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      Droplet microfluidics for amplification-free genetic detection of single cells.

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          Abstract

          In this article we present a novel droplet microfluidic chip enabling amplification-free detection of single pathogenic cells. The device streamlines multiple functionalities to carry out sample digitization, cell lysis, probe-target hybridization for subsequent fluorescent detection. A peptide nucleic acid fluorescence resonance energy transfer probe (PNA beacon) is used to detect 16S rRNA present in pathogenic cells. Initially the sensitivity and quantification abilities of the platform are tested using a synthetic target mimicking the actual expression level of 16S rRNA in single cells. The capability of the device to perform "sample-to-answer" pathogen detection of single cells is demonstrated using E. coli as a model pathogen.

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          Author and article information

          Journal
          Lab Chip
          Lab on a chip
          Royal Society of Chemistry (RSC)
          1473-0189
          1473-0189
          Sep 21 2012
          : 12
          : 18
          Affiliations
          [1 ] Department of Biomedical Engineering, Johns Hopkins University, Baltimore, USA.
          Article
          NIHMS400683
          10.1039/c2lc40537g
          3696383
          22842841
          175613f3-3b1d-4556-94f0-f612e9afd49c
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