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三氯杀螨醇与人雌激素受体的雌激素活性:异构体和对映体特异性影响。

Estrogenic activity of dicofol with the human estrogen receptor: Isomer- and enantiomer-specific implications.

作者信息

Hoekstra Paul F, Burnison B Kent, Garrison A Wayne, Neheli Tannis, Muir Derek C G

机构信息

National Water Research Institute, Environment Canada, Burlington, ON, Canada.

出版信息

Chemosphere. 2006 Jun;64(1):174-7. doi: 10.1016/j.chemosphere.2005.10.043. Epub 2005 Dec 7.

Abstract

Dicofol is a non-systemic acaricide/miticide currently registered in the US and Canada for use on a wide variety of crops. This agrochemical has been identified as a potential candidate substance for the United Nations Economic Commission for Europe (UN-ECE) Persistent Organic Pollutant (POP) Protocol and implicated as a potential "endocrine disrupting compound". The technical product is usually synthesized from technical DDT and consists of approximately 80% and 20% of p,p'- and o,p'-dicofol isomers. The o,p'-substituted isomer of dicofol is chiral and may have enantiomer-specific activity; however, the stereospecific activity of o,p'-dicofol has not been reported. In this study, we examined the isomer- and enantiomer-specific endocrine disruption potential of dicofol using yeast-based steroid hormone receptor gene transcription assay designed with the human estrogen receptor (hER). Estrogenic activity of (+)-17-beta estradiol (positive control), p,p'-dicofol, racemic o,p'-dicofol [(+/-)-o,p'-dicofol] and the individual o,p'-dicofol enantiomers was measured via quantification of beta-galactosidase. The (+/-)-o,p'- and p,p'-dicofol were weak estrogen mimics (EC(50): 4.2 x 10(-6) and 1.6 x 10(-6)M, respectively) relative to estradiol (3.7 x 10(-10)M). For o,p'-dicofol, the beta-galactosidase induction by (-)-o,p'-dicofol (EC(50): 5.1 x 10(-7)M) was greater than the racemic mixture. However, the (+)-o,p'-dicofol enantiomer was found to have negligible estrogenic activity. These data indicate that dicofol is a weak hER agonist due to activity of the achiral p,p'-isomer and (-)-o,p'-substituted enantiomer and emphasizes the influence of chemical structure and configuration on biological responses to exposure from chiral compounds.

摘要

三氯杀螨醇是一种非内吸性杀螨剂,目前在美国和加拿大登记用于多种作物。这种农用化学品已被确定为联合国欧洲经济委员会(UNECE)持久性有机污染物(POP)协议的潜在候选物质,并被认为是一种潜在的“内分泌干扰化合物”。该技术产品通常由工业用滴滴涕合成,由约80%的p,p'-三氯杀螨醇异构体和20%的o,p'-三氯杀螨醇异构体组成。三氯杀螨醇的o,p'-取代异构体是手性的,可能具有对映体特异性活性;然而,o,p'-三氯杀螨醇的立体特异性活性尚未见报道。在本研究中,我们使用基于酵母的类固醇激素受体基因转录分析方法,以人雌激素受体(hER)为设计对象,研究了三氯杀螨醇的异构体和对映体特异性内分泌干扰潜力。通过定量β-半乳糖苷酶来测定(+)-17-β雌二醇(阳性对照)、p,p'-三氯杀螨醇、外消旋o,p'-三氯杀螨醇[(±)-o,p'-三氯杀螨醇]和单个o,p'-三氯杀螨醇对映体的雌激素活性。相对于雌二醇(3.7×10^-10M),(±)-o,p'-和p,p'-三氯杀螨醇是弱雌激素模拟物(EC50分别为4.2×10^-6和1.6×10^-6M)。对于o,p'-三氯杀螨醇,(-)-o,p'-三氯杀螨醇诱导的β-半乳糖苷酶(EC50:5.1×10^-7M)大于外消旋混合物。然而,发现(+)-o,p'-三氯杀螨醇对映体的雌激素活性可忽略不计。这些数据表明,由于非手性p,p'-异构体和(-)-o,p'-取代对映体的活性,三氯杀螨醇是一种弱hER激动剂,并强调了化学结构和构型对来自手性化合物暴露的生物反应的影响。

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