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Vitellogenin synthesis in cultured hepatocytes, an in vitro test for the estrogenic potency of chemicals

机译:培养的肝细胞中卵黄蛋白原合成,化学物质雌激素效价的体外测试

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摘要

We describe here an in vitro technique to assess the estrogenic activity of chemicals. This technique is based on rainbow trout hepatocytes incubated in a basic medium free of any additional growth factors or estrogenic chemicals and uses the production of vitellogenin (VTG) as a marker for the estrogenic potency of the compounds tested. The system allows at least some of the metabolic transformations which are undertaken by the liver cells in vivo and could therefore be used for xenobiotic compounds which exhibit estrogenic activities after liver metabolic transformation. A dose-response curve was always consistently obtained using estradiol-17 beta (E2), with a mid point at around 100 nM E2 and a maximum response at around 1000 nM. Established estrogens such as 17 a 1 ethynylestradiol (EE2) or diethylstilboestrol (DES) were also tested. EE2 appeared to be equipotent with E2 and DES slightly less potent. E2 conjugates were, perhaps surprisingly, also very potent. Estradiol-3-sulfate was equipotent with E2 and estradiol-17 beta-glucuronide approx. 10% as potent. Other steroids such as androgens and progesterone, though active in the bioassay, were 3 orders of magnitude less potent than E2. Of the various steroids tested, only cortisol, at concentrations up to 50 microM, was completely inactive. Six different phytoestrogens were tested in the assay. All were weakly estrogenic, possessing approximately one thousandth the potency of E2 (they were as potent as the androgens and progesterone). All six phytoestrogens, as well as the androgens and progesterone, were tested in the presence of tamoxifen. In all cases tamoxifen reduced the production of VTG significantly, demonstrating that the estrogenic action of all of these compounds was most likely mediated by the E2 receptor. The potencies determined here may not reflect the situation in vivo but can provide complementary results about the activity of chemicals which need an hepatic metabolization to be estrogenic. Hepatocyte cultures would profitably be developed in other species to sustain these results.
机译:我们在这里描述一种体外技术来评估化学物质的雌激素活性。该技术基于在没有任何其他生长因子或雌激素化学物质的基本培养基中孵育的虹鳟鱼肝细胞,并使用卵黄蛋白原(VTG)的产生作为测试化合物雌激素效价的标记。该系统允许至少一些由肝细胞在体内进行的代谢转化,因此可以用于在肝脏代谢转化后表现出雌激素活性的异生化合物。始终使用雌二醇17β(E2)始终获得剂量-反应曲线,中点约为100 nM E2,最大响应约为1000 nM。还测试了已建立的雌激素,例如17 a 1乙炔雌二醇(EE2)或二乙基雌二醇(DES)。 EE2与E2和DES的效价似乎稍差。 E2共轭物也很有效。雌二醇-3-硫酸盐与E2和雌二醇-17β-葡萄糖醛酸约等价。效力10%。其他类固醇,例如雄激素和孕酮,尽管在生物测定中具有活性,但其效力比E2低3个数量级。在测试的各种类固醇中,只有浓度高达50 microM的皮质醇完全没有活性。在测定中测试了六种不同的植物雌激素。所有这些都具有弱的雌激素性,具有大约E2的效力(它们与雄激素和孕激素一样有效)。在他莫昔芬的存在下测试了所有六个植物雌激素以及雄激素和孕酮。在所有情况下,他莫昔芬均显着降低了VTG的产生,表明所有这些化合物的雌激素作用最有可能是由E2受体介导的。此处确定的效力可能无法反映体内情况,但可以提供有关需要肝脏代谢才能产生雌激素作用的化学物质的补充结果。肝细胞培养将有利于其他物种的发展,以维持这些结果。

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