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酶标记的Pt@BSA纳米复合材料作为用于灵敏测定葡萄糖的便捷电化学生物传感界面。

Enzyme-labeled Pt@BSA nanocomposite as a facile electrochemical biosensing interface for sensitive glucose determination.

作者信息

Hu Chenyi, Yang Da-Peng, Zhu Fengjuan, Jiang Fengjing, Shen Shuiyun, Zhang Junliang

机构信息

Institute of Fuel Cell, Ministry of Education Key Laboratory of Power Machinery and Engineering, Shanghai Jiao Tong University , Shanghai 200240, China.

出版信息

ACS Appl Mater Interfaces. 2014 Mar 26;6(6):4170-8. doi: 10.1021/am405841k. Epub 2014 Mar 10.

Abstract

Electrocatalytic reactions of glucose oxidation based on enzyme-labeled electrochemical biosensors demand a high enzymatic activity and fast electron transfer property to produce the amplified signal response. Through a "green" synthesis method, Pt@BSA nanocomposite was prepared as a biosensing interface for the first time. Herein we presented a convenient and effective glucose sensing matrix based on Pt@BSA nanocomposite along with the covalent adsorption of glucose oxidase (GOD). The electrocatalytic activity toward oxygen reduction was significantly enhanced due to the excellent bioactivity of anchored GOD and superior catalytic performance of interior platinum nanoparticles, which was gradually restrained with the addition of glucose. A sensitive glucose biosensor was then successfully developed upon the restrained oxygen reduction peak current. Differential pulse voltammetry (DPV) was employed to investigate the determination performance of the enzyme biosensor, resulting in a linear response range from 0.05 to 12.05 mM with an optimal detection limit of 0.015 mM. The as-proposed sensing technique revealed high selectivity against endogenous interfering species, satisfactory storage stability, acceptable durability, and favorable fabrication reproducibility with the RSD of 3.8%. During the practical application in human blood serum samples, this glucose biosensor obtained a good detection accuracy of analytical recoveries within 97.5 to 104.0%, providing an alternative scheme for glucose level assay in clinical application.

摘要

基于酶标记电化学生物传感器的葡萄糖氧化电催化反应需要高酶活性和快速电子转移特性以产生放大的信号响应。通过“绿色”合成方法,首次制备了Pt@BSA纳米复合材料作为生物传感界面。在此,我们提出了一种基于Pt@BSA纳米复合材料以及葡萄糖氧化酶(GOD)共价吸附的便捷有效的葡萄糖传感基质。由于固定化GOD的优异生物活性和内部铂纳米颗粒的卓越催化性能,对氧还原的电催化活性显著增强,而随着葡萄糖的加入,这种活性逐渐受到抑制。然后基于受抑制的氧还原峰值电流成功开发了一种灵敏的葡萄糖生物传感器。采用差分脉冲伏安法(DPV)研究酶生物传感器的测定性能,线性响应范围为0.05至12.05 mM,最佳检测限为0.015 mM。所提出的传感技术对内源性干扰物质具有高选择性、令人满意的储存稳定性、可接受的耐久性以及良好的制备重现性,相对标准偏差为3.8%。在人血清样本的实际应用中,这种葡萄糖生物传感器的分析回收率检测准确度良好,在97.5%至104.0%之间,为临床应用中的葡萄糖水平测定提供了一种替代方案。

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