Çanakkale Onsekiz Mart University, Science and Art Faculty, Department of Chemistry, 17020 Çanakkale, Turkey.
Çanakkale Onsekiz Mart University, Science and Art Faculty, Department of Chemistry, 17020 Çanakkale, Turkey.
Bioelectrochemistry. 2016 Dec;112:138-44. doi: 10.1016/j.bioelechem.2016.02.008. Epub 2016 Feb 24.
In this work, a core-shell quantum dot (QD, ZnS-CdS) was electrodeposited onto multiwalled carbon nanotube modified glassy carbon electrode (ZnS-CdS/MWCNT/GCE) and following glucose dehydrogenase (GDH) was immobilized onto QD modified electrode. The proposed electrode (GDH/ZnS-CdS/MWCNT/GCE) was effectively used for the photoelectrochemical biosensing of glucose in flow injection analysis (FIA) system using a home-made flow cell. Results from cyclic voltammetric and FI amperometric measurements have revealed that GDH/ZnS-CdS/MWCNT/GCE is capable of signaling photoelectrocatalytic activity toward NADH when the surface of enzyme modified electrode was irradiated with a light source (250W Halogen lamp). Thus, photoelectrochemical biosensing of glucose was monitored by recording current-time curve of enzymatically produced NADH at optimized conditions. The biosensor response was found linear over the range 0.010-2.0mM glucose with detection limits of 6.0 and 4.0μM for amperometric and photoamperometric methods, respectively. The relative standard deviations (n=5) for 0.5mM glucose were 5.8% and 3.8% for photoamperometric and amperometric results, respectively. The photoelectrochemical biosensor was successfully applied to the real samples. The results with this biosensor showed good selectivity, repeatability and sensitivity for monitoring glucose in amperometric and photoamperometric FIA studies.
在这项工作中,我们将核壳量子点(QD,ZnS-CdS)电沉积到多壁碳纳米管修饰的玻碳电极(ZnS-CdS/MWCNT/GCE)上,然后将葡萄糖脱氢酶(GDH)固定在 QD 修饰的电极上。所提出的电极(GDH/ZnS-CdS/MWCNT/GCE)在使用自制流动池的流动注射分析(FIA)系统中,可有效用于葡萄糖的光电化学生物传感。循环伏安法和 FI 安培法测量结果表明,当酶修饰电极的表面受到光源(250W 卤素灯)照射时,GDH/ZnS-CdS/MWCNT/GCE 能够对 NADH 发出光电催化活性信号。因此,在优化条件下,通过记录酶促产生的 NADH 的电流-时间曲线来监测葡萄糖的光电化学生物传感。在 0.010-2.0mM 葡萄糖范围内,生物传感器的响应呈线性关系,安培法和光安培法的检测限分别为 6.0 和 4.0μM。对于 0.5mM 葡萄糖,光安培法和安培法的相对标准偏差(n=5)分别为 5.8%和 3.8%。光电化学生物传感器已成功应用于实际样品。该生物传感器在安培法和光安培法 FIA 研究中监测葡萄糖时表现出良好的选择性、重复性和灵敏度。