An amperometric uric acid biosensor based on chitosan-carbon nanotubes electrospun nanofiber on silver nanoparticles

被引:0
作者
Apon Numnuam
Panote Thavarungkul
Proespichaya Kanatharana
机构
[1] Prince of Songkla University,Trace Analysis and Biosensor Research Center
[2] Prince of Songkla University,Center of Excellence for Innovation in Chemistry, Faculty of Science
[3] Prince of Songkla University,Department of Chemistry, Faculty of Science
[4] Prince of Songkla University,Department of Physics, Faculty of Science
来源
Analytical and Bioanalytical Chemistry | 2014年 / 406卷
关键词
Uric acid biosensor; Chitosan-carbon nanotubes composite; Nanofiber; Electrospinning;
D O I
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中图分类号
学科分类号
摘要
A novel amperometric uric acid biosensor was fabricated by immobilizing uricase on an electrospun nanocomposite of chitosan-carbon nanotubes nanofiber (Chi–CNTsNF) covering an electrodeposited layer of silver nanoparticles (AgNPs) on a gold electrode (uricase/Chi–CNTsNF/AgNPs/Au). The uric acid response was determined at an optimum applied potential of −0.35 V vs Ag/AgCl in a flow-injection system based on the change of the reduction current for dissolved oxygen during oxidation of uric acid by the immobilized uricase. The response was directly proportional to the uric acid concentration. Under the optimum conditions, the fabricated uric acid biosensor had a very wide linear range, 1.0–400 μmol L−1, with a very low limit of detection of 1.0 μmol L−1 (s/n = 3). The operational stability of the uricase/Chi–CNTsNF/AgNPs/Au biosensor (up to 205 injections) was excellent and the storage life was more than six weeks. A low Michaelis–Menten constant of 0.21 mmol L−1 indicated that the immobilized uricase had high affinity for uric acid. The presence of potential common interfering substances, for example ascorbic acid, glucose, and lactic acid, had negligible effects on the performance of the biosensor. When used for analysis of uric acid in serum samples, the results agreed well with those obtained by use of the standard enzymatic colorimetric method (P > 0.05).
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页码:3763 / 3772
页数:9
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