Preparation and properties of an uricase biosensor based on copolymer of o-aminophenol-aniline

被引:28
作者
Pan, XH [1 ]
Zhou, S [1 ]
Chen, C [1 ]
Kan, JQ [1 ]
机构
[1] Yangzhou Univ, Sch Chem & Chem Engn, Yangzhou 225002, Peoples R China
基金
中国国家自然科学基金;
关键词
uricase biosensor; copolymer; aniline; o-aminophenol; cyclic voltammetry; Fourier transform-infrared spectra; ultraviolet spectra; scanning electron micrograph;
D O I
10.1016/j.snb.2005.03.086
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
An uricase biosensor of poly-o-aminophenol-aniline is firstly reported in this paper. The preparing process of the biosensor is as follows: An uricase electrode is prepared with one-step process using the copolymer of aniline and o-aminophenol, then the electrode is hydrolyzed in 6.0 mol dm(-3) hydrochloric acid solution to remove the uricase that may be affected by monomer during copolymerization and a template with moderate apertures for immobilization uricase was obtained. Finally, active uricase is immobilized into the template based on doping and undoping of the copolymer, and a copolymer-uricase biosensor is obtained. Some factors that affect response current are studied, such as temperature, pH, potential and substrate concentration. The result of experiment indicates that the response current of the copolymer-uricase biosensor prepared with template process only decreases by about 19% for 50 days, but that of polyaniline-uricase biosensor prepared with two-step process decreases by approximately 43% for 40 h. FTIR, UV-vis and SEM are used to characterize the copolymer-uficase biosensor. (c) 2005 Elsevier B.V. All fights reserved.
引用
收藏
页码:329 / 334
页数:6
相关论文
共 34 条
[1]   Determination of uric acid by voltammetry and coulometric titration [J].
Abdullin, IF ;
Bakanina, YN ;
Turova, EN ;
Budnikov, GK .
JOURNAL OF ANALYTICAL CHEMISTRY, 2001, 56 (05) :453-456
[2]  
BARD AI, ELECTROCHEMICAL METH, P239
[3]   STRATEGIES FOR THE DEVELOPMENT OF AMPEROMETRIC ENZYME ELECTRODES [J].
BARTLETT, PN ;
WHITAKER, RG .
BIOSENSORS, 1988, 3 (06) :359-379
[4]   The use of the antimony-antimonous oxide electrode in the determination of the concentration of hydrogen ions and in potentiometric Titrations the Prideaux-Ward universal buffer mixture [J].
Britton, HTS ;
Robinson, RA .
JOURNAL OF THE CHEMICAL SOCIETY, 1931, :458-473
[5]   Conductometric uric acid and urea biosensor prepared from electroconductive polyaniline-poly(n-butyl methacrylate) composites [J].
Castillo-Ortega, MM ;
Rodriguez, DE ;
Encinas, JC ;
Plascencia, M ;
Méndez-Velarde, FA ;
Olayo, R .
SENSORS AND ACTUATORS B-CHEMICAL, 2002, 85 (1-2) :19-25
[6]   CAN IMMOBILIZATION BE EXPLOITED TO MODIFY ENZYME-ACTIVITY [J].
CLARK, DS .
TRENDS IN BIOTECHNOLOGY, 1994, 12 (11) :439-443
[7]   ELECTRODE SYSTEMS FOR CONTINUOUS MONITORING IN CARDIOVASCULAR SURGERY [J].
CLARK, LC ;
LYONS, C .
ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1962, 102 (01) :29-&
[8]   ENZYME ENTRAPMENT IN ELECTRICALLY CONDUCTING POLYMERS - IMMOBILIZATION OF GLUCOSE-OXIDASE IN POLYPYRROLE AND ITS APPLICATION IN AMPEROMETRIC GLUCOSE SENSORS [J].
FOULDS, NC ;
LOWE, CR .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS I, 1986, 82 :1259-1264
[9]   Electrochemically synthesised conducting polymeric materials for applications towards technology in electronics, optoelectronics and energy storage devices [J].
Gurunathan, K ;
Murugan, AV ;
Marimuthu, R ;
Mulik, UP ;
Amalnerkar, DP .
MATERIALS CHEMISTRY AND PHYSICS, 1999, 61 (03) :173-191
[10]   THE STUDY OF PROPERTIES FOR THE POLYANILINE URICASE ELECTRODE [J].
Kan Jinqing ;
Mu Shaolin .
ACTA PHYSICO-CHIMICA SINICA, 1993, 9 (03) :345-350