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芳基羟化和儿茶酚形成:生长促进剂玉米赤霉醇的一种新代谢途径。

Aromatic hydroxylation and catechol formation: a novel metabolic pathway of the growth promotor zeranol.

机构信息

Institute of Applied Biosciences, Chair of Food Chemistry, Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany.

出版信息

Toxicol Lett. 2010 Feb 15;192(3):379-86. doi: 10.1016/j.toxlet.2009.11.014. Epub 2009 Nov 18.

Abstract

Alpha-zearalanol (alpha-ZAL, zeranol) is a macrocyclic resorcylic acid lactone, which is highly estrogenic and used as a growth promotor for cattle in various countries. Little is known about the phase I metabolism of alpha-ZAL. We now report that alpha-ZAL and its major metabolite zearalanone (ZAN) are extensively monohydroxylated at the aromatic ring by microsomes from human liver in vitro. This novel pathway leads to catechols, the chemical structures of which were unambiguously established by the use of deuterium-labeled alpha-ZAL and ZAN, and by the synthesis of authentic standards. The aromatic hydroxylation of alpha-ZAL is almost exclusively mediated by the human cytochrome P450 (hCYP) 1A2 isoform. The catechol metabolites of alpha-ZAL and ZAN are unstable and readily oxidized to quinones, which could be detected among the metabolites of alpha-ZAL and ZAN generated by human hepatic microsomes and hCYP1A2. Furthermore, the quinone metabolites are able to form covalent adducts with N-acetylcysteine (NAC), as several of such adducts were found in microsomal incubations fortified with NAC. Aromatic hydroxylation of alpha-ZAL was also observed with bovine, porcine and rat hepatic microsomes. Further studies are needed to demonstrate the catechol pathway of alpha-ZAL in vivo and to assess its toxicological significance.

摘要

α-玉米赤霉醇(α-ZAL,玉米赤霉醇)是一种大环类麦角甾族内酯,具有很强的雌激素活性,被多个国家用作牛的生长促进剂。目前对于 α-ZAL 的 I 相代谢知之甚少。我们现在报告,α-ZAL 及其主要代谢产物玉米赤烯酮(ZAN)在人肝微粒体体外可广泛地在芳环上单羟化。通过使用氘标记的 α-ZAL 和 ZAN,以及通过合成真实的标准品,明确建立了该新途径产生的儿茶酚的化学结构。α-ZAL 的芳香族羟化几乎完全由人细胞色素 P450(hCYP)1A2 同工酶介导。α-ZAL 和 ZAN 的儿茶酚代谢物不稳定,容易氧化为醌,可在人肝微粒体和 hCYP1A2 生成的 α-ZAL 和 ZAN 的代谢物中检测到。此外,醌代谢物能够与 N-乙酰半胱氨酸(NAC)形成共价加合物,因为在添加 NAC 的微粒体孵育中发现了几种这样的加合物。牛、猪和大鼠肝微粒体也观察到了 α-ZAL 的芳香族羟化。需要进一步的研究来证明 α-ZAL 的儿茶酚途径在体内的存在,并评估其毒理学意义。

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