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首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Towards immunoassay in whole blood: separationless sandwich-type electrochemical immunoassay based on in-situ generation of the substrate of the labeling enzyme
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Towards immunoassay in whole blood: separationless sandwich-type electrochemical immunoassay based on in-situ generation of the substrate of the labeling enzyme

机译:迈向全血免疫测定:基于标记酶底物原位产生的无分离夹心型电化学免疫测定

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An 18 minute separationless amperometric ELISA-type sandwich immunoassay, utilizing only stable reagents and having no washing steps is described. The platform for the assay was an electron conducting redox hydrogel on a vitreous carbon electrode. Avidin and choline oxidase were co-immobilized on the redox hydrogel and the biotinylated antibody to the antigen to be assayed (the biotin-labeled F(ab')_2 fragment of goat anti-rabbit IgG) was bound to the gel. When the antigen (goat anti-rabbit IgG) was present in the analyzed solution, then its binding to the immobilized antibody made the electrode receptive to the complementary peroxidase-labeled antibody (horseradish peroxidase-labeled F(ab')_2 fragment of goat antirabbit IgG). Its binding resulted in electrical contact ("wiring") of the horseradish peroxidase label to the redox hydrogel, and converted the non-catalytic hydrogel into an electrocatalyst for the reduction of hydrogen peroxide to water at -0.07 V (SCE) and resulted in the flow of a cathodic current. The electroreduced hydrogen peroxide was not added to the solution and was therefore not significantly accessible to hydrogen peroxide decomposing agents such as catalase. Instead, it was generated within the coating of the electrode through reacting dissolved choline with oxygen. This reaction was catalyzed by the immobilized choline oxidase. The reaction centers of choline oxidase, unlike those of horseradish peroxidase, are not connected to the electrode by the redox hydrogel.
机译:描述了一种仅使用稳定试剂且没有洗涤步骤的18分钟无间隔安培ELISA型夹心免疫分析方法。该测定的平台是在玻璃碳电极上的电子导电氧化还原水凝胶。将抗生物素蛋白和胆碱氧化酶共固定在氧化还原水凝胶上,并将针对待测抗原的生物素化抗体(山羊抗兔IgG的生物素标记的F(ab')_ 2片段)与凝胶结合。当分析溶液中存在抗原(山羊抗兔IgG)时,其与固定抗体的结合使电极可以接受互补的过氧化物酶标记的抗体(辣根过氧化物酶标记的山羊抗兔F(ab')_ 2片段IgG)。它的结合导致辣根过氧化物酶标记物与氧化还原水凝胶发生电接触(“接线”),并将非催化水凝胶转变成电催化剂,用于在-0.07 V(SCE)下将过氧化氢还原为水。阴极电流。未将电还原的过氧化氢添加到溶液中,因此过氧化氢分解剂(如过氧化氢酶)无法明显进入。相反,它是通过使溶解的胆碱与氧气反应在电极涂层内生成的。该反应被固定化的胆碱氧化酶催化。与辣根过氧化物酶不同,胆碱氧化酶的反应中心不通过氧化还原水凝胶与电极连接。

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