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Single-cell whole-genome amplification technique impacts the accuracy of SNP microarray-based genotyping and copy number analyses.


ABSTRACT: Methods of comprehensive microarray-based aneuploidy screening in single cells are rapidly emerging. Whole-genome amplification (WGA) remains a critical component for these methods to be successful. A number of commercially available WGA kits have been independently utilized in previous single-cell microarray studies. However, direct comparison of their performance on single cells has not been conducted. The present study demonstrates that among previously published methods, a single-cell GenomePlex WGA protocol provides the best combination of speed and accuracy for single nucleotide polymorphism microarray-based copy number (CN) analysis when compared with a REPLI-g- or GenomiPhi-based protocol. Alternatively, for applications that do not have constraints on turnaround time and that are directed at accurate genotyping rather than CN assignments, a REPLI-g-based protocol may provide the best solution.

SUBMITTER: Treff NR 

PROVIDER: S-EPMC3097071 | biostudies-literature | 2011 Jun

REPOSITORIES: biostudies-literature

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Single-cell whole-genome amplification technique impacts the accuracy of SNP microarray-based genotyping and copy number analyses.

Treff Nathan R NR   Su Jing J   Tao Xin X   Northrop Lesley E LE   Scott Richard T RT  

Molecular human reproduction 20101221 6


Methods of comprehensive microarray-based aneuploidy screening in single cells are rapidly emerging. Whole-genome amplification (WGA) remains a critical component for these methods to be successful. A number of commercially available WGA kits have been independently utilized in previous single-cell microarray studies. However, direct comparison of their performance on single cells has not been conducted. The present study demonstrates that among previously published methods, a single-cell Genome  ...[more]

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