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鱼类中甾体雌激素的相对效力和联合效应。

Relative potencies and combination effects of steroidal estrogens in fish.

作者信息

Thorpe Karen L, Cummings Rob I, Hutchinson Thomas H, Scholze Martin, Brighty Geoff, Sumpter John P, Tyler Charles R

机构信息

School of Biological Sciences, The Hatherly Laboratory, Exeter University, The Prince of Wales Road, Exeter, Devon, EX4 4PS, UK.

出版信息

Environ Sci Technol. 2003 Mar 15;37(6):1142-9. doi: 10.1021/es0201348.

Abstract

The natural steroids estradiol-17beta (E2) and estrone (E1) and the synthetic steroid ethynylestradiol-17alpha (EE2) have frequently been measured in waters receiving domestic effluents. All of these steroids bind to the estrogen receptor(s) and have been shown to elicit a range of estrogenic responses in fish at environmentally relevant concentrations. At present, however, no relative potency estimates have been derived for either the individual steroidal estrogens or their mixtures in vivo. In this study the estrogenic activity of E2, E1, and EE2, and the combination effects of a mixture of E2 and EE2 (equi-potent fixed-ratio mixture), were assessed using vitellogenin induction in a 14-day in vivo juvenile rainbow trout screening assay. Median effective concentrations, relative to E2, for induction of vitellogenin were determined from the concentration-response curves and the relative estrogenic potencies of each of the test chemicals calculated. Median effective concentrations were between 19 and 26 ng L(-1) for E2, 60 ng L(-1) for E1, and between 0.95 and 1.8 ng L(-1) for EE2, implying that EE2 was approximately 11 to 27 times more potent than E2, while E2 was 2.3 to 3.2 times more potent than E1. The median effective concentration, relative to E2, for the binary mixture of E2 and EE2 was 15 ng L(-1) (comprising 14.4 ng L(-1) E2 and 0.6 ng L(-1) EE2). Using the model of concentration addition it was shown that this activity of the binary mixture could be predicted from the activity of the individual chemicals. The ability of each individual steroid to contribute to the overall effect of a mixture, even at individual no-effect concentrations, combined with the high estrogenic potency of the steroids, particularly the synthetic steroid EE2, emphasizes the need to consider the total estrogenic load of these chemicals in our waterways.

摘要

天然甾体激素雌二醇 - 17β(E2)、雌酮(E1)以及合成甾体激素乙炔雌二醇 - 17α(EE2)常在接纳生活污水的水体中被检测到。所有这些甾体激素都会与雌激素受体结合,并且已证实在环境相关浓度下会在鱼类中引发一系列雌激素效应。然而目前,尚未得出单个甾体雌激素或其混合物在体内的相对效力估计值。在本研究中,利用14天的体内幼年虹鳟鱼筛选试验中的卵黄蛋白原诱导,评估了E2、E1和EE2的雌激素活性以及E2和EE2混合物(等效力固定比例混合物)的联合效应。根据浓度 - 反应曲线确定相对于E2诱导卵黄蛋白原的半数有效浓度,并计算每种受试化学物质的相对雌激素效力。E2的半数有效浓度在19至26 ng L⁻¹之间,E1为60 ng L⁻¹,EE2为0.95至1.8 ng L⁻¹,这意味着EE2的效力约为E2的11至27倍,而E2的效力是E1的2.3至3.2倍。相对于E2,E2和EE2二元混合物的半数有效浓度为15 ng L⁻¹(包含14.4 ng L⁻¹ E2和0.6 ng L⁻¹ EE2)。使用浓度相加模型表明,该二元混合物的这种活性可以根据单个化学物质的活性来预测。即使在单个无效应浓度下,每种单个甾体激素对混合物总体效应的贡献能力,再加上甾体激素尤其是合成甾体激素EE2的高雌激素效力,都强调了在我们的水道中考虑这些化学物质总雌激素负荷的必要性。

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