Analytical Validation of a Hybrid Capture–Based Next-Generation Sequencing Clinical Assay for Genomic Profiling of Cell-Free Circulating Tumor DNA

液体活检 循环肿瘤DNA 计算生物学 胎儿游离DNA 数字聚合酶链反应 单细胞测序 大规模并行测序 循环肿瘤细胞 分子诊断学 桑格测序
作者
Travis A. Clark,Jon Chung,Mark Kennedy,Jason D. Hughes,Niru Chennagiri,Daniel S. Lieber,Bernard J. Fendler,Lauren Young,Mandy Zhao,Michael J. Coyne,Virginia Breese,Geneva Young,Amy Donahue,Dean C. Pavlick,Alyssa Tsiros,Timothy A Brennan,Shan Zhong,Tariq I. Mughal,Mark Bailey,Jie He,Sarah Roels,Garrett M. Frampton,Jill M. Spoerke,Steven Gendreau,Mark R. Lackner,Erica Schleifman,Eric Peters,Jeffrey S. Ross,Siraj M. Ali,Vincent A. Miller,Jeffrey P. Gregg,Philip J. Stephens,Allison W. Welsh,Geoff Otto,Doron Lipson
出处
期刊:The Journal of Molecular Diagnostics [Elsevier]
卷期号:20 (5): 686-702 被引量:143
标识
DOI:10.1016/j.jmoldx.2018.05.004
摘要

Genomic profiling of circulating tumor DNA derived from cell-free DNA (cfDNA) in blood can provide a noninvasive method for detecting genomic biomarkers to guide clinical decision making for cancer patients. We developed a hybrid capture-based next-generation sequencing assay for genomic profiling of circulating tumor DNA from blood (FoundationACT). High-sequencing coverage and molecular barcode-based error detection enabled accurate detection of genomic alterations, including short variants (base substitutions, short insertions/deletions) and genomic re-arrangements at low allele frequencies (AFs), and copy number amplifications. Analytical validation was performed on 2666 reference alterations. The assay achieved >99% overall sensitivity (95% CI, 99.1%-99.4%) for short variants at AF >0.5%, >95% sensitivity (95% CI, 94.2%-95.7%) for AF 0.25% to 0.5%, and 70% sensitivity (95% CI, 68.2%-71.5%) for AF 0.125% to 0.25%. No false positives were detected in 62 samples from healthy volunteers. Genomic alterations detected by FoundationACT demonstrated high concordance with orthogonal assays run on the same clinical cfDNA samples. In 860 routine clinical FoundationACT cases, genomic alterations were detected in cfDNA at comparable frequencies to tissue; for the subset of cases with temporally matched tissue and blood samples, 75% of genomic alterations and 83% of short variant mutations detected in tissue were also detected in cfDNA. On the basis of analytical validation results, FoundationACT has been approved for use in our Clinical Laboratory Improvement Amendments-certified/College of American Pathologists-accredited/New York State-approved laboratory.
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