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Multi-Residue Method for the Analysis of Stilbene Estrogens in Milk

机译:牛奶中二苯乙烯类雌激素含量的多残留方法分析

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摘要

The rapid analysis of stilbene estrogens is crucially important in the environment, food and health sectors, but quantitation of lower detection limit for stilbene estrogens persists as a severe challenge. We herein described a homologous and sensitive fluorescence polarization (FP) assay based on estrogen receptor α ligand binding domain (ER-LBD) to monitor stilbene estrogens in milk. Under optimal conditions, the half maximal inhibitory concentrations (IC50) of the FP assay were 9.27 nM, 12.94 nM, and 22.38 nM for hexestrol, dienestrol and diethylstilbestrol, respectively. And the corresponding limits of detection (LOD) values were 2.94 nM, 2.89 nM, and 3.12 nM. Finally, the assay was applied to determine the stilbenes in milk samples where the mean recoveries ranged from 95.76% to 112.78% and the coefficients of variation (CV) below 12.00%. Furtherly, we have focused our study on high cross-reactivity phenomena by using two in silico approaches, including molecular docking analysis and topology analysis. Overall, docking results show that several residues in the hydrophobic pocket produce hydrophobic interactions with the tested drug molecules, which contribute to the stability of their binding. In this paper, we conclude that the FP method is suitable for the rapid detection of stilbenes in milk samples, requiring no expensive analytical equipment or time-consuming sample preparation. This work offers a practical approach that applies bioscience technology in food safety testing and improves analytical speed and laboratory efficiency.
机译:对二苯乙烯雌激素的快速分析在环境,食品和卫生领域至关重要,但是对二苯乙烯雌激素的检测下限进行定量分析仍然是一项严峻的挑战。我们在本文中描述了一种基于雌激素受体α配体结合域(ER-LBD)的同源和敏感的荧光偏振(FP)检测方法,以监测牛奶中的1,2-二苯乙烯雌激素。在最佳条件下,FP分析的己烯雌酚,己烯雌酚和己烯雌酚的最大半数抑制浓度(IC50)分别为9.27 nM,12.94 nM和22.38 nM。相应的检测限(LOD)值为2.94 nM,2.89 nM和3.12 nM。最后,该测定法用于测定牛奶样品中的斯蒂尔苯,其中平均回收率在95.76%至112.78%之间,变异系数(CV)在12.00%以下。此外,我们通过使用两种计算机模拟方法(包括分子对接分析和拓扑分析)将研究重点放在了高交叉反应现象上。总的来说,对接结果表明疏水口袋中的几个残基与被测药物分子产生疏水相互作用,这有助于其结合的稳定性。在本文中,我们得出的结论是,FP方法适用于牛奶样品中司丹本的快速检测,不需要昂贵的分析设备或费时的样品前处理。这项工作提供了一种将生物科学技术应用于食品安全测试并提高分析速度和实验室效率的实用方法。

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