PubMed · 2014 · 172 citations · 55 references
Next-generation DNA sequencing has revolutionized genomic studies and is driving the implementation of precision diagnostics. The ability of these technologies to disentangle sequence heterogeneity, however, is limited by their relatively high error rates. A Several single molecule barcoding strategies have been propose to reduce the overall error frequency. A Duplex Sequencing additionally exploits the fact that DNA is double-strand, with one strand reciprocally encoding the sequence information of its complement, and can eliminate nearly all sequencing errors by comparing the sequence of individually tagged amplicons derived from one strand of DNA with that of its complementary strand. This method reduces errors to fewer than one per ten million nucleotides sequenced.
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Next-generation DNA sequencing
Jay Shendure, Hanlee P. Ji · Nature Biotechnology · 2008 · 4.4K citations
Clonal evolution in relapsed acute myeloid leukaemia revealed by whole-genome sequencing
Li Ding, Timothy J. Ley, David E. Larson et al. · Nature · 2012 · 2K citations · Full text
Evolution and Impact of Subclonal Mutations in Chronic Lymphocytic Leukemia
Dan A. Landau, Scott L. Carter, Petar Stojanov et al. · Cell · 2013 · 1.4K citations · Full text
Hematological Malignancy, Lymphoid Neoplasia, Engineering +9