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Enzymatic electrochemical biosensor for urea with a polyaniline grafted conducting hydrogel composite modified electrode

机译:尿素线植入式传导水凝胶复合电极的酶促电化学生物传感器

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摘要

Conducting polymer hydrogels (CPH) are a unique class of materials, which have both the advantageous features of hydrogels and organic conductors. Herein, we report a new urea biosensor in which the working electrode is modified by a CPH, specifically a composite made of conducting electro-polymerized aniline in the non-conducting hydrogel of polyacrylamide and polyvinyl alcohol for immobilization of the enzyme urease. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) studies depict the porous structure of the hydrogel, which favours the high density immobilization of enzymes. Fourier transform infrared spectroscopy (FTIR) studies confirmed the grafting of polyaniline within the matrix. Electrochemical impedance spectroscopy (EIS), differential pulse voltammetry (DPV) and cyclic voltammetry (CV) predict high enzyme loading in the hydrogel. Bode plot analysis with the [FeCN6](3-/4-) redox couple shows the partial capacitive behaviour of the bioelectrode in the frequency range of 10(2) to 10(3) Hz. Factors, such as scan rate and pH of the electrolyte, were optimized to give the best results. DPV could detect 1.5-1000 mu M urea with the lowest detection limit (LOD) of 60 nM and sensitivity of 878 mu A mM(-1) cm(-2). The relatively low Michaelis-Menten constant (K-m) value of 113 mM indicates the high affinity of the enzyme for urea. EIS depicts an increase in charge transfer resistance (RCT) with an increase in urea concentration (LOD = 14 mu M). The proposed sensor exhibits a very good performance with respect to detection limit, sensitivity, K-m value, preparation method, cost, sample preparation, stability, selectivity and reproducibility. This sensor was successfully applied for the detection of urea in milk, puffed rice, soil and human blood. Statistical analysis of the results shows good agreement with commercial spectrophotometric analysis.
机译:导电聚合物水凝胶(CPH)是一种独特的材料,具有水凝胶和有机导体的有利特征。在此,我们报告了一种新的尿素生物传感器,其中通过CPH改性工作电极,特别是通过在聚丙烯酰胺和聚乙烯醇的非导电水凝胶中传导电聚合苯胺制成的复合物,以固定酶脲酶。扫描电子显微镜(SEM)和原子力显微镜(AFM)研究描绘了水凝胶的多孔结构,其利用酶的高密度固定。傅里叶变换红外光谱(FTIR)研究证实了基质内聚苯胺的移植。电化学阻抗谱(EIS),差分脉冲伏安法(DPV)和循环伏安法(CV)预测水凝胶中的高酶负载。与[FECN6](3- / 4-)氧化还原耦合的BODE绘图分析显示了10(2)至10(3)Hz的频率范围内的生物电极的部分电容性能。优化了电解质的扫描速率和pH值,例如扫描速率和pH值,以提供最佳效果。 DPV可以检测为1.5-1000 mu m尿素,具有60nm的最低检测限,灵敏度为878μmmm(-1)cm(-2)。相对较低的迈克莱斯 - 霉菌常数(K-M)值为113mm表示酶对尿素的高亲和力。 EIS描绘了尿素浓度增加(LOD =14μm)的电荷转移阻力(Rct)的增加。所提出的传感器对检测极限,灵敏度,K-M值,制备方法,成本,样品制备,稳定性,选择性和再现性具有非常好的性能。该传感器成功地应用于牛奶,膨化米,土壤和人血尿素的检测。结果统计分析表现出与商业分光光度分析的良好一致性。

著录项

  • 来源
    《RSC Advances》 |2016年第95期|共14页
  • 作者

    Das Joyati; Sarkar Priyabrata;

  • 作者单位

    Univ Calcutta Dept Polymer Sci &

    Technol Biosensor Lab 92 APC Rd Kolkata 700009 W Bengal India;

    Univ Calcutta Dept Polymer Sci &

    Technol Biosensor Lab 92 APC Rd Kolkata 700009 W Bengal India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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