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Junko Okuda-Shimazaki

Showing results (1-10 of 18) with videos related to

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Bioelectrochemistry (Amsterdam, Netherlands)|December 16, 2019
FAD dependent glucose dehydrogenases - Discovery and engineering of representative glucose sensing enzymesJunko Okuda-Shimazaki, Hiromi Yoshida, Koji Sode
Annual Review of Biomedical Engineering|February 29, 2024
Direct Electron Transfer-Type Oxidoreductases for Biomedical ApplicationsKeisei Sowa, Junko Okuda-Shimazaki, Eole Fukawa, et al.
Biotechnology Letters|June 3, 2008
Biofuel cell system employing thermostable glucose dehydrogenaseJunko Okuda-Shimazaki, Noriko Kakehi, Tomohiko Yamazaki, et al.
International Journal of Molecular Sciences|July 20, 2010
Effects of titanium dioxide nanoparticle aggregate size on gene expressionJunko Okuda-Shimazaki, Saiko Takaku, Koki Kanehira, et al.
International Journal of Molecular Sciences|February 11, 2023
Development of a Versatile Method to Construct Direct Electron Transfer-Type Enzyme Complexes Employing SpyCatcher/SpyTag SystemTakumi Yanase, Junko Okuda-Shimazaki, Ryutaro Asano, et al.
Biochemical and Biophysical Research Communications|August 24, 2020
Creation of a novel DET type FAD glucose dehydrogenase harboring Escherichia coli derived cytochrome b<sub>562</sub> as an electron transfer domainTakumi Yanase, Junko Okuda-Shimazaki, Kazushige Mori, et al.
Journal of Biotechnology|September 26, 2024
Improvement of substrate specificity of the direct electron transfer type FAD-dependent glucose dehydrogenase catalytic subunitJoseph A Kerrigan, Hiromi Yoshida, Junko Okuda-Shimazaki, et al.
Molecules (Basel, Switzerland)|February 12, 2021
Development of an Interdigitated Electrode-Based Disposable Enzyme Sensor Strip for Glycated Albumin MeasurementMika Hatada, Noya Loew, Junko Okuda-Shimazaki, et al.
Bioelectrochemistry (Amsterdam, Netherlands)|February 23, 2018
Development of a glucose sensor employing quick and easy modification method with mediator for altering electron acceptor preferenceMika Hatada, Noya Loew, Yuka Inose-Takahashi, et al.
Biosensors & Bioelectronics|January 9, 2021
Strategic design and improvement of the internal electron transfer of heme b domain-fused glucose dehydrogenase for use in direct electron transfer-type glucose sensorsKohei Ito, Junko Okuda-Shimazaki, Katsuhiro Kojima, et al.
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
Bioelectrochemistry (Amsterdam, Netherlands)|December 16, 2019
FAD dependent glucose dehydrogenases - Discovery and engineering of representative glucose sensing enzymesJunko Okuda-Shimazaki, Hiromi Yoshida, Koji Sode
Annual Review of Biomedical Engineering|February 29, 2024
Direct Electron Transfer-Type Oxidoreductases for Biomedical ApplicationsKeisei Sowa, Junko Okuda-Shimazaki, Eole Fukawa, et al.
Biotechnology Letters|June 3, 2008
Biofuel cell system employing thermostable glucose dehydrogenaseJunko Okuda-Shimazaki, Noriko Kakehi, Tomohiko Yamazaki, et al.
International Journal of Molecular Sciences|July 20, 2010
Effects of titanium dioxide nanoparticle aggregate size on gene expressionJunko Okuda-Shimazaki, Saiko Takaku, Koki Kanehira, et al.
International Journal of Molecular Sciences|February 11, 2023
Development of a Versatile Method to Construct Direct Electron Transfer-Type Enzyme Complexes Employing SpyCatcher/SpyTag SystemTakumi Yanase, Junko Okuda-Shimazaki, Ryutaro Asano, et al.
Biochemical and Biophysical Research Communications|August 24, 2020
Creation of a novel DET type FAD glucose dehydrogenase harboring Escherichia coli derived cytochrome b<sub>562</sub> as an electron transfer domainTakumi Yanase, Junko Okuda-Shimazaki, Kazushige Mori, et al.
Journal of Biotechnology|September 26, 2024
Improvement of substrate specificity of the direct electron transfer type FAD-dependent glucose dehydrogenase catalytic subunitJoseph A Kerrigan, Hiromi Yoshida, Junko Okuda-Shimazaki, et al.
Molecules (Basel, Switzerland)|February 12, 2021
Development of an Interdigitated Electrode-Based Disposable Enzyme Sensor Strip for Glycated Albumin MeasurementMika Hatada, Noya Loew, Junko Okuda-Shimazaki, et al.
Bioelectrochemistry (Amsterdam, Netherlands)|February 23, 2018
Development of a glucose sensor employing quick and easy modification method with mediator for altering electron acceptor preferenceMika Hatada, Noya Loew, Yuka Inose-Takahashi, et al.
Biosensors & Bioelectronics|January 9, 2021
Strategic design and improvement of the internal electron transfer of heme b domain-fused glucose dehydrogenase for use in direct electron transfer-type glucose sensorsKohei Ito, Junko Okuda-Shimazaki, Katsuhiro Kojima, et al.
Pageof 2