Subfemtomolar determination of alkaline phosphatase at a disposable screen-printed electrode modified with a perfluorosulfonated ionomer film

被引:65
作者
Bagel, O [1 ]
Limoges, B [1 ]
Schollhorn, B [1 ]
Degrand, C [1 ]
机构
[1] UNIV BLAISE PASCAL CLERMONT FERRAND,EQUIPE ELECTROSYNTH & ELECTROANAL BIOORGAN,CNRS,UMR 6504,F-63177 AUBIERE,FRANCE
关键词
D O I
10.1021/ac9704218
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A carbon-based ink composed of graphite particles and polystyrene was used in association with a manual screen-printer to prepare electrodes on a flexible polyester film. The screen-printing step was followed by a drying step which was achieved within 1 h at room temperature. The screen-printed electrode (SPE) was coated by a polyanionic Nafion film in which electroactive cationic species could be accumulated A detection limit of 10(-9) M was thus obtained by cyclic voltammetric (CV) determination of [[(4-hydroxyphenyl)amino]carboxyl]cobaltocenium (P+) after accumulation for 60 min. Since this cationic phenol derivative P+ could be generated from the corresponding anionic ester phosphate (S-) by alkaline phosphatase (AP) hydrolysis, the new S- substrate was synthesized and the sensitive indirect CV determination of AP was performed at a Nafion-coated SPE, The S- substrate did not interfere on the electrochemical response of P+ owing to the permselectivity of Nafion, An AP detection of 4 x 10(-16) M was thus achieved in Tris buffer (pH 9) after hydrolysis of S- (10(-4) M) to P+ (Michaelis constant K-m = 48 mu M) and simultaneous accumulation of P+ within Nafion for 1 h. The Nafion-SPE was stack successfully to the bottom of a microwell, making it possible to work with solution volumes ranging from 50 to 250 mu L, web adapted to enzyme immunoassays.
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页码:4688 / 4694
页数:7
相关论文
共 45 条
[21]   ENZYME AMPLIFICATION FOR IMMUNOASSAYS - DETECTION LIMIT OF 100TH OF AN ATTOMOLE [J].
JOHANSSON, A ;
ELLIS, DH ;
BATES, DL ;
PLUMB, AM ;
STANLEY, CJ .
JOURNAL OF IMMUNOLOGICAL METHODS, 1986, 87 (01) :7-11
[22]   Chemiluminescence assay of alkaline phosphatase using cortisol-21-phosphate as substrate and its application to enzyme immunoassays [J].
Kokado, A ;
Tsuji, A ;
Maeda, M .
ANALYTICA CHIMICA ACTA, 1997, 337 (03) :335-340
[23]   ULTRASENSITIVE IMMUNOASSAY TECHNIQUES [J].
KRICKA, LJ .
CLINICAL BIOCHEMISTRY, 1993, 26 (05) :325-331
[24]  
KRICKA LJ, 1994, CLIN CHEM, V40, P347
[25]  
LASALLE AL, 1994, J ELECTROANAL CHEM, V379, P281
[26]  
LASALLE AL, 1995, ANAL CHEM, V34, P1245
[27]   REACTION OF THE METHIODIDE OF N,N-DIMETHYLAMINOMETHYLFERROCENE WITH POTASSIUM CYANIDE TO FORM FERROCYLACETONITRILE [J].
LEDNICER, D ;
LINDSAY, JK ;
HAUSER, CR .
JOURNAL OF ORGANIC CHEMISTRY, 1958, 23 (05) :653-655
[28]   HOMOGENEOUS ELECTROCHEMICAL IMMUNOASSAY USING A PERFLUOROSULFONATED IONOMER-MODIFIED ELECTRODE AS DETECTOR FOR A CATIONIC-LABELED HAPTEN [J].
LIMOGES, B ;
DEGRAND, C ;
BROSSIER, P ;
BLANKESPOOR, RL .
ANALYTICAL CHEMISTRY, 1993, 65 (08) :1054-1060
[29]   Ferrocenylethyl phosphate: An improved substrate for the detection of alkaline phosphatase by cathodic stripping ion-exchange voltammetry. Application to the electrochemical enzyme affinity assay of avidin [J].
Limoges, B ;
Degrand, C .
ANALYTICAL CHEMISTRY, 1996, 68 (23) :4141-4148
[30]   The determination of enzyme dissociation constants [J].
Lineweaver, H ;
Burk, D .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1934, 56 :658-666