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Updated: May 3, 2026

Bacterial Detection & Identification Using Electrochemical Sensors
Published on: April 23, 2013
Integrated circuit-based electrochemical sensor for spatially resolved detection of redox-active metabolites in
Daniel L Bellin1, Hassan Sakhtah2, Jacob K Rosenstein3
1Department of Electrical Engineering, Columbia University, New York, New York 10027, USA.
Abstract:
Despite advances in monitoring spatiotemporal expression patterns of genes and proteins with fluorescent probes, direct detection of metabolites and small molecules remains challenging. A technique for spatially resolved detection of small molecules would benefit the study of redox-active metabolites that are produced by microbial biofilms and can affect their development. Here we present an integrated circuit-based electrochemical sensing platform featuring an array of working electrodes and parallel potentiostat channels. 'Images' over a 3.25 × 0.9 mm(2) area can be captured with a diffusion-limited spatial resolution of 750 μm. We demonstrate that square wave voltammetry can be used to detect, identify and quantify (for concentrations as low as 2.6 μM) four distinct redox-active metabolites called phenazines. We characterize phenazine production in both wild-type and mutant Pseudomonas aeruginosa PA14 colony biofilms, and find correlations with fluorescent reporter imaging of phenazine biosynthetic gene expression.
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