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Updated: Jul 17, 2026

Bridging the Bio-Electronic Interface with Biofabrication
Published on: June 6, 2012
Various applications of immobilized glucose oxidase and polyphenol oxidase in a conducting polymer matrix
M Cil1, A E Böyükbayram, S Kiralp
1Department of Chemistry, Middle East Technical University, 06531 Ankara, Turkey.
Abstract:
In this study, glucose oxidase and polyphenol oxidase were immobilized in conducting polymer matrices; polypyrrole and poly(N-(4-(3-thienyl methylene)-oxycarbonyl phenyl) maleimide-co-pyrrole) via electrochemical method. Fourier transform infrared and scanning electron microscope were employed to characterize the copolymer of (N-(4-(3-thienyl methylene)-oxycarbonyl phenyl) maleimide) with pyrrole. Kinetic parameters, maximum reaction rate and Michealis-Menten constant, were determined. Effects of temperature and pH were examined for immobilized enzymes. Also, storage and operational stabilities of enzyme electrodes were investigated. Glucose and polyphenol oxidase enzyme electrodes were used for determination of the glucose amount in orange juices and human serum and phenolic amount in red wines, respectively.

