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Featured researches published by Ryuhei Matsumoto.


Biosensors and Bioelectronics | 2010

A mediator-adapted diaphorase variant for a glucose dehydrogenase–diaphorase biocatalytic system

Taiki Sugiyama; Yoshio Goto; Ryuhei Matsumoto; Hideki Sakai; Yuichi Tokita; Tsuyonobu Hatazawa

Biofuel cell is an energy conversion device of the next generation which enables use of safer and higher energy-density fuels such as glucose. We have been developing a biofuel cell that comprises the three enzymes: glucose dehydrogenase (GDH) and diaphorase (DI) on anode, and bilirubin oxidase (BOD) on cathode. In this work, we have developed a DI variant suitable for our biofuel cell by using directed molecular evolution method. A gene library of DI variants was constructed by using error-prone PCR and the variant proteins were expressed in an Escherichia coli system. 8000 isolated variants have been screened with activity against 2-amino-1,4-naphthoquinone (ANQ), and 10 of them have been qualified which were then purified and examined their activities against ANQ. A highest activity was observed in G122D variant of which glycine residue at position 122 is substituted to aspartate. Enzymatic kinetic analyses show that KM for ANQ in G122D is 1/3 of that in wild type (G122D: 356 μM, wild type: 1.08 mM), whereas kcat and KM for NADH is almost the same, clearly showing that G122D mutation has given DI an improvement in enzymatic activity at lower ANQ concentration. The effect of this mutation was considered electrochemically in solution and in immobilized layer. The results show that G122D variant DI gave a higher current at lower ANQ concentration in solution, as well as in immobilized condition where GDH is co-immobilized within.


Physical Chemistry Chemical Physics | 2013

Bioelectrocatalytic oxidation of glucose with antibiotic channel-containing liposomes

Shuji Fujita; Ryuhei Matsumoto; Kenichi Ogawa; Hideki Sakai; Akihiro Maesaka; Yuichi Tokita; Seiya Tsujimura; Osamu Shirai; Kenji Kano

We developed an efficient bioelectrocatalytic system for glucose oxidation by introducing hydrophilic glucose-permeable antibiotic channels into liposomes.


Physical Chemistry Chemical Physics | 2010

A liposome-based energy conversion system for accelerating the multi-enzyme reactions

Ryuhei Matsumoto; Masaya Kakuta; Taiki Sugiyama; Yoshio Goto; Hideki Sakai; Yuichi Tokita; Tsuyonobu Hatazawa; Seiya Tsujimura; Osamu Shirai; Kenji Kano


Meeting Abstracts | 2008

SONY's Biofuel Cell

Yuichi Tokita; Takaaki Nakagawa; Hideki Sakai; Taiki Sugiyama; Ryuhei Matsumoto; Tsuyonobu Hatazawa


Meeting Abstracts | 2009

A High-Power Glucose/Oxygen Biofuel Cell Operating under Quiescent Conditions

Hideki Sakai; Takaaki Nakagawa; Hiroki Mita; Ryuhei Matsumoto; Taiki Sugiyama; Hideyuki Kumita; Yuichi Tokita; Tsuyonobu Hatazawa


Archive | 2012

MICROBIAL FUEL CELL, FUEL AND MICROBES FOR SAID FUEL CELL, BIOREACTOR AND BIOSENSOR

Hideki Sakai; Ryuhei Matsumoto; Shuji Fujita; Yoshio Goto; Yuichi Tokita


Archive | 2009

FUEL CELL, METHOD FOR MANUFACTURING FUEL CELL, ELECTRONIC APPARATUS, ENZYME IMMOBILIZATION ELECTRODE, BIOSENSOR, BIOREACTOR, ENERGY CONVERSION ELEMENT, AND ENZYME REACTION-UTILIZING APPARATUS

Ryuhei Matsumoto; Masaya Kakuta; Hideki Sakai; Yuichi Tokita


Archive | 2009

FUEL CELL, ELECTRONIC DEVICE, AND BUFFER SOLUTION FOR FUEL CELL

Hideyuki Kumita; Hiroki Mita; Yoshio Goto; Takaaki Nakagawa; Hideki Sakai; Ryuhei Matsumoto; Yuichi Tokita


Archive | 2011

Flexible fuel cell

Shuji Fujita; Takaaki Nakagawa; Ryuhei Matsumoto; Hideyuki Kumita; Daisuke Yamaguchi


Archive | 2010

Fuel cell, process for manufacture of fuel cell, electronic device, enzyme-immobilized electrode, biosensor, energy conversion element, cell, cell organelle, and bacterium

Ryuhei Matsumoto; Hideki Sakai; Yuichi Tokita; Shuji Fujita

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