Virtual-Partition Digital PCR for High-Precision Chromosomal
Counting Applications
Posted on 2021-12-14 - 22:44
Digital PCR (dPCR)
is the gold-standard analytical platform for
rapid high-precision quantification of genomic fragments. However,
current dPCR assays are generally limited to monitoring 1–2
analytes per sample, thereby limiting the platform’s ability
to address some clinical applications that require the simultaneous
monitoring of 20–50 analytes per sample. Here, we present virtual-partition
dPCR (VPdPCR), a novel analysis methodology enabling the detection
of 10 or more target regions per color channel using conventional
dPCR hardware and workflow. Furthermore, VPdPCR enables dPCR instruments
to overcome upper quantitation limits caused by partitioning error.
While traditional dPCR analysis establishes a single threshold to
separate negative and positive partitions, VPdPCR establishes multiple
thresholds to identify the number of unique targets present in each
positive droplet based on fluorescence intensity. Each physical partition
is then divided into a series of virtual partitions, and the resulting
increase in partition count substantially decreases partitioning error.
We present both a theoretical analysis of the advantages of VPdPCR
and an experimental demonstration in the form of a 20-plex assay for
noninvasive fetal aneuploidy testing. This demonstration assaytested
on 432 samples contrived from sheared cell-line DNA at multiple input
concentrations and simulated fractions of euploid or trisomy-21 “fetal”
DNAis analyzed using both traditional dPCR thresholding and
VPdPCR. VPdPCR analysis significantly lowers the variance of the chromosomal
ratio across replicates and increases the accuracy of trisomy identification
when compared to traditional dPCR, yielding > 98% single-well sensitivity
and specificity. VPdPCR has substantial promise for increasing the
utility of dPCR in applications requiring ultrahigh-precision quantitation.
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Jacky, Lucien; Yurk, Dominic; Alvarado, John; Leatham, Bryan; Schwartz, Jerrod; Annaloro, John; et al. (2021). Virtual-Partition Digital PCR for High-Precision Chromosomal
Counting Applications. ACS Publications. Collection. https://doi.org/10.1021/acs.analchem.1c03527