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Urea Amperometric Biosensors Based On A Multifunctional Bipolymeric Layer: Comparing Enzyme Immobilization Methods

机译:基于多功能双聚合层的尿素安培生物传感器:比较酶固定方法

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摘要

This paper outlines the results obtained with biosensors designed for urea amperometric detection. The incorporation of urease into a bipolymeric substrate consisting of poly(pyrrole) and poly(5-amino-1-naphthol) was performed through four different approaches: direct adsorption, entrapment in cellulose acetate layer, cross-linking with glutaraldehyde, and also covalent attachment to the polymeric matrix. Poly(pyrrole) acts as amperometric transducer in these biosensors, while poly(5-amino-1 -naphthol) drastically reduces the interference signal of agents such as ascorbic and uric acids. The biosensors containing urease covalently attached to the substrate provided interesting results in terms of sensitivity towards urea (0.50μAcm~(-2) mmol~(-1) L), lifetime (20 days) and short response times, due to the enzyme immobilization method used. All biosensors analyzed showed also a wide linear concentration range (up to 100mmol L~(-1)) and low detection limits (0.22-0.58 mmol L~(-1)).
机译:本文概述了设计用于尿素安培检测的生物传感器获得的结果。通过四种不同的方法将脲酶掺入由聚吡咯和聚5-氨基-1-萘酚组成的双聚合底物中:直接吸附,截留在乙酸纤维素层中,与戊二醛交联以及共价与聚合物基质的连接。聚吡咯在这些生物传感器中充当安培传感器,而聚(5-氨基-1-萘酚)则大大降低了抗坏血酸和尿酸等药物的干扰信号。由于酶的固定化,共价结合到底物上的含脲酶的生物传感器在对尿素的敏感性(0.50μAcm〜(-2)mmol〜(-1)L),寿命(20天)和响应时间短方面提供了有趣的结果。使用的方法。分析的所有生物传感器还显示出宽的线性浓度范围(高达100mmol L〜(-1))和低的检测限(0.22-0.58 mmol L〜(-1))。

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