Literature DB >> 16579619

Control of the oxygen dependence of an implantable polymer/enzyme composite biosensor for glutamate.

Colm P McMahon1, Gaia Rocchitta, Pier A Serra, Sarah M Kirwan, John P Lowry, Robert D O'Neill.   

Abstract

Biosensors for glutamate (Glu) were fabricated from Teflon-coated Pt wire (cylinders and disks), modified with the enzyme glutamate oxidase (GluOx) and electrosynthesized polymer PPD, poly(o-phenylenediamine). The polymer/enzyme layer was deposited in two configurations: enzyme before polymer (GluOx/PPD) and enzyme after polymer (PPD/GluOx). These four biosensor designs were characterized in terms of response time, limit of detection, Michaelis-Menten parameters for Glu (J max and K(M)(Glu)), sensitivity to Glu in the linear response region, and dependence on oxygen concentration, K(M)(O2). Analysis showed that the two polymer/enzyme configurations behaved similarly on both cylinders and disks. Although the two geometries showed different behaviors, these differences could be explained in terms of higher enzyme loading density on the disks; in many analyses, the four designs behaved like a single population with a range of GluOx loading. Enzyme loading was the key to controlling the K(M)(O2) values of these first generation biosensors. The counterintuitive, and beneficial, behavior that biosensors with higher GluOx loading displayed a lower oxygen dependence was explained in terms of the effects of enzyme loading on the affinity of GluOx for its anionic substrate. Some differences between the properties of surface immobilized GluOx and glucose oxidase are highlighted.

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Year:  2006        PMID: 16579619     DOI: 10.1021/ac0518194

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  11 in total

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5.  Enzyme immobilization strategies and electropolymerization conditions to control sensitivity and selectivity parameters of a polymer-enzyme composite glucose biosensor.

Authors:  Sharon A Rothwell; Sarah J Killoran; Robert D O'Neill
Journal:  Sensors (Basel)       Date:  2010-06-30       Impact factor: 3.576

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7.  The Presence of Polysaccharides, Glycerol, and Polyethyleneimine in Hydrogel Enhances the Performance of the Glucose Biosensor.

Authors:  Marco Fois; Paola Arrigo; Andrea Bacciu; Patrizia Monti; Salvatore Marceddu; Gaia Rocchitta; Pier Andrea Serra
Journal:  Biosensors (Basel)       Date:  2019-07-30

8.  Silicon Wafer-Based Platinum Microelectrode Array Biosensor for Near Real-Time Measurement of Glutamate in Vivo.

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9.  Theoretical analysis of the performance of glucose sensors with layer-by-layer assembled outer membranes.

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10.  Characterization of Biosensors Based on Recombinant Glutamate Oxidase: Comparison of Crosslinking Agents in Terms of Enzyme Loading and Efficiency Parameters.

Authors:  Rochelle Ford; Susan J Quinn; Robert D O'Neill
Journal:  Sensors (Basel)       Date:  2016-09-23       Impact factor: 3.576

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