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Glucocorticoid activity detected by in vivo zebrafish assay and in vitro glucocorticoid receptor bioassay at environmental relevant concentrations

机译:通过体内斑马鱼测定法和体外糖皮质激素受体生物测定法在环境相关浓度下检测到的糖皮质激素活性

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摘要

Glucocorticoids are pharmaceutical contaminants of emerging concern due to their incomplete removal during wastewater treatment, increased presence in aquatic environment and their biological potency. The zebrafish is a popular model for aquatic toxicology and environmental risk assessment. This study aimed to determine if glucocorticoids at environmental concentrations would perturb expression of selected glucocorticoid-responsive genes in zebrafish and to investigate their potentials as an in vivo zebrafish assay in complementing in vitro glucocorticoid receptor bioassay. The relative expression of eleven glucocorticoid-responsive genes in zebrafish larvae and liver of adult male zebrafish exposed to three representative glucocorticoids (dexamethasone, prednisolone and triamcinolone) was determined. The expression of pepck, baiap2 and pxr was up-regulated in zebrafish larvae and the expression of baiap2, pxr and mmp-2 was up-regulated in adult zebrafish exposed to glucocorticoids at concentrations equivalent to total glucocorticoids reported in environmental samples. The responsiveness of the specific genes were sufficiently robust in zebrafish larvae exposed to a complex environmental sample detected with in vitro glucocorticoid activity equivalent to 478 pM dexamethasone (DEX-EQ) and confirmed to contain low concentration (0.2 ng/L or less) of the targeted glucocorticoids, and possibly other glucocorticoid-active compounds. The findings provided in vivo relevance to the in vitro glucocorticoid activity and suggested that the environmental sample can perturb glucocorticoid-responsive genes in its original, or half the diluted, concentration as may be found in the environment. The study demonstrated the important complementary roles of in vivo zebrafish and in vitro bioassays coupled with analytical chemistry in monitoring environmental glucocorticoid contaminants. (C) 2015 Elsevier Ltd. All rights reserved.
机译:糖皮质激素是引起人们关注的药物污染物,原因是它们在废水处理过程中不能完全清除,在水生环境中的存在增加以及它们的生物效力。斑马鱼是用于水生毒理学和环境风险评估的流行模型。这项研究旨在确定环境浓度下的糖皮质激素是否会干扰斑马鱼中选定的糖皮质激素反应性基因的表达,并研究其作为体内斑马鱼试验在补充体外糖皮质激素受体生物测定中的潜力。测定了暴露于三种代表性糖皮质激素(地塞米松,泼尼松龙和曲安西龙)的成年雄性斑马鱼的斑马鱼幼虫和肝脏中11个糖皮质激素响应基因的相对表达。在斑马鱼幼虫中,pepck,baiap2和pxr的表达上调,在暴露于糖皮质激素的成年斑马鱼中,baiap2,pxr和mmp-2的表达上调。在暴露于复杂环境样品的斑马鱼幼虫中,特定基因的响应能力足够强,其体外糖皮质激素活性相当于478 pM地塞米松(DEX-EQ),并确认含有低浓度(0.2 ng / L或更低)的斑马鱼幼虫。靶向糖皮质激素,可能还有其他糖皮质激素活性化合物。该发现提供了与体外糖皮质激素活性的体内相关性,并表明环境样品可以干扰其在糖皮质激素响应基因中的原始浓度或在环境中可能发现的稀释浓度的一半。该研究证明了体内斑马鱼和体外生物测定法以及分析化学方法在监测环境糖皮质激素污染物中的重要互补作用。 (C)2015 Elsevier Ltd.保留所有权利。

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