Redox‐Filled Carbon‐Fiber Microelectrodes for Single‐Cell Exocytosis |
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Authors: | Jonathan T. Cox Christopher G. Gunderson Bo Zhang |
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Affiliation: | Department of Chemistry, University of Washington, Seattle, WA 98195‐1700 USA, Tel: 206‐543‐1767 |
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Abstract: | Carbon‐fiber microelectrodes (CFEs) are the primary electroanalytical tool in single‐cell exocytosis and in vivo studies. Here we report a new study on the kinetic properties of electrolyte‐filled CFEs in single‐cell measurements and demonstrate that the addition of outer sphere redox species, such as Fe(CN)63? and Ru(NH3)63+, in the backfill electrolyte solution can greatly enhance the kinetic response of CFEs. We show that at 750 mV, a voltage normally applied for detection of dopamine, the presence of fast outer sphere redox species in the backfilling solution significantly enhances the kinetic response of CFEs toward fast dopamine detection at single PC12 cells. Moreover, we also demonstrate that the use of Fe(CN)63? in the backfilling solution has enabled direct measurement of dopamine at applied voltages as low as 200 mV. This kinetic enhancement is believed to be due to faster electron‐transfer kinetics on the coupling pole as compared to the sluggish reduction of oxygen. We anticipate that such redox‐filled CFE ultramicroelectrodes will find many useful applications in single cell exocytosis and in vivo sensing. |
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Keywords: | Redox‐filled carbon‐fiber microelectrodes Carbon‐fiber microelectrodes Microelectrodes Exocytosis |
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