Voltammetric enzyme sensor for urea using mercaptohydroquinone-modified gold electrode as the base transducer

被引:32
作者
Mizutani, F
Yabuki, S
Sato, Y
机构
[1] Natl. Inst. of Biosci. and H., Tsukuba, Ibaraki 305
关键词
voltammetry; enzyme electrode; self-assembly; urease; quinone/hydroquinone system;
D O I
10.1016/S0956-5663(96)00073-5
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
A voltammetric urea-sensing electrode was prepared by combining a lipid-attached urease layer with a 2,5-dihydroxythiophenol-modified gold electrode. A self-assembled monolayer of dihydroxythiophenol was prepared on the gold surface by soaking the electrode into an ethanolic solution containing the modifier. A layer of the lipid-attached enzyme and that of acetyl cellulose overcoat were successively made on the dihydroxythiophenol-modified electrode by applying a dip-coating procedure. The addition of urea in a test solution (10 mM phosphate buffer, pH 7.0) brought about an increase of pH near the urease layer. The pH shift accompanied a negative shift of the anodic peak, which corresponded to the electro-oxidation of dihydroxyphenol moiety to form quinone, on the linear sweep voltammograms for the urease/dihydroxythiophenol electrode. The concentration of urea (0.2-5 mM) could be determined by measuring the electrode current at -0.05 V versus Ag/AgCl from the voltammogram. The electrode was applied to the determination of urea in human urine: the measurement of electrode current at such a low potential provided the urea determination without any electrochemical interference from L-ascorbic acid and uric acid. (C) 1997 Elsevier Science Limited.
引用
收藏
页码:321 / 328
页数:8
相关论文
共 25 条
[1]  
ANZAI J, 1985, CHEM PHARM BULL, V33, P2556
[2]   KINETIC BEHAVIOR OF ENZYMES IMMOBILIZED IN ARTIFICIAL MEMBRANES [J].
BLAEDEL, WJ ;
BOGUSLASKI, RC ;
KISSEL, TR .
ANALYTICAL CHEMISTRY, 1972, 44 (12) :2030-+
[3]   REVERSIBLE REDOX OF 2,5-DIHYDROXYTHIOPHENOL CHEMISORBED ON GOLD AND PLATINUM-ELECTRODES - EVIDENCE FOR SUBSTRATE-MEDIATED ADSORBATE ADSORBATE INTERACTIONS [J].
BRAVO, BG ;
MEBRAHTU, T ;
SORIAGA, MP ;
ZAPIEN, DC ;
HUBBARD, AT ;
STICKNEY, JL .
LANGMUIR, 1987, 3 (04) :595-597
[4]   PH-BASED ENZYME POTENTIOMETRIC SENSORS .1. THEORY [J].
CARAS, SD ;
JANATA, J ;
SAUPE, D ;
SCHMITT, K .
ANALYTICAL CHEMISTRY, 1985, 57 (09) :1917-1920
[5]  
CAUQUIL G, 1947, CR HEBD ACAD SCI, V225, P578, DOI 10.1002/hlca.19470300221
[6]   UREA SENSORS BASED ON PVC MEMBRANE PH ELECTRODE [J].
GLAB, S ;
KONCKI, R ;
KOPCZEWSKA, E ;
WALCERZ, I ;
HULANICKI, A .
TALANTA, 1994, 41 (07) :1201-1205
[7]   POLYVINYLBUTYRAL RESIN MEMBRANE FOR ENZYME IMMOBILIZATION TO AN ISFET MICROBIOSENSOR [J].
GOTOH, M ;
TAMIYA, E ;
KARUBE, I .
JOURNAL OF MOLECULAR CATALYSIS, 1986, 37 (2-3) :133-139
[8]   ENZYME SENSOR SYSTEM FOR POTENTIOMETRIC UREA DETERMINATION IN SERUM AND MILK [J].
HAMANN, H ;
KUHN, M ;
BOTTCHER, N ;
SCHELLER, F .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1986, 209 (01) :69-76
[9]   SENSITIVE DETECTION OF PESTICIDES USING A DIFFERENTIAL ISFET-BASED SYSTEM WITH IMMOBILIZED CHOLINESTERASES [J].
HENDJI, AMN ;
JAFFREZICRENAULT, N ;
MARTELET, C ;
CLECHET, P ;
SHULGA, AA ;
STRIKHA, VI ;
NETCHIPORUK, LI ;
SOLDATKIN, AP ;
WLODARSKI, WB .
ANALYTICA CHIMICA ACTA, 1993, 281 (01) :3-11
[10]   NADH-DEPENDENT COUPLED ENZYME ASSAY FOR UREASE AND OTHER AMMONIA-PRODUCING SYSTEMS [J].
KALTWASS.H ;
SCHLEGEL, HG .
ANALYTICAL BIOCHEMISTRY, 1966, 16 (01) :132-&