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基于细胞的超灵敏生物测定法,用于测量黄酮类混合物的整体雌激素活性,揭示二元及更高阶组合中的加性、限制性和增强作用。

Ultrasensitive cell-based bioassay for the measurement of global estrogenic activity of flavonoid mixtures revealing additive, restrictive, and enhanced actions in binary and higher order combinations.

作者信息

Wong Shih Peng, Li Jun, Shen Ping, Gong Yinhan, Yap Sook Peng, Yong Eu Leong

机构信息

Department of Obstetrics and Gynecology, National University Hospital, Yong Loo Lin School of Medicine, National University of Singapore, Republic of Singapore.

出版信息

Assay Drug Dev Technol. 2007 Jun;5(3):355-62. doi: 10.1089/adt.2007.056.

Abstract

Flavonoids present in food, botanicals, and body fluids occur as complex mixtures, and data on their combinatorial estrogenic effects are sparse. Human cell lines that permanently express estrogen receptor (ER) alpha and ERbeta proteins were developed for the measurement of the global estrogenicity of flavonoids in such complex mixtures. The presence of estrogenic ligands, known and unknown, in these mixtures can be detected by activation of an ER-driven luciferase reporter gene. We also examined the effect of hydroxylation on the estrogenic activities of four common flavonoids-apigenin, kaempferol, luteolin, and quercetin, alone and in combination. An inverse relationship was observed between the number of hydroxyl groups in flavonoids and ERalpha bioactivity. When submaximal doses of apigenin, luteolin, kaempferol, genistein, and estradiol were combined in binary and higher order mixtures, the experimental estrogenic effects matched those obtained by summing effects extrapolated from dose-response curves of individual compounds. The estrogenic activities of mixtures containing quercetin were observed to deviate from additivity, suggesting that it was a partial agonist/antagonist. Our assay reveals superagonistic, additive, and antagonistic ERalpha or ERbeta actions of flavonoids and adds to our understanding of the estrogenic effects of phytoestrogens in complex mixtures.

摘要

食物、植物药和体液中的黄酮类化合物以复杂混合物的形式存在,关于它们联合雌激素效应的数据很少。为了测定此类复杂混合物中黄酮类化合物的整体雌激素活性,开发了能永久表达雌激素受体(ER)α和ERβ蛋白的人类细胞系。通过激活ER驱动的荧光素酶报告基因,可以检测这些混合物中已知和未知雌激素配体的存在。我们还研究了羟基化对四种常见黄酮类化合物(芹菜素、山奈酚、木犀草素和槲皮素)单独及联合时雌激素活性的影响。观察到黄酮类化合物中羟基数量与ERα生物活性之间呈负相关。当将亚最大剂量的芹菜素、木犀草素、山奈酚、染料木黄酮和雌二醇以二元及更高阶混合物形式组合时,实验性雌激素效应与通过汇总从各化合物剂量反应曲线外推得到的效应所获得的结果相符。观察到含有槲皮素的混合物的雌激素活性偏离相加性,表明它是一种部分激动剂/拮抗剂。我们的检测揭示了黄酮类化合物对ERα或ERβ的超激动、相加和拮抗作用,并增进了我们对复杂混合物中植物雌激素雌激素效应的理解。

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