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An amperometric urea bisosensor based on covalent immobilization of urease on N2 incorporated diamond nanowire electrode
Journal article   Peer reviewed

An amperometric urea bisosensor based on covalent immobilization of urease on N2 incorporated diamond nanowire electrode

Jayakumar Shalini, Kamatchi Jothiramalingam Sankaran, Chi-Young Lee, Nyan-Hwa Tai and I-Nan Lin
Biosensors and Bioelectronics, Vol.56, pp.64-70
15/06/2014

Abstract

Amperometry Cyclic voltammetry Electrochemical impedance spectrsocopy N2 incorporated diamond nanowire Urea Urs-GLDH/N-DNW
N <sub>2</sub> incorporated diamond nanowire (N-DNW) film electrochemical biosensor has utilized for the quantitative determination of urea in aqueous solution and urine sample. N-DNW electrode is wet-chemically cleaned (oxidation) by boiling in a mixture of H <sub>2</sub> SO <sub>4</sub> and HNO <sub>3</sub> (3:1) at 200°C for 2h to remove graphite. Urease (Urs) and glutamate dehydrogenase (GLDH) are covalently attached to the oxidized N-DNW electrode by activating the COOH group of N-DNW using ethyl(dimethylaminopropyl)carbodiimide as the coupling agent and N-hydroxysuccinimide as activator. Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy data reveal that carboxylic and hydroxyl functionalized nature of N-DNW electrodes Urs-GLDH immobilized N-DNW (Urs-GLDH/N-DNW) has been successfully utilized in urea biosensor which exhibits good performance in sensitivity (6.18μA/mgdL/cm <sup>2</sup> ), stability (~1 month), reproducibility, lower detection limit (3.87mg/dL) and fast response time (>10s). Urs-GLDH/N-DNW also exhibits electrochemical response when tested for different concentration of human urine in buffer solution (from 1:9 to 4:6). In addition, Urs-GLDH/N-DNW bioelectrode retains 80% of its initial enzyme activity for <1 month, when stored at 4-6°C in a refrigerator. © 2013 Elsevier B.V.

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