Literature DB >> 24202194

Differentiation of Escherichia coli serotypes using DC gradient insulator dielectrophoresis.

Paul V Jones1, Alexa F DeMichele, LaKeta Kemp, Mark A Hayes.   

Abstract

Bacteria play a significant role in both human health and disease. An estimated 9.4 million cases of foodborne illness occur in the United States each year. As a result, rapid identification and characterization of microorganisms remains an important research objective. Despite limitations, selective culturing retains a central role among a cadre of identification strategies. For the past decade, separations-based approaches to rapid bacterial identification have been under investigation. Gradient insulator dielectrophoresis (g-iDEP) promises benefits in the form of rapid and specific separation of very similar bacteria, including serotypes of a single species. Furthermore, this approach allows simultaneous concentration of analyte, facilitating detection and downstream analysis. Differentiation of three serotypes or strains of Escherichia coli bacteria is demonstrated within a single g-iDEP microchannel, based on their characteristic electrokinetic properties. Whole cells were captured and concentrated using a range of applied potentials, which generated average electric fields between 160 and 470 V/cm. Bacteria remained viable after exposure to these fields, as determined by cellular motility. These results indicate the potential g-iDEP holds in terms of both separatory power and the possibility for diagnostic applications.

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Year:  2013        PMID: 24202194      PMCID: PMC3935418          DOI: 10.1007/s00216-013-7437-5

Source DB:  PubMed          Journal:  Anal Bioanal Chem        ISSN: 1618-2642            Impact factor:   4.142


  27 in total

Review 1.  Commensal host-bacterial relationships in the gut.

Authors:  L V Hooper; J I Gordon
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Authors:  Y Huang; X B Wang; F F Becker; P R Gascoyne
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4.  Microfluidic Device for Capture and Isolation of Single Cells.

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Authors:  F F Becker; X B Wang; Y Huang; R Pethig; J Vykoukal; P R Gascoyne
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Authors:  X B Wang; Y Huang; P R Gascoyne; F F Becker; R Hölzel; R Pethig
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Review 9.  Prokaryotes: the unseen majority.

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Journal:  Biochim Biophys Acta       Date:  1990-04-23
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Review 8.  Methods of Generating Dielectrophoretic Force for Microfluidic Manipulation of Bioparticles.

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Review 9.  Particle trapping in electrically driven insulator-based microfluidics: Dielectrophoresis and induced-charge electrokinetics.

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