Department of Biochemistry, Maharshi Dayanand (M. D.) University, Rohtak, Haryana, India.
Anal Biochem. 2012 Nov 1;430(1):16-23. doi: 10.1016/j.ab.2012.07.025. Epub 2012 Aug 1.
A method is described for construction of a highly sensitive amperometric biosensor for measurement of total phenolic compounds in wine by immobilizing laccase covalently onto nanocomposite of silver nanoparticles (AgNPs)/zinc oxide nanoparticles (ZnONPs) electrochemically deposited onto gold (Au) electrode. Scanning electron microscopy, X-ray diffraction, and electrochemical impedance spectroscopy were applied for characterization of the surface morphology of the modified electrode, and cyclic voltammetry was used to investigate the electrochemical properties of the proposed electrode toward the oxidation of guaiacol. The linearity between the oxidation current and the guaiacol concentration was obtained in a range of 0.1 to 500μM with a detection limit of 0.05μM (signal-to-noise ratio (S/N)=3) and sensitivity of 0.71μAμM(-1)cm(-2). The electrode showed increased oxidation and reduced reduction current with the deposition of AgNPs/ZnONPs on it. R(CT) values of ZnONPs/Au, AgNPs/ZnONPs/Au, and laccase/AgNPs/ZnONPs/Au electrode were 220, 175, and 380Ω, respectively. The biosensor showed an optimal response within 8s at pH 6.0 (0.1M acetate buffer) and 35°C when operated at 0.22V against Ag/AgCl. Analytical recovery of added guaiacol was 98%. The method showed a good correlation (r=0.99) with the standard spectrophotometric method, with the regression equation being y=1.0053x-3.5541. The biosensor lost 25% of its initial activity after 200 uses over 5months.
描述了一种通过将漆酶共价固定在电化学沉积在金(Au)电极上的银纳米粒子(AgNPs)/氧化锌纳米粒子(ZnONPs)纳米复合材料上来构建用于测量葡萄酒中总酚化合物的高灵敏度安培生物传感器的方法。扫描电子显微镜、X 射线衍射和电化学阻抗谱用于修饰电极的表面形态表征,循环伏安法用于研究所提出的电极对愈创木酚氧化的电化学性质。在 0.1 至 500μM 的范围内,氧化电流与愈创木酚浓度之间获得了线性关系,检测限为 0.05μM(信噪比(S/N)=3),灵敏度为 0.71μAμM(-1)cm(-2)。随着 AgNPs/ZnONPs 在其上的沉积,电极显示出增加的氧化和减少的还原电流。ZnONPs/Au、AgNPs/ZnONPs/Au 和 laccase/AgNPs/ZnONPs/Au 电极的 R(CT)值分别为 220、175 和 380Ω。在 pH 6.0(0.1M 醋酸盐缓冲液)和 35°C 下,当在 0.22V 下操作时,生物传感器在 8s 内显示出最佳响应。添加愈创木酚的分析回收率为 98%。该方法与标准分光光度法具有良好的相关性(r=0.99),回归方程为 y=1.0053x-3.5541。生物传感器在 5 个月内经过 200 多次使用后,初始活性损失了 25%。