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Silica coating magnetic nanoparticle-based silver enhancement immunoassay for rapid electrical detection of ricin toxin

机译:二氧化硅涂层磁性纳米粒子基银增强免疫分析法可快速检测蓖麻毒素

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摘要

We developed a novel silica coating magnetic nanoparticle-based silver enhancement immunoassay (SEIA) for ricin toxin (RT) rapid electrical detection using interdigitated array microelectrodes (IDAMs) as electrodes. This novel system was developed by taking advantage of the separation and enrichment properties of magnetic nanoparticles (MNPs) and the catalytic properties of gold nanoparticles (GNPs). In this system, MNPs labeled with anti-ricin A chain antibody 6A6 were used to capture ricin and GNPs labeled with anti-ricin B chain antibody 7G7 were used as detectors. To enhance the electrical signal, the catalytic properties of GNPs were used to promote silver reduction. In the presence of ricin, a sandwich structure was formed which could be separated by a magnetic field. The sandwich complex was then transferred to IDAMs. The silver particles bridged the IDAM gaps and gave rise to an enhancing electrical signal that was detected by conductivity measurements. The results showed that the sensitivity of the SEIA for ricin electrical detection was five times greater than that of conventional colorimetric sandwich ELISA. Once the antibody used for detection was coated on the plates or MNPs, our system was three times more rapid than colorimetric sandwich ELISA. This rapid and sensitive detection system provides promising new potential for ricin detection.
机译:我们开发了一种新型的基于二氧化硅涂层磁性纳米粒子的银增强免疫测定(SEIA),用于使用叉指阵列微电极(IDAM)作为电极的蓖麻毒素(RT)快速电检测。该新型系统是利用磁性纳米颗粒(MNP)的分离和富集特性以及金纳米颗粒(GNP)的催化特性而开发的。在该系统中,使用标记有抗蓖麻蛋白A链抗体6A6的MNP捕获蓖麻毒蛋白,而标记有抗蓖麻蛋白B链抗体7G7的GNP用作检测器。为了增强电信号,将GNP的催化性能用于促进银的还原。在蓖麻毒蛋白的存在下,形成了可以被磁场分离的夹心结构。然后将三明治复合物转移至IDAM。银颗粒弥合了IDAM间隙,并产生了增强的电信号,该电信号可通过电导率测量来检测。结果表明,SEIA对蓖麻毒素电检测的灵敏度是常规比色夹心ELISA的五倍。一旦将用于检测的抗体包被在平板或MNP上,我们的系统的速度将比色夹心ELISA快三倍。这种快速灵敏的检测系统为蓖麻毒素检测提供了有希望的新潜力。

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