水中农药残留免疫化学检测技术的优化

B. Uthuppu, N. Kostesha, M. Jakobsen, Spire M. Kiersgaard, J. Aamand, C. Jørgensen
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引用次数: 1

摘要

我们正在开发一种基于免疫分析检测系统的实时电化学传感器,用于检测和量化地下水中农药残留的存在。高选择性和敏感的免疫反应正在研究和优化,以使其达到实时在线传感器的水平。在这个项目中,使用抗BAM单克隆抗体,描述了表面固定的2,6-二氯苯甲酰胺(BAM)半抗原和水样中存在的BAM之间的竞争性免疫测定。2,6-二氯苯甲酰胺(BAM)是过去广泛使用的除草剂二氯苯乙酯的降解产物,是欧洲地下水中最常见的农药残留之一。BAM具有很强的抗进一步降解性,并且可溶于水。我们合成并固定化了一个小的BAM半抗原文库,并比较了抗体对该文库的亲和力常数。此外,由于bam -半抗原表面的再生是开发基于免疫测定的实时电化学传感器的先决条件,因此已经进行了用新合成的bam -半抗原修饰的表面再生研究,并将其与测量的亲和常数进行了比较和关联。通过常规的酶联免疫吸附试验,我们发现其中一种对抗BAM抗体具有中间亲和力的固定BAM半抗原在再生方面表现更好。基于这种免疫分析和电化学检测的全自动微流体的设计和制造正在进行中。
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Optimization of immunochemistry for sensing techniques to detect pesticide residues in water
We are working on the development of a real-time electrochemical sensor based on an immunoassay detection system to detect and quantify the presence of pesticide residues in ground water. Highly selective and sensitive immuno-reactions are being investigated to be optimized in order to bring them into the level of real-time in-line sensors. In this project a competitive immunoassay between surface immobilized 2,6-dichlorobenzamide (BAM) haptens and BAM present in the water sample using an anti-BAM monoclonal antibody is being described. 2,6-Dichlorobenzamide (BAM) is a degradation product of the herbicide, dichlobenil which has been used extensively in the past and it is among the most frequently found pesticide residues in European ground water. BAM is highly resistant to further degradation and is fairly soluble in water. We have synthesized and immobilized a small library of BAM haptens and compared the affinity constants of the antibody towards this library. Furthermore, since regeneration of the BAM-hapten surface is a prerequisite for the development of a real-time electrochemical sensor with immunoassay-based detection, studies on regeneration of surfaces, modified with the newly synthesized BAM-haptens has been preformed and compared and correlated to the measured affinity constants. By using conventional ELISA we were able to indicate that one of the immobilized BAM haptens with an intermediate affinity towards the anti-BAM antibody was better in terms of regeneration. Design and fabrication of a fully automated microfluidic based on this immunoassay and electrochemical detection are in progress.
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