On-Chip, Real-Time, Single-Copy Polymerase Chain Reaction in Picoliter Droplets

The first lab-on-chip system for picoliter droplet generation and PCR amplification with real-time fluorescence detection has performed PCR in isolated droplets at volumes 106 smaller than commercial real-time PCR instruments. The system utilized a shearing T-junction in a silicon device to generate...

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Veröffentlicht in:Analytical chemistry (Washington) 2007-11, Vol.79 (22), p.8471-8475
Hauptverfasser: Beer, N. Reginald, Hindson, Benjamin J, Wheeler, Elizabeth K, Hall, Sara B, Rose, Klint A, Kennedy, Ian M, Colston, Bill W
Format: Artikel
Sprache:eng
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Zusammenfassung:The first lab-on-chip system for picoliter droplet generation and PCR amplification with real-time fluorescence detection has performed PCR in isolated droplets at volumes 106 smaller than commercial real-time PCR instruments. The system utilized a shearing T-junction in a silicon device to generate a stream of monodisperse picoliter droplets that were isolated from the microfluidic channel walls and each other by the oil-phase carrier. An off-chip valving system stopped the droplets on-chip, allowing them to be thermally cycled through the PCR protocol without droplet motion. With this system, a 10-pL droplet, encapsulating less than one copy of viral genomic DNA through Poisson statistics, showed real-time PCR amplification curves with a cycle threshold of ∼18, 20 cycles earlier than commercial instruments. This combination of the established real-time PCR assay with digital microfluidics is ideal for isolating single-copy nucleic acids in a complex environment.
ISSN:0003-2700
1520-6882
DOI:10.1021/ac701809w