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Overoxidation of carbon-fiber microelectrodes enhances dopamine adsorption and increases sensitivityElectronic supplementary information (ESI) available: National Instruments Data Acquisition System. See http://www.rsc.org/suppdata/an/b3/b307024g/

The Analyst · 2003 · Vol. 128(12) · pp. 1413–1413

Abstract

The voltammetric responses of carbon-fiber microelectrodes with a 1.0 V and a 1.4 V anodic limit were compared in this study. Fast-scan cyclic voltammetry was used to characterize the response to dopamine and several other neurochemicals. An increase in the adsorption properties of the carbon fiber leads to an increase in sensitivity of 9 fold in vivo. However the temporal response of the sensor is slower with the more positive anodic limit. Increased electron transfer kinetics also causes a decrease in the relative sensitivity for dopamine vs. other neurochemicals, and a change in their cyclic voltammograms. Stimulated release in the caudate-putamen was pharmacologically characterized in vivo using Ro-04-1284 and pargyline, and was consistent with that expected for dopamine.

Electrochemical sensors and biosensorsConducting polymers and applicationsElectrochemical Analysis and ApplicationsMicroelectrodeChemistryDopamineDetection limitAdsorptionCyclic voltammetryElectrodeAnalytical Chemistry (journal)ElectrochemistryChromatography

MeSH terms

AnimalsBrain ChemistryCarbonDopamineElectrochemistryMaleMicroelectrodesSensitivity and SpecificityRats, Sprague-DawleyRats

Funding

  • National Institutes of Health
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384
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Overoxidation of carbon-fiber microelectrodes enhances dopamine adsorption and increases sensitivityElectronic supplementary information (ESI) available: National Instruments Data Acquisition System. See http://www.rsc.org/suppdata/an/b3/b307024g/ · Scinovex