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首页> 外文期刊>RSC Advances >Photoelectrochemical glucose biosensor based on a dehydrogenase enzyme and NAD+/NADH redox couple using a quantum dot modified pencil graphite electrode
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Photoelectrochemical glucose biosensor based on a dehydrogenase enzyme and NAD+/NADH redox couple using a quantum dot modified pencil graphite electrode

机译:基于脱氢酶酶和NAD + / NADH氧化还原的光电化学葡萄糖生物传感器使用量子点改性铅笔石墨电极

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摘要

A simple, disposable and economical modified electrode was prepared by electrodeposition of hybrid quantum dots (ZnS–CdS) onto a pencil graphite electrode (PGE) surface and subsequent immobilization of glucose dehydrogenase (GDH) onto the quantum dot modified electrode (GDH/ZnS–CdS/PGE). The prepared electrode was effectively used for the photoelectrochemical determination of glucose in a flow injection analysis (FIA) system using a new home-made flow cell which was designed for PGEs for the first time. Results from the cyclic voltammetric and FI amperometric measurements revealed that the GDH/ZnS–CdS/PGE is capable of signaling photoelectrocatalytic activity involving NADH when the surface of the GDH/ZnSr–CdS/PGE is irradiated with a light source with a fiber optic cable (250 W halogen lamp). The currents of NADH produced by the enzymatic reaction in the photoamperometric FIA system under optimized conditions (carrier stream: 0.1 M phosphate buffer solution (pH 7.0) containing 1.0 M KCl and 10.0 mM NAD ~(+) , applied potential: +0.8 V vs. Ag/AgCl/KCl _((sat.)) ; flow rate: 0.6 mL min ~(?1) , sample loop: 100 μL; transmission tubing length: 10 cm) were linearly correlated with the glucose concentration. Calibration curves were obtained for glucose concentrations within a range from 0.2 to 8.0 mM. The detection limits were found to be 0.09 and 0.05 mM for the amperometric and photoamperometric methods, respectively. The relative standard deviations ( n = 7) for 0.5 mM glucose were 4.5% and 3.5% from the photoamperometric and amperometric results respectively. The photoelectrochemical biosensor was applied to real samples successfully. The results with this biosensor showed good selectivity, repeatability and sensitivity for monitoring glucose in amperometric and photoamperometric FIA studies.
机译:通过将杂种量子点(ZnS-Cds)电沉积到铅笔石墨电极(PGE)表面上并随后将葡萄糖脱氢酶(GDH)固定到量子点修改电极(GDH / Zns-)上制备了简单的一次性和经济的改性电极。 CDS / PGE)。使用新的自制流动电池有效地用于使用新的自制流动单元,有效地用于流动注射分析(FIA)系统中葡萄糖的光电化学测定。来自循环伏安和Fi的测量结果表明,当通过用光纤电缆用光源照射GDH / ZnSR-CDS / PGE的表面时,GDH / ZnS-CDS / PGE能够信令涉及NADH的光电催化活性(250 W卤素灯)。通过优化条件(载流子流:0.1M磷酸盐缓冲溶液(pH7.0)和10.0mM NAD〜(+),施加电位:+0.8V与10.0mm NAD〜(+),施用液体反应产生的NADH产生的酶促反应。AG / AGCL / KCl _((坐落));流速:0.6ml min〜(α1),样品环:100μl;传输管长度:10cm)与葡萄糖浓度线性相关。获得葡萄糖浓度在0.2至8.0mm的范围内的校准曲线。分别发现检测限为约0.09〜0.05mm,适用于电流和光秃秃的方法。对于0.5mm葡萄糖的相对标准偏差(n = 7)分别是光照测定和电流率的4.5%和3.5%。将光电化学生物传感器成功应用于真实样品。该生物传感器的结果显示出良好的选择性,可重复性和灵敏度,用于监测安培和光滑的FIA研究中的葡萄糖。

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