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壳聚糖-离子液体-葡萄糖氧化酶生物复合材料在纳米金电极上的电沉积用于安培型葡萄糖传感。

Electrodeposition of chitosan-ionic liquid-glucose oxidase biocomposite onto nano-gold electrode for amperometric glucose sensing.

作者信息

Zeng Xiandong, Li Xuefang, Xing Liang, Liu Xiaoying, Luo Shenglian, Wei Wanzhi, Kong Bo, Li Yonghong

机构信息

State Key Laboratory of Chemo/Biosensing and Chemometrics, Hunan University, Changsha 410082, PR China.

出版信息

Biosens Bioelectron. 2009 May 15;24(9):2898-903. doi: 10.1016/j.bios.2009.02.027. Epub 2009 Mar 6.

Abstract

A sensitive glucose biosensor was fabricated by electrodepositing chitosan-ionic liquid-glucose oxidase biocomposite onto nano-gold electrode. First, nano-gold electrode was constructed by electrochemically depositing gold nanoparticles onto a flat gold electrode surface. Then the nano-gold electrode was immersed in the bath containing p-benzoquinone (BQ), chitosan (CS), glucose oxidase (GOD) and ionic liquid (IL) for electrodeposition of enzymatic electrode. The proton consumption during electroreduction of BQ increased the local solution pH near the electrode surface and led to the deposition of CS hydrogel on the electrode surface. Co-deposition of GOD and IL with the CS hydrogel was achieved. The proposed biosensor exhibited a fast amperometric response (<5 s) to glucose. Under the optimal conditions, the proposed biosensor exhibited a high current sensitivity (14.33 microA mM(-1) cm(-2)), which was 2.8 times of the biosensor prepared by electrodepositing CS-IL-GOD biocomposite on flat gold electrode. The detection limit for glucose was 1.5 microM, which was 20-fold lower compared to the biosensor prepared on flat gold electrode. The linear range for glucose detection was wide from 3.0 microM to 9.0 mM. Moreover, the proposed biosensor exhibited high reproducibility, long-time storage stability and satisfactory anti-interference ability. The applicability of the proposed biosensor to serum samples analysis was also evaluated.

摘要

通过将壳聚糖 - 离子液体 - 葡萄糖氧化酶生物复合材料电沉积到纳米金电极上制备了一种灵敏的葡萄糖生物传感器。首先,通过将金纳米颗粒电化学沉积到平面金电极表面构建纳米金电极。然后将纳米金电极浸入含有对苯醌(BQ)、壳聚糖(CS)、葡萄糖氧化酶(GOD)和离子液体(IL)的浴中进行酶电极的电沉积。BQ电还原过程中的质子消耗增加了电极表面附近的局部溶液pH值,导致CS水凝胶沉积在电极表面。实现了GOD和IL与CS水凝胶的共沉积。所提出的生物传感器对葡萄糖表现出快速的安培响应(<5秒)。在最佳条件下,所提出的生物传感器表现出高电流灵敏度(14.33微安毫摩尔⁻¹厘米⁻²),这是通过将CS - IL - GOD生物复合材料电沉积在平面金电极上制备的生物传感器的2.8倍。葡萄糖的检测限为1.5微摩尔,比在平面金电极上制备的生物传感器低20倍。葡萄糖检测的线性范围从3.0微摩尔到9.0毫摩尔很宽。此外,所提出的生物传感器表现出高重现性、长期储存稳定性和令人满意的抗干扰能力。还评估了所提出的生物传感器在血清样品分析中的适用性。

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