Xu Li-Chun, Liu Lu, Ren Xiang-Mei, Zhang Mei-Rong, Cong Ning, Xu Ai-Qin, Shao Ji-Hong
The Department of Public Health, Xuzhou Medical College, 84 West Huai-hai Road, Xuzhou, Jiangsu 221002, China.
Toxicology. 2008 Jan 14;243(1-2):59-65. doi: 10.1016/j.tox.2007.09.028. Epub 2007 Oct 2.
Organophosphates and pyrethroids are among the most common pesticides currently in use worldwide. Several pesticides have been reported to possess hormonal activities, and thus are classified as endocrine disruptors. The present study was planned to evaluate potential androgenic and antiandrogenic activities of the pesticides. The selected chemicals are three organophosphate pesticides including dichlorvos, parathion and trichlorphon, and two pyrethroid pesticides including permethrin and cypermethrin. We evaluated the pesticides for androgen receptor (AR)-mediated mechanisms using a human AR reporter gene assay in African monkey kidney cell line CV-1 transiently transfected with the constructed reporter gene plasmid pMMTV-CAT and the hAR expression plasmid AR/pcDNA3.1. We demonstrated that parathion showed significant inhibitory effects on the transcriptional activity induced by 1 nM of DHT with IC(50) value of (2.01+/-0.42) x 10(-7) M, though trichlorphon and dichlorvos lacked this activity. The two pyrethroid pesticides permethrin and cypermethrin exhibited lower activity than parathion with IC(50) value of (5.68+/-2.20) x 10(-5) and (6.80+/-2.30) x 10(-5) M, respectively. On the other hand, we failed to find AR-mediated androgenic activities of the tested chemicals. It is suggested that parathion possesses the highest activity, and permethrin and cypermethrin acted as poor antiandrogens. The present study provides insight into the mechanism of the pesticides.
有机磷酸酯类和拟除虫菊酯类是目前全球使用最广泛的杀虫剂。据报道,几种杀虫剂具有激素活性,因此被归类为内分泌干扰物。本研究旨在评估这些杀虫剂潜在的雄激素和抗雄激素活性。所选化学物质为三种有机磷酸酯类杀虫剂,包括敌敌畏、对硫磷和敌百虫,以及两种拟除虫菊酯类杀虫剂,包括氯菊酯和氯氰菊酯。我们使用人雄激素受体(AR)报告基因检测法,在瞬时转染了构建的报告基因质粒pMMTV-CAT和hAR表达质粒AR/pcDNA3.1的非洲绿猴肾细胞系CV-1中,评估这些杀虫剂对AR介导机制的影响。我们发现,对硫磷对1 nM双氢睾酮(DHT)诱导的转录活性具有显著抑制作用,IC(50)值为(2.01±0.42)×10(-7)M,而敌百虫和敌敌畏则缺乏这种活性。两种拟除虫菊酯类杀虫剂氯菊酯和氯氰菊酯的活性低于对硫磷,IC(50)值分别为(5.68±2.20)×10(-5)和(6.80±2.30)×10(-5)M。另一方面,我们未发现受试化学物质有AR介导的雄激素活性。表明对硫磷活性最高,氯菊酯和氯氰菊酯为较弱的抗雄激素。本研究为杀虫剂作用机制提供了见解。