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Competitive androgen receptor antagonism as a factor determining the predictability of cumulative antiandrogenic effects of widely used pesticides

机译:竞争性雄激素受体拮抗作用是决定广泛使用的农药累积抗雄激素作用的可预测性的因素

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Background: Many pesticides in current use have recently been revealed as in vitro androgen receptor (AR) antagonists, but information about their combined effects is lacking. Objective: We investigated the combined effects and the competitive AR antagonism of pesticide mixtures. Methods: We used the MDA-kb2 assay to test a combination of eight AR antagonists that did not also possess AR agonist properties ("pure" antagonists; 8 mix: fludioxonil, fenhexamid, ortho-phenylphenol, imazalil, tebuconazole, dimethomorph, methiocarb, pirimiphos-methyl), a combination of five AR antagonists that also showed agonist activity (5 mix: cyprodinil, pyrimethanil, vinclozolin, chlorpropham, linuron), and all pesticides combined (13 mix). We used concentration addition (CA) and independent action (IA) to formulate additivity expectations, and Schild plot analyses to investigate competitive AR antagonism. R esults: A good agreement between the effects of the mixture of eight "pure" AR antagonists and the responses predicted by CA was observed. Schild plot analysis revealed that the 8 mix acted by competitive AR antagonism. However, the observed responses of the 5 mix and the 13 mix fell within the "prediction window" boundaries defined by the predicted regression curves of CA and IA. Schild plot analysis with these mixtures yielded anomalous responses incompatible with competitive receptor antagonism. C onclusions: A mixture of widely used pesticides can, in a predictable manner, produce combined AR antagonist effects that exceed the responses elicited by the most potent component alone. Inasmuch as large populations are regularly exposed to mixtures of antiandrogenic pesticides, our results underline the need for considering combination effects for these substances in regulatory practice.
机译:背景:最近已发现许多目前使用的农药是体外雄激素受体(AR)拮抗剂,但缺乏有关其联合作用的信息。目的:我们研究了农药混合物的综合作用和竞争性AR拮抗作用。方法:我们使用MDA-kb2分析法测试了八种同时不具有AR激动剂特性的AR拮抗剂(“纯”拮抗剂; 8种混合物:氟丁酮,苯六胺,邻苯基苯酚,咪唑,戊唑醇,二甲吗啉,甲硫威,吡虫啉-甲基),也显示激动剂活性的5种AR拮抗剂的混合物(5种混合物:环丙啶,嘧菌胺,长春唑啉,氯丙胺,亚麻嘧啶)和所有农药组合(13种混合物)。我们使用浓度增加(CA)和独立作用(IA)来制定可加性期望值,并使用Schild图分析研究竞争性AR拮抗作用。结果:观察到八个“纯” AR拮抗剂混合物的作用与CA预测的反应之间的良好一致性。 Schild情节分析显示,这8种混合物起竞争性AR拮抗作用。但是,观察到的5种混合物和13种混合物的响应落在由CA和IA的预测回归曲线定义的“预测窗口”范围内。用这些混合物进行Schild图分析得出的异常反应与竞争性受体拮抗作用不相容。包含物:广泛使用的农药混合物可以以可预见的方式产生联合的AR拮抗剂作用,其作用超过仅由最有效成分引起的反应。由于大量人口经常接触抗雄激素农药混合物,因此我们的结果强调了在监管实践中需要考虑这些物质的组合作用。

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