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Design of a multi-enzyme reaction on an electrode surface for an <Emphasis Type="SmallCaps">l</Emphasis>-glutamate biofuel anode
Authors:Hiroaki Sakamoto  Tomohiro Komatsu  Koji Yamasaki  Takenori Satomura  Shin-ichiro Suye
Institution:1.Tenure-Track Program for Innovation Research,University of Fukui,Fukui,Japan;2.Department of Frontier Fiber Technology and Science, Graduate School of Engineering,University of Fukui,Fukui,Japan;3.Department of Applied Chemistry and Biotechnology, Graduate School of Engineering,University of Fukui,Fukui,Japan
Abstract:

Objectives

To design and construct a novel bio-anode electrode based on the oxidation of glutamic acid to produce 2-oxoglutarate, generating two electrons from NADH.

Results

Efficient enzyme reaction and electron transfer were observed owing to immobilization of the two enzymes using a mixed self-assembled monolayer. The ratio of the immobilized enzymes was an important factor affecting the efficiency of the system; thus, we quantified the amounts of immobilized enzyme using a quartz crystal microbalance to further evaluate the electrochemical reaction. The electrochemical reaction proceeded efficiently when approximately equimolar amounts of the enzyme were on the electrode. The largest oxidation peak current increase (171 nA) was observed under these conditions.

Conclusion

Efficient multi-enzyme reaction on the electrode surface has been achieved which is applicable for biofuel cell application.
Keywords:
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