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Electrochemical enzyme immunoassays on microchip platforms

机译:微芯片平台上的电化学酶免疫测定

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A microfluidic device for conducting electrochemical enzyme immunoassays is described. The new "lab-on-a-chip" protocol integrates precolumn reactions of alkaline phosphatase-labeled antibody (anti-mouse IgG) with the antigen (mouse IgG), followed by electrophoretic separation of the free antibody and antibody-antigen complex. The separation is followed by a postcolumn reaction of the enzyme tracer with the 4-aminophenyl phosphate substrate and a downstream amperometric detection of the liberated 4-aminophenol product. Factors influencing the reaction, separation, and detection processes were optimized, and the analytical performance was characterized. An applied field strength of 256 V/cm results in free antibody and antibody-antigen complex migration times of 125 and 340 s, respectively. A remarkably low detection limit of 2.5 x 10(-16) g/mL (1.7 x 10(-18) M) is obtained for the mouse IgG model analyte. Such combination of a complete integrated immunoassay, an attractive analytical performance, and the distinct miniaturization/portability advantages of electrochemical microsystems offers considerable promise for designing self-contained and disposable chips for decentralized clinical diagnostics or onsite environmental testing.
机译:描述了用于进行电化学酶免疫测定的微流体装置。新的“芯片实验室”协议整合了碱性磷酸酶标记的抗体(抗小鼠IgG)与抗原(小鼠IgG)的柱前反应,然后通过电泳分离出游离抗体和抗体-抗原复合物。分离后,酶示踪剂与4-氨基苯基磷酸酯底物进行柱后反应,并对释放的4-氨基苯酚产物进行下游安培检测。优化了影响反应,分离和检测过程的因素,并表征了分析性能。 256 V / cm的施加场强分别导致游离抗体和抗体-抗原复合物的迁移时间分别为125和340 s。对于小鼠IgG模型分析物,获得了2.5 x 10(-16)g / mL(1.7 x 10(-18)M)的极低检测限。完整的集成免疫测定法,引人注目的分析性能以及电化学微系统独特的小型化/便携性优势的这种组合为设计用于分散式临床诊断或现场环境测试的自足式和一次性芯片提供了可观的前景。

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