Scinovex
article Open AccessTop 1% cited

High-Throughput Droplet Digital PCR System for Absolute Quantitation of DNA Copy Number

Analytical Chemistry · 2011 · Vol. 83(22) · pp. 8604–8610
Benjamin J. HindsonKevin D. NessDonald A MasquelierPhillip BelgraderNicholas J. HerediaAnthony J. MakarewiczIsaac J. BrightMichael Y. LuceroAmy L. HiddessenTina C. LeglerTyler K. KitanoMichael R. HodelJonathan F. PetersenPaul W. WyattErin R. SteenblockPallavi ShahLuc BousseCamille TroupJeffrey C. MellenDean K. WittmannNicholas G. ErndtThomas H. CauleyRyan T. KoehlerAustin P. SoSimant DubeKlint A. RoseLuz MontesclarosShenglong WangD. P. StumboShawn P. HodgesSteven RomineFred P. MilanovichHelen WhiteJohn F. ReganGeorge Karlin‐NeumannChristopher M. HindsonSerge SaxonovBill W. Colston

Abstract

Digital PCR enables the absolute quantitation of nucleic acids in a sample. The lack of scalable and practical technologies for digital PCR implementation has hampered the widespread adoption of this inherently powerful technique. Here we describe a high-throughput droplet digital PCR (ddPCR) system that enables processing of ~2 million PCR reactions using conventional TaqMan assays with a 96-well plate workflow. Three applications demonstrate that the massive partitioning afforded by our ddPCR system provides orders of magnitude more precision and sensitivity than real-time PCR. First, we show the accurate measurement of germline copy number variation. Second, for rare alleles, we show sensitive detection of mutant DNA in a 100,000-fold excess of wildtype background. Third, we demonstrate absolute quantitation of circulating fetal and maternal DNA from cell-free plasma. We anticipate this ddPCR system will allow researchers to explore complex genetic landscapes, discover and validate new disease associations, and define a new era of molecular diagnostics.

Single-cell and spatial transcriptomicsPrenatal Screening and DiagnosticsCancer Genomics and DiagnosticsDigital polymerase chain reactionTaqManChemistryNucleic acidComputational biologyThroughputReal-time polymerase chain reactionDNAPolymerase chain reactionComputer science

MeSH terms

DNAHumansPolymerase Chain ReactionGene DosageHigh-Throughput Nucleotide Sequencing

Funding

  • National Institute of Biomedical Imaging and Bioengineering
Citations
2,715
FWCI
31.94
field-weighted impact
References
37
Percentile
100%
vs. same field & year
Citations per year
References
dbSNP: the NCBI database of genetic variation
Nucleic Acids Research · 2001 · 7,769 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.