首页> 外文期刊>Analytical chemistry >APPLICATION OF REDOX ENZYMES FOR PROBING THE ANTIGEN-ANTIBODY ASSOCIATION AT MONOLAYER INTERFACES - DEVELOPMENT OF AMPEROMETRIC IMMUNOSENSOR ELECTRODES
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APPLICATION OF REDOX ENZYMES FOR PROBING THE ANTIGEN-ANTIBODY ASSOCIATION AT MONOLAYER INTERFACES - DEVELOPMENT OF AMPEROMETRIC IMMUNOSENSOR ELECTRODES

机译:氧化还原酶在单分子层界面抗原-抗体缔合中的应用-免疫光敏电极的开发

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Insulation of the electrical contact between a redox protein and an electrode surface upon association of an antibody to an antigen monolayer assembled on the electrode is used to develop immunosensor devices. In one configuration, a mixed monolayer consisting of the N epsilon-(2,4-dinitrophenyl) lysine antigen and ferrocene units acting as electron transfer mediators is applied to sense the dinitrophenyl antibody (DNP-Ab) in the presence of glucose oxidase (GOx) and glucose, In the absence of DNP-Ab, the mixed monolayer electrode stimulates the mediated electrocatalyzed oxidation of glucose that results in an amplified amperometric response. Association of the DNP-Ab to the modified electrode blocks the electrocatalytic transformation, The extent of the electrode insulation by the DNP-Ab is controlled by the Ab concentration in the sample. In the second configuration, a N epsilon-(2,4-dinitrophenyl)lysine antigen monolayer assembled on a Au electrode is applied to sense the DNP-Ab in the presence of a redox-modified GOx, exhibiting electrical communication with the electrode surface, Two kinds of redox-modified ''electrically wired'' GOx are applied: GOx modified by N-(ferrocenylmethyl)caproic acid, Fc-GOx, and a novel electrobiocatalyst generated by reconstitution of apo-GOx with a ferrocene-modified FAD semisynthetic cofactor, Electrocatalytic oxidation of glucose by the electrically wired biocatalysts proceeds in the presence of the antigen monolayer electrode, giving rise to an amplified amperometric signal. The electrocatalytic transformation is blocked upon association of the DNP-Ab to the monolayer electrode. The extent of electrode insulation toward the bioelectrocatalytic oxidation of glucose is controlled by the DNP-Ab concentrations in the samples. The application of biocatalysts for amperometric sensing of antigen-antibody interactions at the electrode surface makes the electrode insensitive to microscopic pinhole defects in the monolayer assembly. The antigen monolayer electrode is applied to sense the DNP-Ab in the concentration range 1-50 mu g mL(-1).
机译:当抗体与组装在电极上的抗原单层结合时,氧化还原蛋白与电极表面之间的电接触的绝缘被用于开发免疫传感器装置。在一种配置中,在葡萄糖氧化酶(GOx)存在的情况下,应用由Nε-(2,4-二硝基苯基)赖氨酸抗原和充当电子传递介质的二茂铁单元组成的混合单层,以感测二硝基苯基抗体(DNP-Ab)。 )和葡萄糖,在不存在DNP-Ab的情况下,混合单层电极会刺激介导的葡萄糖的电催化氧化,从而导致放大的安培响应。 DNP-Ab与修饰电极的缔合阻止了电催化转化。DNP-Ab对电极的绝缘程度由样品中的Ab浓度控制。在第二种配置中,在氧化还原修饰的GOx存在下,将组装在Au电极上的Nε-(2,4-二硝基苯基)赖氨酸抗原单层应用于感测DNP-Ab,该GOx表现出与电极表面的电连通,应用了两种氧化还原修饰的“电连接” GOx:用N-(二茂铁基甲基)己酸Fc-GOx修饰的GOx,和用二茂铁修饰的FAD半合成辅因子重构载脂蛋白-GOx产生的新型电生物催化剂在抗原单层电极的存在下,通过有线生物催化剂对葡萄糖进行电催化氧化,产生放大的安培信号。当DNP-Ab与单层电极缔合时,电催化转化被阻止。电极对葡萄糖的生物电催化氧化的绝缘程度由样品中的DNP-Ab浓度控制。生物催化剂在电极表面用于安培感测抗原-抗体相互作用的应用使电极对单层组件中的微观针孔缺陷不敏感。应用抗原单层电极检测DNP-Ab的浓度范围为1-50μgmL(-1)。

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