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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Using short-term bioassays to evaluate the endocrine disrupting capacity of the pesticides linuron and fenoxycarb
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Using short-term bioassays to evaluate the endocrine disrupting capacity of the pesticides linuron and fenoxycarb

机译:使用短期生物测定评估杀虫剂林氏和芬太西卡布的内分泌破坏能力

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Abstract Several short-term whole-organism bioassays based on transgenic aquatic models are now under validation by the OECD (Organization for Economic Co-operation and Development) to become standardized test guidelines for the evaluation of the endocrine activity of substances. Evaluation of the endocrine disrupting capacity of pesticides will be a domain of applicability of these future reference tests. The herbicide linuron and the insecticide fenoxycarb are two chemicals commonly used in agricultural practices. While numerous studies indicate that linuron is likely to be an endocrine disruptor, there is little information available on the effect of fenoxycarb on vertebrate endocrine systems. Using whole-organism bioassays based on transgenic Xenopus laevis tadpoles and medaka fry we assessed the potential of fenoxycarb and linuron to disrupt thyroid, androgen and estrogen signaling. In addition we used in silico approach to simulate the affinity of these two pesticides to human hormone receptors. Linuron elicited thyroid hormone-like activity in tadpoles at all concentrations tested and, showed an anti-estrogenic activity in medaka at concentrations 2.5mg/L and higher. Our experiments suggest that, in addition to its previously established anti-androgenic action, linuron exhibits thyroid hormone-like responses, as well as acting at the estrogen receptor level to inhibit estrogen signaling. Fenoxycarb on the other hand, did not cause any changes in thyroid, androgen or estrogen signaling at the concentrations tested. ]]>
机译:<![cdata [ 抽象 几个基于转基因水产模型的短期全体生物测量级数现在受到经合组织的验证(组织)经济合作和发展)成为评价物质的内分泌活动的标准测试指南。评估农药的内分泌破坏能力将是这些未来参考测试的适用性领域。除草剂Linuron和杀虫剂Fenoxycarb是一种常用于农业实践的化学品。虽然众多研究表明,林氏植物可能是内分泌干扰体,但在芬太西卡布对脊椎动物内分泌系统的影响几乎没有信息。使用基于转基因的全体生物生物测量率 Xenopus laevis 在Silico 模拟这两种农药对人类激素受体的亲和力。 Linuron在所有测试的所有浓度下引发甲状腺激素样活性,并在所有浓度下,在浓度为2.5 mg / l和更高的抗雌激素。我们的实验表明,除了以前建立的抗雄激素作用外,林隆还表现出甲状腺激素样反应,以及在雌激素受体水平上作用以抑制雌激素信号。另一方面,Fenoxycarb没有引起甲状腺,雄激素或雌激素信号在经过测试的浓度的任何变化。 ]]>

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