Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, UbonRatchathani University, UbonRatchathani 34190, Thailand; Department of Chemistry, Faculty of Science, UbonRatchathani University, UbonRatchathani 34190, Thailand.
Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, UbonRatchathani University, UbonRatchathani 34190, Thailand.
Talanta. 2015 Sep 1;142:35-42. doi: 10.1016/j.talanta.2015.01.046. Epub 2015 Mar 27.
An amperometric biosensor based on chemisorption of glucose oxidase (GOx) on Au seeds decorated on magnetic core Fe3O4 nanoparticles (Fe3O4@Au) and their immobilization on screen-printed carbon electrode bulk-modified with manganese oxide (SPCE{MnO2}) was designed for the determination of glucose. The Fe3O4@Au/GOx modified SPCE{MnO2} was used in a flow-injection analysis (FIA) arrangement. The experimental conditions were investigated in amperometric mode with the following optimized parameters: flow rate 1.7 mL min(-1), applied potential +0.38 V, phosphate buffer solution (PBS; 0.1 mol L(-1), pH 7.0) as carrier and 3.89 unit mm(-2) enzyme glucose oxidase loading on the active surface of the SPCE. The designed biosensor in FIA arrangement yielded a linear dynamic range for glucose from 0.2 to 9.0 mmol L(-1) with a sensitivity of 2.52 µA mM(-1) cm(-2), a detection limit of 0.1 mmol L(-1) and a quantification limit of 0.3 mmol L(-1). Moreover, a good repeatability of 2.8% (number of measurements n=10) and a sufficient reproducibility of 4.0% (number of sensors n=3) were achieved. It was found that the studied system Fe3O4@Au facilitated not only a simpler enzyme immobilization but also provided wider linear range. The practical application of the proposed biosensor for FIA quantification of glucose was tested in glucose sirup samples, honeys and energy drinks with the results in good accordance with those obtained by an optical glucose meter and with the contents declared by the producers.
基于金种子修饰的磁性核四氧化三铁纳米粒子(Fe3O4@Au)上化学吸附的葡萄糖氧化酶(GOx)和其在MnO2 修饰的丝网印刷碳电极(SPCE{MnO2})上的固定,设计了一种用于测定葡萄糖的安培生物传感器。Fe3O4@Au/GOx 修饰的 SPCE{MnO2}用于流动注射分析(FIA)装置。在安培模式下,通过以下优化参数进行实验条件研究:流速 1.7mL min(-1),施加电位+0.38V,磷酸盐缓冲溶液(PBS;0.1mol L(-1),pH7.0)作为载体和 3.89 单位 mm(-2)酶葡萄糖氧化酶在 SPCE 的活性表面上的负载。在 FIA 装置中设计的生物传感器对葡萄糖的线性动态范围为 0.2 至 9.0mmol L(-1),灵敏度为 2.52µA mM(-1) cm(-2),检测限为 0.1mmol L(-1),定量限为 0.3mmol L(-1)。此外,还实现了良好的重复性(2.8%(测量次数 n=10))和足够的重现性(4.0%(传感器数量 n=3))。研究发现,所研究的 Fe3O4@Au 系统不仅便于更简单的酶固定化,而且提供了更宽的线性范围。该生物传感器在 FIA 定量测定葡萄糖中的实际应用在葡萄糖糖浆样品、蜂蜜和能量饮料中进行了测试,结果与光学葡萄糖计获得的结果和生产商宣称的含量非常一致。