH-BDE-66. On the basis of full-scan GC-MS analysis, we hypothesized the formation of two other metabolites: di-OH-tetra-BDE and di-OH-tetrabrominated dioxin. In kinetic studies of BDE-47 metabolism by CYP2B6 and pooled HLMs, we found Km values ranging from 3.8 to 6.4 µM and 7.0 to 11.4 µM, respectively, indicating the high affinity toward the formation of OH-BDEs.Conclusion: Our findings support a predominant role of CYP2B6 in the metabolism of BDE-47 to potentially toxic metabolites, including a hypothesized di-OH-tetrabrominated dioxin metabolite. These results will assist future epidemiological studies investigating the potential of PBDEs and their metabolites to produce neurobehavioraleurodevelopmental disorders.
机译:背景:先前的研究表明,细胞色素P450(CYP)参与了人类多溴二苯醚(PBDE)阻燃剂的代谢,导致形成了比母体PBDE毒性更大的羟基化PBDE(OH-PBDEs)。 。然而,尚不清楚引起OH-PBDEs形成的具体酶。目的:本研究的目的是表征人在体内对2,2′,4,4′-四溴二苯醚(BDE-47)的代谢肝微粒体(HLM)和重组人CYP,并鉴定在BDE-47氧化代谢中具有活性的CYP。方法:重组人CYP(CYP1A1、1A2、1B1、2A6、2B6、2C8、2C9,将2C19、2D6、2E1和3A4)与BDE-47(20 µM)一起孵育,并使用气相色谱-串联质谱(GC-MS / MS)对代谢产物进行测量和表征。为了进行动力学研究,将CYP2B6和合并的人肝微粒体(HLM)与BDE-47(0-60 µM)孵育。结果:CYP2B6是主要的CYP,能够形成6种OH-BDE,包括3-OH-BDE-47, 5-OH-BDE-47、6-OH-BDE-47、4-OH-BDE-42、4´-OH-BDE-49和一种代谢物,暂定为2´-OH-BDE-66。在全扫描GC-MS分析的基础上,我们假设了其他两种代谢物的形成:二羟基四溴联苯醚和二羟基四溴化二恶英。在CYP2B6和合并的HLM对BDE-47代谢的动力学研究中,我们发现Km值分别为3.8至6.4 µM和7.0至11.4 µM,表明对OH-BDEs的形成具有很高的亲和力。结论:我们的发现支持a CYP2B6在BDE-47代谢为潜在有毒代谢产物中的主要作用,包括假设的二-OH-四溴代二恶英代谢产物。这些结果将有助于未来的流行病学研究,调查多溴二苯醚及其代谢产物产生神经行为/神经发育障碍的潜力。

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