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Electrochemical Immunosensor Using the Modification of an Amine-functionalized Indium Tin Oxide Electrode with Carboxylated Single-walled Carbon Nanotubes

机译:电化学修饰的胺官能化氧化铟锡电极与羧基化的单壁碳纳米管的电化学免疫传感器。

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摘要

We have developed an electrochemical immunosensor that combines the electrocatalytic property of carbon nanotube and the low background current of indium tin oxide(ITO)electrode.A partial monolayer of carboxylated single-walled carbon nanotube(CCNT)is covalently formed on an ITO electrode modified with amine-terminated phosphonic acid.Nonspecifically adsorbed avidin on the hydrophobic sidewalls of CCNT is used to immobilize biotinylated antibody and to reduce the nonspecific binding to CCNT.The biotinylated antimouse IgG bound on avidin and the antimouse IgG conjugated with alkaline phosphatase(ALP)sandwiches a target mouse IgG.ALP catalyzes the conversion of p-aminophenyl phosphate monohydrate into p-aminophenol,which is electrocatalytically oxidized to p-quinone imine on CCNT surface.Moderate electrocatalytic electrode obtained with the combination of CCNT and ITO allows low detection limit(0.1 ng/ mL).
机译:我们开发了一种结合了碳纳米管的电催化性能和铟锡氧化物(ITO)电极的低本底电流的电化学免疫传感器。羧基化的单壁碳纳米管(CCNT)的部分单分子层共价形成在经修饰的ITO电极上氨基末端的膦酸。非特异性吸附的抗生物素蛋白在CCNT的疏水性侧壁上用于固定生物素化抗体并减少与CCNT的非特异性结合。生物素化抗鼠IgG结合在抗生物素蛋白上,抗鼠IgG与碱性磷酸酶(ALP)夹心目标小鼠IgG.ALP催化将对氨基苯基磷酸酯一水合物转化为对氨基苯酚,后者在CCNT表面上被电催化氧化为对醌亚胺.CCNT和ITO组合获得的适度电催化电极检测限低(0.1 ng / mL)。

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