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首页> 外文期刊>Analytical methods >Ultrasensitive label-free immunoassay for diethylstilbestrol based on Au nanoparticles on mesoporous silica and amino-functionalized graphene
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Ultrasensitive label-free immunoassay for diethylstilbestrol based on Au nanoparticles on mesoporous silica and amino-functionalized graphene

机译:基于介孔二氧化硅和氨基官能化石墨烯上的金纳米粒子的己烯雌酚的超灵敏无标记免疫分析

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A novel label-free electrochemical immunosensor was developed for sensitive and selective determination of diethylstilbestrol (DES). An amino-functionalized graphene sheet dispersed with chitosan (NH2-GS-Chit) and Au nanoparticles onto mesoporous silica (Au@SBA-15) was used to modify screen-printed electrodes (SPEs). NH2-GS-Chit with prominent conductivity as well as a large number of a€“NH2 binding groups was explored to amplify electrochemical signals. Au nanoparticles (AuNPs) acting as an electroactive material could efficiently enhance the interfacial electron transfer. While the amino-functionalized mesoporous silica (NH2-SBA-15) offered more binding sites for loading the DES antibody (Ab) and AuNPs due to the large surface area of the mesoporous structure, the synergistic effect of AuNPs and NH2-SBA-15 enhances the electrochemical signal for highly sensitive assay of the target. Under optimal conditions, the electrochemical immunoassay exhibited a wide linear range of 0.01a€“20 ng mLa?’1 with a low detection limit of 3.4 pg mLa?’1 for DES. The performance of the fabricated immunosensor was evaluated with fresh milk spiked with DES. The satisfactory results indicate that this convenient and sensitive technique offers great promise for the detection of DES in animal derived foods.
机译:开发了一种新型的无标记电化学免疫传感器,用于灵敏和选择性测定己烯雌酚(DES)。用分散有壳聚糖(NH2-GS-Chit)和金纳米颗粒的氨基官能化石墨烯片材修饰到中孔二氧化硅(Au @ SBA-15)上,以修饰丝网印刷电极(SPEs)。研究了具有突出电导率的NH2-GS-Chit和大量的NH2结合基团,以放大电化学信号。作为电活性材料的金纳米粒子(AuNPs)可以有效地增强界面电子转移。尽管由于介孔结构的大表面积,氨基官能化的介孔二氧化硅(NH2-SBA-15)提供了更多的结合位点以装载DES抗体(Ab)和AuNP,但AuNP和NH2-SBA-15的协同作用增强了电化学信号,可高度灵敏地检测目标。在最佳条件下,电化学免疫分析法显示的线性范围很广,为0.01a€“ 20 ng mLa?'1,而DES的检测限较低,为3.4 pg mLa?'1。用掺有DES的新鲜牛奶评估了制成的免疫传感器的性能。令人满意的结果表明,这种方便,灵敏的技术为检测动物衍生食品中的DES提供了广阔的前景。

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