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TBC

Construction and Characterization of Direct Electron Transfer-Type Continuous Glucose Monitoring System Employing Thermostable Glucose Dehydrogenase Complex

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Pages 2363-2373 | Received 16 May 2008, Accepted 20 Jun 2008, Published online: 05 Nov 2008

REFERENCES

  • Darder , M. , Casero , E. , Pariente , F. , and Lorenzo , E. 2000 . Biosensors based on membrane-bound enzymes immobilized in a 5-(octyldithio)-2-nitrobenzoic acid layer on gold electrodes . Anal. Chem. , 72 : 3784 – 3792 .
  • Inose , K. , Fujikawa , M. , Yamazaki , T. , Kojima , K. , and Sode , K. 2003 . Cloning and expression of the gene encoding catalytic subunit of thermostable glucose dehydrogenase from Burkholderia cepacia in Escherichia coli . Biochim. Biophys. Acta , 1645 : 133 – 138 .
  • Kakehi , N. , Yamazaki , T. , Tsugawa , W. , and Sode , K. 2007. A novel wireless glucose sensor employing direct electron transfer principle based enzyme fuel cell. Biosens. Bioelectron. , 22: 2250–2255.
  • Nakazawa , Y. , Yamazaki , T. , Tsugawa , W. , Ikebukuro , K. , and Sode , K. 2003 . Amperometric glucose sensor using thermostable co-factor binding glucose dehydrogenase . IEEJ Trans. Sens. Micromachines , 123 : 185 – 189 .
  • Okuda , J. , Wakai , J. , and Sode , K. 2002 . The application of cytochromes as the interface molecule to facilitate the electron transfer for PQQ glucose dehydrogenase employing mediator type glucose sensor . Anal. Lett. , 35 : 1465 – 1478 .
  • Okuda , J. , Wakai , J. , Yuhashi , N. , and Sode , K. 2003 . Glucose enzyme electrode using cytochrome b(562) as an electron mediator . Biosens. Bioelectron. , 18 : 699 – 704 .
  • Okuda , J. and Sode , K. 2004 . PQQ glucose dehydrogenase with novel electron transfer ability . Biochem. Biophys. Res. Commun. , 314 : 793 – 797 .
  • Okuda , J. , Yamazaki , T. , Fukasawa , M. , Kakehi , N. , and Sode , K. 2007 . The application of engineered glucose dehydrogenase to a direct electron-transfer-type continuous glucose monitoring system and a compartmentless biofuel cell . Anal. Lett. 40 : 431 – 440 .
  • Okuda-Shimazaki , J. , Kakehi , N. , Yamazaki , T. , Tomiyama , M. , and Sode , K. 2008 . Biofuel cell system employing thermostable glucose dehydrogenase . Biotechnol. Lett. , 30 : 1753 – 1758 .
  • Sode , K. , Tsugawa , W. , Yamazaki , T. , Watanabe , M. , Ogasawara , N. , and Tanaka , M. 1996 . A novel thermostable glucose dehydrogenase varying temperature properties by altering its quaternary structures . Enz. Microbial Technol. , 19 : 82 – 85 .
  • Tang , Z.P. , Louie , R.F. , Lee , J.H. , Lee , D.M. , Miller , E.E. , and Kost , G.J. 2001 . Oxygen effects on glucose meter measurements with glucose dehydrogenase- and oxidase-based test strips for point-of-care testing . Crit. Care Med. , 29 : 1062 – 1070 .
  • Tsuya , T. , Ferri , S. , Fujikawa , M. , Yamaoka , H. , and Sode , K. 2006 . Cloning and functional expression of glucose dehydrogenase complex of Burkholderia cepacia in Escherichia coli . J. Biotechnol. , 123 : 127 – 196 .
  • Yamaoka , H. , Ferri , S. , Fujikawa , M. , and Sode , K. 2004 . Essential role of the small subunit of thermostable glucose dehydrogenase from Burkholderia cepacia . Biotechnol. Lett. , 26 : 1757 – 1761 .
  • Yamaoka , H. and Sode , K. 2007 . A disposable electrochemical glucose sensor using catalytic subunit of novel thermostable glucose dehydrogenase . Open Biotechnol. J. , 1 : 26 – 30 .
  • Yamazaki , T. , Tsugawa , W. , and Sode , K. 1999a . Subunit analyses of a novel thermostable glucose dehydrogenase showing different temperature properties according to its quaternary structure . Appl. Biochem. Biotechnol. , 77–79 : 325 – 335 .
  • Yamazaki , T. , Tsugawa , W. , and Sode , K. 1999b . Increased thermal stability of glucose dehydrogenase by cross-linking chemical modification . Biotechnol. Lett. , 21 : 199 – 202 .

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