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Comprehensive Study of Bioanalytical Platforms: Xanthine Oxidase

机译:生物分析平台的综合研究:黄嘌呤氧化酶

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A comprehensive study of a general bioanalytical platform for biosensor applications is presented using xanthine oxidase (XnOx) as a case study within the framework of developing approaches of broad applicability. In this context, emphasis is placed on amperometric biosensors based on XnOx, which has been immobilized by covalent binding to gold electrodes modified with dithiobis-N-succinimidyl propionate. The immobilized XnOx layers have been characterized using atomic force microscopy under liquid conditions and quartz crystal microbalance techniques. In addition, spatially resolved mapping of enzymatic activity has been carried out using scanning electrochemical microscopy. Redox dyes of phenothiazine derivatives, specifically, thionine and methylene blue, have been found to work well as electron acceptors for reduced XnOx. The kinetic parameters and equilibrium constants of the mediated enzymatic oxidation of xanthine in the presence of the above-mentioned redox dyes have been calculated. The response of the enzymatic electrode to varying xanthine concentrations has been obtained in the presence of thionine or methylene blue as redox mediator in solution. Under these conditions, xanthine could be determined amperometrically at +0.2 V versus SSCE.
机译:在广泛应用的开发方法框架内,以黄嘌呤氧化酶(XnOx)为案例,对生物传感器应用的通用生物分析平台进行了全面研究。在这种情况下,重点放在基于XnOx的电流型生物传感器上,该传感器已通过与二硫代双-N-琥珀酰亚胺基丙酸酯改性的金电极共价结合而固定。固定的XnOx层已在液体条件下使用原子力显微镜和石英晶体微量天平技术进行了表征。另外,已经使用扫描电化学显微镜对酶活性进行空间分辨的作图。已发现吩噻嗪衍生物的氧化还原染料,特别是硫氨酸和亚甲蓝,可以很好地用作还原XnOx的电子受体。计算了在上述氧化还原染料存在下介导的黄嘌呤酶促氧化的动力学参数和平衡常数。在溶液中存在作为氧化还原介体的硫氨酸或亚甲基蓝的情况下,已经获得了酶电极对不同的黄嘌呤浓度的响应。在这些条件下,黄嘌呤可以在+0.2 V相对于SSCE的电流下确定。

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