首页> 外文期刊>Environmental health perspectives. >Hydroxylated metabolites of the polybrominated diphenyl ether mixture DE-71 are weak estrogen receptor-alpha ligands.
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Hydroxylated metabolites of the polybrominated diphenyl ether mixture DE-71 are weak estrogen receptor-alpha ligands.

机译:多溴二苯醚混合物DE-71的羟基代谢物是弱雌激素受体-α配体。

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BACKGROUND: Polybrominated diphenyl ethers (PBDEs) are widely found in the environment and are suspected endocrine disruptors. We previously identified six hydroxylated metabolites of PBDE (OH-PBDEs) in treated mice. OBJECTIVE: We tested the hypothesis that OH-PBDEs would interact with and alter activity of estrogen receptor-alpha (ER-alpha). METHODS: We tested estrogenicity using two assays: 3H-estradiol (3H-E2) displacement from recombinant ER-alpha and induction of reporter gene (ERE-luciferase) in cultured cells. We incubated the PBDE mixture DE-71 with rat liver microsomes and tested the resultant metabolite mixture for estrogenic activity. We also determined relative estrogenic potential of individual hydroxylated PBDE congeners. RESULTS: Reporter gene activity was increased by DE-71 that had been subjected to microsomal metabolism. DE-71 did not displace E2 from ER-alpha, but all six of the OH-PBDE metabolites did. para-Hydroxylated metabolites displayed a 10- to 30-fold higher affinity for ER-alpha compared with ortho-hydroxylated PBDEs, and one produced a maximal effect 30% higher than that produced by E2. Coadministration of E2 and DE-71, or certain of its metabolites, yielded reporter activity greater than either chemical alone. Two ortho-OH-PBDEs were antiestrogenic in the reporter assay. CONCLUSIONS: The observations--that the DE-71 mixture did not displace 3H-E2 from ER-alpha while the hydroxylated metabolites did-suggest that the weak estrogenic effects of DE-71 are due to metabolic activation of individual congeners. However, the behavior of DE-71 and its metabolites, when co-administered with E2, suggest a secondary, undetermined mechanism from classical ER-alpha activation.
机译:背景:多溴二苯醚(PBDEs)在环境中广泛发现,并且被怀疑是内分泌干扰物。我们先前在治疗的小鼠中鉴定了PBDE的六种羟基化代谢产物(OH-PBDEs)。目的:我们检验了OH-PBDEs会与雌激素受体-α(ER-alpha)相互作用并改变其活性的假设。方法:我们使用两种测定法测试了雌激素性:从重组ER-α置换3H-雌二醇(3H-E2)和在培养细胞中诱导报告基因(ERE-荧光素酶)。我们将PBDE混合物DE-71与大鼠肝微粒体一起温育,并测试了所得代谢产物混合物的雌激素活性。我们还确定了各个羟基化PBDE同系物的相对雌激素潜力。结果:经过微粒体代谢的DE-71增加了报告基因的活性。 DE-71不能取代ER-α的E2,但是所有六个OH-PBDE代谢物都可以。与对羟基化的PBDEs相比,对羟基化的代谢产物对ER-α的亲和力高10至30倍,并且比E2产生的最大效应高30%。 E2和DE-71或其某些代谢物的共同给药所产生的报道分子活性高于单独的任何一种化学物质。在报道分子测定中,两种邻位-OH-PBDEs具有抗雌激素作用。结论:DE-71混合物未取代ER-α的3H-E2,而羟基化代谢产物确实表明DE-71的弱雌激素作用是由于单个同源物的代谢激活所致。然而,DE-71及其代谢产物与E2共同使用时,其行为提示了经典ER-α激活的第二种不确定机制。

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