首页> 外文期刊>Chemical research in toxicology >Human liver microsome-mediated metabolism of brominated diphenyl ethers 47, 99, and 153 and identification of their major metabolites.
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Human liver microsome-mediated metabolism of brominated diphenyl ethers 47, 99, and 153 and identification of their major metabolites.

机译:人肝微粒体介导的溴化二苯醚47、99和153的代谢及其主要代谢产物的鉴定。

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摘要

While the metabolism and excretion of polybrominated diphenyl ethers (PBDEs) have been reported in rodents, PBDE metabolism in humans has only recently been investigated. In this present study, individual human liver microsomes were incubated for 120 min with radiolabeled and nonradiolabeled BDE 47, 99, or 153 to determine their relative degrees of metabolism and to identify the structures of metabolites formed. Radiolabeled samples were analyzed using high-performance liquid chromatography/radiochemical detection, while nonradiolabeled samples were analyzed with and without derivatization using gas chromatography/mass spectrometry. Results from radiolabeled incubations demonstrated that human liver microsomes metabolized BDEs 47 and 99 but not BDE 153. Differences in the extent of BDE metabolism by the three individual liver specimens used in the study were observed. BDE 47 metabolized to a dihydroxylated BDE 47 and 2,4-dibromophenol, while BDE 99 metabolized to a dihydroxylated BDE 99, 2,4,5-tribromophenol and 1,3-dibromobenzene. This study showed that BDEs 47 and 99 are metabolized by human liver microsomes with relatively large interindividual differences. Results of this study could provide one explanation for the high bioaccumulation rate of BDE 153 in humans.
机译:虽然已经在啮齿动物中报道了多溴二苯醚(PBDEs)的代谢和排泄,但直到最近才研究了人类中PBDE的代谢。在本研究中,将人肝微粒体分别与放射性标记和非放射性标记的BDE 47、99或153孵育120分钟,以确定它们的相对代谢程度并鉴定形成的代谢物的结构。使用高效液相色谱/放射化学检测分析了放射性标记的样品,而使用气相色谱/质谱分析了在未衍生化和未衍生化的情况下未放射性标记的样品。放射性标记孵育的结果表明,人肝微粒体代谢了BDEs 47和99,但没有代谢BDE153。研究中使用的三个单独的肝脏样本观察到BDE代谢程度的差异。 BDE 47代谢为二羟基化BDE 47和2,4-二溴苯酚,而BDE 99代谢为二羟基化BDE 99、2,4,5-三溴苯酚和1,3-二溴苯。这项研究表明,BDE 47和99被人体肝脏微粒体代谢,个体间差异较大。这项研究的结果可以为人类中BDE 153的高生物蓄积率提供一种解释。

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