Abstract
Insulator-based dielectrophoresis can be used to manipulate biological particles, but has thus far found limited practical applications due to low sensitivity. We present linear sweep three-dimensional insulator-based dielectrophoresis as a considerably more sensitive approach for strain-level discrimination bacteria. In this work, linear sweep three-dimensional insulator-based dielectrophoresis was performed on Pseudomonas aeruginosa PA14 along with six isogenic mutants as well as Streptococcus mitis SF100 and PS344. Strain-level discrimination was achieved between these clinically important pathogens with applied electric fields below 10 V/mm. This low voltage, high sensitivity technique has potential applications in clinical diagnostics as well as microbial physiology research. © 2013 Braff et al.
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CITATION STYLE
Braff, W. A., Willner, D., Hugenholtz, P., Rabaey, K., & Buie, C. R. (2013). Dielectrophoresis-Based Discrimination of Bacteria at the Strain Level Based on Their Surface Properties. PLoS ONE, 8(10). https://doi.org/10.1371/journal.pone.0076751
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