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Miniaturization of a transthyretin binding assay using a fluorescent probe for high throughput screening of thyroid hormone disruption in environmental samples

机译:使用荧光探针对运甲状腺素蛋白结合测定的小型化,用于高通量筛选环境样品中的甲状腺激素破坏

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摘要

Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due to their possible adverse neurological and developmental effects on both humans and wildlife. Currently, the most successful bio-analytical method to detect and evaluate TH disruptors, which target the plasma transport of TH in environmental samples, is the radio-ligand thyroxine-transthyretin (T4-TTR) binding assay. Yet, costly materials and tedious handling procedures prevent the use of this assay in high throughput analysis that is nowadays urgently demanded in environmental quality assessment. For the first time a miniaturized fluorescence T4-TTR binding assay was developed in a 96 well microplate and tested with eight TH disrupting compounds. For most of the compounds, the sensitivity of the newly developed assay was slightly lower than the radio-ligand binding assay, however, throughput was enhanced at least 100-fold, while using much cheaper materials. The TH disrupting potency of 22 herring gull (Larus argentatus) egg extracts, collected from two different locations (Musvær and Reiaren) in Norway, was evaluated to demonstrate the applicability of the assay for environmental samples.
机译:甲状腺激素(TH)破坏性化合物可能对人类和野生生物造成不利的神经和发育影响,因此它们可能是重要的环境污染物。当前,以环境样品中TH的血浆运输为目标的检测和评估TH干扰物的最成功的生物分析方法是放射性配体甲状腺素-运甲状腺素蛋白(T4-TTR)结合测定法。然而,昂贵的材料和繁琐的处理程序阻碍了这种分析在当今环境质量评估中迫切需要的高通量分析中的使用。首次在96孔微孔板中开发了微型荧光T4-TTR结合测定法,并用8种TH破坏化合物进行了测试。对于大多数化合物,新开发的测定法的灵敏度略低于放射性配体结合测定法,但是,通量提高了至少100倍,同时使用了便宜得多的材料。评估了从挪威两个不同地点(Musvær和Reiaren)收集的22种鲱鸥(Larus argentatus)卵提取物的TH破坏力,以证明该测定法对环境样品的适用性。

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