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使用体外受体特异性生物测定法评估霉菌毒素玉米赤霉烯酮及其代谢产物的雌激素活性和抗雄激素活性。

Assessment of estrogenic and anti-androgenic activities of the mycotoxin zearalenone and its metabolites using in vitro receptor-specific bioassays.

作者信息

Molina-Molina José-Manuel, Real Macarena, Jimenez-Diaz Inmaculada, Belhassen Hidaya, Hedhili Abderazzak, Torné Pablo, Fernández Mariana F, Olea Nicolás

机构信息

Laboratory of Medical Investigations, San Cecilio University Hospital, University of Granada, Granada E-18012, Spain.

出版信息

Food Chem Toxicol. 2014 Dec;74:233-9. doi: 10.1016/j.fct.2014.10.008.

Abstract

Zearalenone (ZEN) is a well-known mycotoxin present in numerous agricultural products. Humans and animals are therefore at a risk of exposure to zearalenone through consumption of contaminated food. After intake, ZEN is reduced to α- and β-zearalenol (α-ZEL and β-ZEL), zearalanone (ZAN), and α- and β-zearalanol (α-ZAL and β-ZAL). Although their estrogenicity has been well characterized, much less is known about their interaction with other nuclear receptors. This study was undertaken to investigate interactions of ZEN and its five metabolites, with the human androgen receptor (hAR) and estrogen receptor alpha (hERα). Their ability to induce hAR-mediated reporter gene expression was examined in androgen-sensitive PALM cells, whereas the effects on hERα function were assessed in MCF-7 cells using the E-Screen bioassay. We confirm that ZEN and its metabolites are full agonists for hERα and demonstrate that all six compounds tested possess hAR-mediated antagonistic activity in PALM cells, in which ZAN, α-ZAL, and β-ZAL were the most effective hAR antagonists. Overall, the observed estrogenic and anti-androgenic potencies of ZEN and its metabolites suggest that these compounds may interfere with the endocrine system by various modes of action and that further investigation is warranted into their role as endocrine disrupters in animals and humans.

摘要

玉米赤霉烯酮(ZEN)是一种存在于众多农产品中的著名霉菌毒素。因此,人类和动物有通过食用受污染食物接触玉米赤霉烯酮的风险。摄入后,ZEN会被还原为α-和β-玉米赤霉醇(α-ZEL和β-ZEL)、玉米赤霉酮(ZAN)以及α-和β-玉米赤霉醛(α-ZAL和β-ZAL)。尽管它们的雌激素活性已得到充分表征,但关于它们与其他核受体的相互作用却知之甚少。本研究旨在调查ZEN及其五种代谢产物与人类雄激素受体(hAR)和雌激素受体α(hERα)的相互作用。在雄激素敏感的PALM细胞中检测它们诱导hAR介导的报告基因表达的能力,而使用E-Screen生物测定法在MCF-7细胞中评估对hERα功能的影响。我们证实ZEN及其代谢产物是hERα的完全激动剂,并证明所测试的所有六种化合物在PALM细胞中均具有hAR介导的拮抗活性,其中ZAN、α-ZAL和β-ZAL是最有效的hAR拮抗剂。总体而言,观察到的ZEN及其代谢产物的雌激素活性和抗雄激素活性表明,这些化合物可能通过多种作用方式干扰内分泌系统,有必要进一步研究它们作为动物和人类内分泌干扰物的作用。

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