Estrogen receptor α interaction of zearalenone and its phase I metabolite α-zearalenol in combination with soy isoflavones in hERα-HeLa-9903 cells.

IF 2.6 4区 医学 Q2 MYCOLOGY Mycotoxin Research Pub Date : 2024-02-01 Epub Date: 2023-10-17 DOI:10.1007/s12550-023-00506-1
Dino Grgic, Barbara Novak, Elisabeth Varga, Doris Marko
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Abstract

Risk assessment primarily relies on toxicological data of individual substances, with limited information on combined effects. Recent in vitro experiments using Ishikawa cells, an endometrial carcinoma cell line expressing both estrogen receptor isoforms, demonstrated interactive effects of phyto- and mycoestrogens. The mycoestrogens, zearalenone (ZEN), and α-zearalenol (α-ZEL) exhibited significantly enhanced estrogenic responses in the presence of isoflavones (ISF), depending on substance ratios and concentrations. This study investigated the impact of phyto- and mycoestrogen combinations on estrogenic response following OECD guideline 455, utilizing hERα-HeLa-9903 cells. Test substances included mycoestrogens (ZEN and α-ZEL) and isoflavones (genistein (GEN), daidzein (DAI), and S-equol (EQ), a gut microbial metabolite of DAI). Mycoestrogens were tested in the range of 0.001 to 100 nM, while isoflavones were used at concentrations 1000 times higher based on relevant occurrence ratios. Results showed that ZEN and α-ZEL induced ERα-dependent luciferase expression in concentrations above 1 nM and 0.01 nM, respectively. However, ISF caused a superinduction of the luciferase signal above 1 µM. A superinduction is characterized by an unusually strong or heightened increase in the activity of the luciferase enzyme. This signal is not affected by the estrogen receptor antagonist 4-hydroxytamoxifen (4-OH-TAM), which was additionally used to verify whether the increase of signal is a true reflection of receptor activation. This superinduction was observed in all combinations of ZEN and α-ZEL with ISFs. Contrary to the luciferase activity findings, RT-qPCR experiments and a stability approach revealed lower real ERα activation by ISFs than measured in the ONE-Glo™ luciferase test system. In conclusion, the OECD protocol 455 appears unsuitable for testing ISFs due to their superinduction of luciferase and interactions with the test system, resulting in experimental artifacts. Further studies are necessary to explore structure-activity relationships within polyphenols and clarify the test system's applicability.

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玉米赤霉烯酮及其I期代谢产物α-玉米赤霉烯醇与大豆异黄酮在hERα-HeLa-9903细胞中的雌激素受体-α相互作用。
风险评估主要依赖于单个物质的毒理学数据,关于综合影响的信息有限。最近使用Ishikawa细胞进行的体外实验证明了植物雌激素和真菌雌激素的相互作用。Ishikawa细胞是一种表达两种雌激素受体亚型的子宫内膜癌细胞系。在异黄酮(ISF)存在的情况下,真菌雌激素、玉米赤霉烯酮(ZEN)和α-玉米赤霉烯醇(α-ZEL)表现出显著增强的雌激素反应,这取决于物质比例和浓度。本研究根据OECD指南455,利用hERα-HeLa-9903细胞,研究了植物和真菌雌激素组合对雌激素反应的影响。受试物质包括真菌雌激素(ZEN和α-ZEL)和异黄酮(染料木素(GEN)、大豆黄酮(DAI)和S-equol(EQ),后者是DAI的肠道微生物代谢产物)。真菌雌激素在0.001至100 nM的范围内进行测试,而异黄酮的使用浓度是相关发生率的1000倍。结果显示,ZEN和α-ZEL分别在1nM和0.01nM以上的浓度下诱导ERα依赖性萤光素酶的表达。然而,ISF导致荧光素酶信号在1µM以上的超导。超诱导的特征是荧光素酶活性异常强烈或增加。该信号不受雌激素受体拮抗剂4-羟基他莫昔芬(4-OH-TAM)的影响,该拮抗剂还用于验证信号的增加是否是受体激活的真实反映。在ZEN和α-ZEL与ISF的所有组合中都观察到了这种超导。与萤光素酶活性的发现相反,RT-qPCR实验和稳定性方法显示,ISFs的真实ERα激活低于在ONE Glo中测量的™ 萤光素酶测试系统。总之,OECD协议455似乎不适合测试ISF,因为它们对荧光素酶的过度诱导以及与测试系统的相互作用,导致实验伪影。需要进一步的研究来探索多酚的结构-活性关系,并阐明测试系统的适用性。
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来源期刊
Mycotoxin Research
Mycotoxin Research MYCOLOGYTOXICOLOGY-TOXICOLOGY
CiteScore
6.40
自引率
6.70%
发文量
29
期刊介绍: Mycotoxin Research, the official publication of the Society for Mycotoxin Research, is a peer-reviewed, scientific journal dealing with all aspects related to toxic fungal metabolites. The journal publishes original research articles and reviews in all areas dealing with mycotoxins. As an interdisciplinary platform, Mycotoxin Research welcomes submission of scientific contributions in the following research fields: - Ecology and genetics of mycotoxin formation - Mode of action of mycotoxins, metabolism and toxicology - Agricultural production and mycotoxins - Human and animal health aspects, including exposure studies and risk assessment - Food and feed safety, including occurrence, prevention, regulatory aspects, and control of mycotoxins - Environmental safety and technology-related aspects of mycotoxins - Chemistry, synthesis and analysis.
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