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首页> 外文期刊>Analytical chemistry >Probing antigen-antibody binding processes by impedance measurements on ion-sensitive field-effect transistor devices and complementary surface plasmon resonance analyses: Development of cholera toxin sensors
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Probing antigen-antibody binding processes by impedance measurements on ion-sensitive field-effect transistor devices and complementary surface plasmon resonance analyses: Development of cholera toxin sensors

机译:通过对离子敏感的场效应晶体管器件进行阻抗测量和互补表面等离子体共振分析来探测抗原-抗体结合过程:霍乱毒素传感器的开发

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Impedance measurements on ISFET devices are employed to develop new immunosensors. The analysis of the transconductance curves recorded at variable frequencies, upon the formation of antigen-antibody complexes on the ISFET devices, allows determination of the biomaterial film thicknesses. Complementary surface plasmon resonance measurements of analogous biosensor systems, using Au-coated glass slides as support, reveal similar film thicknesses of the biomaterials and comparable detection limits. A dinitrophenyl antigen layer is immobilized on the ISFET gate as a sensing interface for the anti-dinitrophenyl antibody (anti-DNP-Ab). The anti-DNP-Ab is analyzed with a sensitivity that corresponds to 0.1 mug mL(-1). The assembly of the biotinylated anti-anti-DNP-Ab and avidin layers on the base anti-DNP-Ab layer is characterized by impedance measurements. The development of an ISFET-based sensor for the cholera toxin is described. The anti-cholera toxin antibody is immobilized on the ISFET device. The association of the cholera toxin (CT) to the antibody is monitored by the impedance measurements. The detection limit for analyzing CT is 1.0 x 10(-11) M. [References: 62]
机译:ISFET器件上的阻抗测量被用于开发新的免疫传感器。在ISFET器件上形成抗原-抗体复合物后,对以可变频率记录的跨导曲线的分析可以确定生物材料的膜厚度。相似的生物传感器系统的互补表面等离振子共振测量,使用镀金的载玻片作为载体,显示出相似的生物材料膜厚度和可比较的检测极限。将二硝基苯基抗原层固定在ISFET栅极上,作为抗二硝基苯基抗体(anti-DNP-Ab)的传感界面。分析抗DNP-Ab的灵敏度对应于0.1毫升mL(-1)。生物素化的抗-DNP-Ab和抗生物素蛋白层在基础抗-DNP-Ab层上的组装通过阻抗测量来表征。描述了基于ISFET的霍乱毒素传感器的开发。抗霍乱毒素抗体被固定在ISFET装置上。霍乱毒素(CT)与抗体的结合通过阻抗测量来监测。分析CT的检测极限是1.0 x 10(-11)M。[参考:62]

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