D-fructose sensing electrode based on electron transfer of D-fructose dehydrogenase at colloidal gold-enzyme modified electrode

被引:33
|
作者
Yabuki, S
Mizutani, F
机构
[1] Natl. Inst. Biosci. Hum.-Technol., Tsukuba, Ibaraki 305
关键词
colloidal gold; fructose dehydrogenase; complex; electron transfer;
D O I
10.1002/elan.1140090107
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A complex of colloidal gold (Au) particles and D-fructose dehydrogenase was prepared. A glassy carbon (GC) electrode was modified with the complex. The anodic current response to D-fructose was measured by using the GC electrode modified with the complex at +0.5 V (vs. Ag/AgCl). Response time was within 15 s. No current response was observed in the absence of enzyme, so that the increased oxidation current was confirmed to be caused by the electron transfer from enzyme to electrode. Linear response range of the electrode was up to 0.5 mM fructose concentration. Fructose concentrations of soft drinks which were determined using the electrode agreed well with the results of the F-kit.
引用
收藏
页码:23 / 25
页数:3
相关论文
共 50 条
  • [21] Fructose biosensor based on D-fructose dehydrogenase immobilised on a ferrocene-embedded cellulose acetate membrane
    Tkác, J
    Vostiar, I
    Sturdík, E
    Gemeiner, P
    Mastihuba, V
    Annus, J
    [J]. ANALYTICA CHIMICA ACTA, 2001, 439 (01) : 39 - 46
  • [22] EFFECT OF SUGAR ALCOHOLS ON MICROASSAY OF D-FRUCTOSE BY D-MANNITOL DEHYDROGENASE
    YAMANAKA, K
    TENMIZU, K
    [J]. JOURNAL OF THE JAPANESE SOCIETY FOR FOOD SCIENCE AND TECHNOLOGY-NIPPON SHOKUHIN KAGAKU KOGAKU KAISHI, 1977, 24 (11): : 582 - 583
  • [23] Construction of a protein-engineered variant of D-fructose dehydrogenase for direct electron transfer-type bioelectrocatalysis
    Hibino, Yuya
    Kawai, Shota
    Kitazumi, Yuki
    Shirai, Osamu
    Kano, Kenji
    [J]. ELECTROCHEMISTRY COMMUNICATIONS, 2017, 77 : 112 - 115
  • [24] Kinetics of association processes of D-fructose dehydrogenase onto liposome surfaces
    Kakinoki, K
    Maeda, Y
    Hasegawa, K
    Kitano, H
    [J]. POLYMER BULLETIN, 1996, 37 (03) : 407 - 414
  • [25] Protein-engineering improvement of direct electron transfer-type bioelectrocatalytic properties of D-fructose dehydrogenase
    Hibino, Yuya
    Kawai, Shota
    Kitazumi, Yuki
    Shirai, Osamu
    Kano, Kenji
    [J]. Electrochemistry, 2019, 87 (01): : 47 - 51
  • [26] Protein-Engineering Improvement of Direct Electron Transfer-Type Bioelectrocatalytic Properties of D-Fructose Dehydrogenase
    Hibino, Yuya
    Kawai, Shota
    Kitazumi, Yuki
    Shirai, Osamu
    Kano, Kenji
    [J]. ELECTROCHEMISTRY, 2019, 87 (01) : 47 - 51
  • [27] Dosimetry Application of Irradiated D-fructose using the Electron Paramagnetic Resonance
    Son, Phil Kook
    Choi, Suk-Won
    Kim, Sung Soo
    Gwag, Jin Seog
    [J]. JOURNAL OF MAGNETICS, 2012, 17 (04) : 271 - 274
  • [28] D-FRUCTOSE DEHYDROGENASE FROM GLUCONOBACTER-INDUSTRIUS, MEMBRANE-BOUND
    AMEYAMA, M
    ADACHI, O
    [J]. METHODS IN ENZYMOLOGY, 1982, 89 : 154 - 159
  • [29] Evaluation of a new automated, enzymatic inulin assay using d-fructose dehydrogenase
    Kimata, Shinsuke
    Mizuguchi, Katsuhiko
    Hattori, Shizuo
    Teshima, Shinichi
    Orita, Yoshimasa
    [J]. CLINICAL AND EXPERIMENTAL NEPHROLOGY, 2009, 13 (04) : 341 - 349
  • [30] Evaluation of a new automated, enzymatic inulin assay using d-fructose dehydrogenase
    Shinsuke Kimata
    Katsuhiko Mizuguchi
    Shizuo Hattori
    Shinichi Teshima
    Yoshimasa Orita
    [J]. Clinical and Experimental Nephrology, 2009, 13 : 341 - 349