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A planar amperometric creatinine biosensor employing an insoluble oxidizing agent for removing redox-active interferences

机译:平面电流型肌酐生物传感器,采用不溶性氧化剂消除氧化还原活性干扰

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摘要

A planar microchip-based creatinine biosensor employing an oxidizing layer (e.g., a PbO2 film), where interfering redox-active substances are broken (i.e., oxidized) to redox-inactive products, was developed to facilitate the microfabrication of the sensor and to provide improved, reliable determination of - creatinine in physiological samples. The feasibility of using hydrophilic polyurethanes in permselective barrier membranes for creatinine biosensors and the effect of adding a silanizing agent (adhesion promoter) on the sensor performance (e.g., sensitivity, stability, and lifetime) are described. The proposed creatinine microsensor,with a three-layer configuration, i.e., enzyme, protecting, and oxidizing layers, exhibits good electrochemical performance in, terms of ;response time (t(95%) = 98 s at 100 --> 200 muM creatinine change), linearity (1-1000 muM, r = 0.9997), detection limit (0.8 muM), and lifetime (similar to 35 days). The creatinine biosensor devised in a differential sensing arrangement that compensates the erroneous results from creatine is considered to be suitable for assay of serum specimens.
机译:开发了一种基于平面微芯片的肌酸酐生物传感器,该传感器采用了氧化层(例如PbO2膜),其中干扰的氧化还原活性物质被破坏(即被氧化)成氧化还原惰性产物,以促进传感器的微细加工并提供改进,可靠的生理样品中肌酐测定方法。描述了在肌酐生物传感器的选择性渗透屏障膜中使用亲水性聚氨酯的可行性以及添加硅烷化剂(增粘剂)对传感器性能(例如,灵敏度,稳定性和寿命)的影响。所提出的肌酸酐微传感器具有三层结构,即酶,保护层和氧化层,在响应时间(t(95%)= 98 s在100-> 200μM肌酸酐下)表现出良好的电化学性能变化),线性度(1-1000μM,r = 0.9997),检出限(0.8μM)和寿命(约35天)。以差动传感方式设计的肌酸酐生物传感器可补偿肌酸的错误结果,被认为适用于分析血清标本。

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