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Synergistic estrogenic effects of Fusarium and Alternaria mycotoxins in vitro

机译:镰刀菌和赤霉素霉菌毒素在体外协同雌激素作用

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Mycotoxins are toxic secondary metabolites formed by various fungal species that are found as natural contaminants in food. This very heterogeneous group of compounds triggers multiple toxic mechanisms, including endocrine disruptive potential. Current risk assessment of mycotoxins, as for most chemical substances, is based on the effects of single compounds. However, concern on a potential enhancement of risks by interactions of single substances in naturally occurring mixtures has greatly increased recently. In this study, the combinatory effects of three mycoestrogens were investigated in detail. This includes the endocrine disruptors zearalenone (ZEN) and alpha-zearalenol (alpha-ZEL) produced by Fusarium fungi and alternariol (AOH), a cytotoxic and estrogenic mycotoxin formed by Alternaria species. For evaluation of effects, estrogen-dependent activation of alkaline phosphatase (AlP) and cell proliferation were tested in the adenocarcinoma cell line Ishikawa. The estrogenic potential varied among the single substances. Half maximum effect concentrations (EC50) for AlP activation were evaluated for alpha-ZEL, ZEN and AOH as 37 pM, 562 pM and 995 nM, respectively. All three mycotoxins were found to act as partial agonists. The majority of binary combinations, even at very low concentrations in the case of alpha-ZEL, showed strong synergism in the AlP assay. These potentiating phenomena of mycotoxin mixtures highlight the urgent need to incorporate combinatory effects into future risk assessment, especially when endocrine disruptors are involved. To the best of our knowledge, this study presents the first investigation on synergistic effects of mycoestrogens.
机译:霉菌毒素是由各种真菌物种形成的有毒次生代谢物,这些物种被发现为食物中的天然污染物。这种非常异质的化合物触发多种有毒机制,包括内分泌破坏性潜力。目前对霉菌毒素的风险评估,如大多数化学物质,基于单一化合物的影响。然而,对天然混合物中的单一物质相互作用的潜在提高风险的担忧最近大大增加。在这项研究中,详细研究了三种肌肉雌激素的组合效应。这包括由镰刀菌真菌和alertariol(AOH)产生的细胞毒性和雌激素毒毒素制备的内分泌破坏剂Zearalenone(ZEN)和α-Zearalenol(alpha-zel)。对于效果的评估,在腺癌细胞系Ishikawa中测试雌激素依赖性碱性磷酸酶(ALP)和细胞增殖的活化。雌激素潜力在单一物质中变化。 ALP活化的半最大效果浓度(EC50)分别评价ALα-Zel,ZEN和AOH至37μm,562pM和995nm。发现所有三种霉菌毒素都被认为是局部激动剂。大多数二元组合,即使在α-zel的情况下仍然在非常低的浓度下,在ALP测定中显示出强烈的协同作用。这些霉菌毒素混合物的增强现象突出了将组合效应纳入未来风险评估的迫切需要,特别是当涉及内分泌干扰者时。据我们所知,本研究介绍了岩雌激素协同效应的第一次调查。

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