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Symposium on Potentially Implantable Glucose Sensors

A Glucose Electrode Using High-Stability Glucose-Oxidase Collagen Membranes

  1. Daniel R Thévenot,
  2. Robert Sternberg and
  3. Pierre Coulet
  1. Laboratoire de Bioélectrochimie et d'Analyse du Milieu, UER de Sciences, Université Paris Val de Marne Avenue du Général de Gaulle F. 94010 Creteil Cédex
  2. Laboratoire de Biologie et Technologie des Membranes du CNRS, Université Claude Bernard (Lyon I) 43, boulevard du 11 novembre 1918 F.69621 Villeurbanne
  1. Address reprint requests to Daniel R. Thévenot, Laboratoire de Bioélectrochimie et d'Analyse du Milieu, UER de Sciences, Université Paris Val de Marne, Avenue du Général de Gaulle F.94010 Creteil Cédex, France.
Diabetes Care 1982 May; 5(3): 203-206. https://doi.org/10.2337/diacare.5.3.203
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Abstract

A very sensitive glucose electrode was developed using a glucose-oxidase membrane and an anodically polarized platinum disk. Calibration curves were linear over 4.5 concentration decades. It was adapted for human blood samples. The lifetime of glucose-oxidase collagen membranes was greater than 3 yr at 4°C and was ∼6 mo at 20–30°C.

  • Copyright © 1982 by the American Diabetes Association

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May 1982, 5(3)
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A Glucose Electrode Using High-Stability Glucose-Oxidase Collagen Membranes
Daniel R Thévenot, Robert Sternberg, Pierre Coulet
Diabetes Care May 1982, 5 (3) 203-206; DOI: 10.2337/diacare.5.3.203

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A Glucose Electrode Using High-Stability Glucose-Oxidase Collagen Membranes
Daniel R Thévenot, Robert Sternberg, Pierre Coulet
Diabetes Care May 1982, 5 (3) 203-206; DOI: 10.2337/diacare.5.3.203
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More in this TOC Section

  • Introduction
  • Implanting the Glucose Enzyme Electrode: Problems, Progress, and Alternative Solutions
  • Chemically Sensitive Field Effect Transistor as a Potential Implantable Glucose Sensor
Show more Symposium on Potentially Implantable Glucose Sensors

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© 2021 by the American Diabetes Association. Diabetes Care Print ISSN: 0149-5992, Online ISSN: 1935-5548.