石英晶体微天平自组装单层技术检测黄曲霉毒素B1

Raya Raykova, Dessislava A. Marinkova, Vera A. Semerdzhieva, M. Michiel, P. Griesmar, M. Mourdjeva, S. Yaneva, Ivo T. Iliev
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摘要

如今,允许检测低浓度物质的新生物传感器技术显示出多种多样。将改性石英作为石英晶体微天平(QCM)技术的一部分,构建一个系统有助于检测和确认样品中的低毒素浓度。本研究旨在将压电晶体金表面的制备和修饰方法应用于QCM技术(石英晶体微天平)检测浓度范围为0.2 ~ 2.0µg/L的黄曲霉毒素B1(AFB1)。介绍了实验用石英晶体传感器的制备方法。在石英表面活化并包覆自组装单层膜,固定兔抗黄曲霉毒素B1抗体,检测抗原-抗体反应。G '对应于材料在不同浓度下施加变形时的粘性特性,这反映在所用谐振器的灵敏度上。有毒污染物的检测可以通过QCM方法、超声谐振器和压电石英测量技术来实现。与直接和间接ELISA免疫分析相比,这些技术可以检测到低浓度的有毒污染物,特别是AFB1。
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Quartz Crystal Microbalance Detection of Aflatoxin B1 by Self-Assembled Monolayer Technique
New biosensor techniques allowing detection of low concentrated substances show a great variety nowadays. The construction of a system with modified quartz as a part of a Quartz Crystal Microbalance (QCM) techniques helps the detection and confirmation of low toxin concentrations in a sample. The study aims to allow the application of methods for preparation and modification of the gold surface of piezoelectric crystal for detection of aflatoxin B1(AFB1) in the concentration range 0.2 - 2.0 µg/L by QCM technique (quartz - crystal microbalance). The procedure for the preparation of quartz crystal sensors for experimental purposes was performed. The quartz surface was activated and covered with self-assembled monolayer to immobilize antibody (rabbit anti-aflatoxin B1) for the detection of antigen - antibody reaction. The G” corresponds to viscous properties of the material, during applied deformation of the material in the presence of different concentrations, which revealed in the sensitivity of the used resonator. Detection of toxic pollutants may be achieved via QCM methods, ultrasound resonator and piezoelectric quartz techniques for measurement. These techniques allow detection of significantly low concentrations of toxic pollutants, in particular, AFB1, compared to analysis with direct and indirect ELISA immunoassays.
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