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首页> 外文期刊>Reactive & Functional Polymers >Development of a potentiometric urea biosensor based on copolymer poly(N-3-aminopropyl pyrrole-co-pyrrole) film
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Development of a potentiometric urea biosensor based on copolymer poly(N-3-aminopropyl pyrrole-co-pyrrole) film

机译:基于共聚物聚(N-3-氨丙基吡咯-共吡咯)薄膜的电位尿素生物传感器的研制

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摘要

A novel potentiometric biosensor has been developed for the quantitative estimation of urea in aqueous solution. The enzyme, urease (Urs), was covalently immobilized on a novel conducting copolymer poly(N-3-aminopropyl pyrrole-Co-pyrrole) film, electrochemically prepared onto an indium-tin-oxide (ITO) coated glass plate. The covalent linkage of enzyme and porous morphology of the polymer film lead to high enzyme loading and an increased lifetime stability of the enzyme electrode. The biosensor has been characterized by UV-Vis and infrared spcctroscopy. Photom-eteric and potentiometric studies have been conducted on these enzyme immobilized polymer films. Potentiometric response was measured as a function of urea concentration in Tris-HCI buffer (pH 7.0). The electrode showed a linear response range from 6.3 x 10~(-6) to 4.07 x 10~(-4) 2% M urea. The response time is about 25-50 s reaching to a 95% steady-state potential value, and 80 % of the enzyme activity is retained for about 2 months.
机译:已经开发出一种新颖的电位生物传感器,用于定量估计水溶液中的尿素。将酶脲酶(Urs)共价固定在新型导电共聚物聚(N-3-氨基丙基吡咯-Co-吡咯)膜上,该膜通过电化学方法制备在氧化铟锡(ITO)涂层的玻璃板上。酶的共价键和聚合物膜的多孔形态导致高酶负载和酶电极寿命的增加。该生物传感器的特征在于紫外可见光谱和红外光谱。已经对这些酶固定的聚合物膜进行了光度和电位测量研究。测量电位响应作为Tris-HCl缓冲液(pH 7.0)中尿素浓度的函数。电极的线性响应范围为6.3 x 10〜(-6)至4.07 x 10〜(-4)2%M尿素。响应时间约为25-50 s,达到95%的稳态电位值,并且80%的酶活性保留了约2个月。

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