Cancer Genome Scanning in Plasma: Detection of Tumor-Associated Copy Number Aberrations, Single-Nucleotide Variants, and Tumoral Heterogeneity by Massively Parallel Sequencing
Top Cited Papers
Open Access
- 1 January 2013
- journal article
- Published by Oxford University Press (OUP) in Clinical Chemistry
- Vol. 59 (1) , 211-224
- https://doi.org/10.1373/clinchem.2012.196014
Abstract
BACKGROUND: Tumor-derived DNA can be found in the plasma of cancer patients. In this study, we explored the use of shotgun massively parallel sequencing (MPS) of plasma DNA from cancer patients to scan a cancer genome noninvasively. METHODS: Four hepatocellular carcinoma patients and a patient with synchronous breast and ovarian cancers were recruited. DNA was extracted from the tumor tissues, and the preoperative and postoperative plasma samples of these patients were analyzed with shotgun MPS. RESULTS: We achieved the genomewide profiling of copy number aberrations and point mutations in the plasma of the cancer patients. By detecting and quantifying the genomewide aggregated allelic loss and point mutations, we determined the fractional concentrations of tumor-derived DNA in plasma and correlated these values with tumor size and surgical treatment. We also demonstrated the potential utility of this approach for the analysis of complex oncologic scenarios by studying the patient with 2 synchronous cancers. Through the use of multiregional sequencing of tumoral tissues and shotgun sequencing of plasma DNA, we have shown that plasma DNA sequencing is a valuable approach for studying tumoral heterogeneity. CONCLUSIONS: Shotgun DNA sequencing of plasma is a potentially powerful tool for cancer detection, monitoring, and research.Keywords
Funding Information
- Hong Kong Research Grants Council Theme-Based Research Scheme (T12-CUHK05/10)
- Innovation and Technology Fund
This publication has 33 references indexed in Scilit:
- The molecular evolution of acquired resistance to targeted EGFR blockade in colorectal cancersNature, 2012
- Intratumor Heterogeneity and Branched Evolution Revealed by Multiregion SequencingNew England Journal of Medicine, 2012
- The TLX1 oncogene drives aneuploidy in T cell transformationNature Medicine, 2010
- Use of cancer‐specific genomic rearrangements to quantify disease burden in plasma from patients with solid tumorsGenes, Chromosomes and Cancer, 2010
- Personalized copy number and segmental duplication maps using next-generation sequencingNature Genetics, 2009
- Genome-wide association of early-onset myocardial infarction with single nucleotide polymorphisms and copy number variantsNature Genetics, 2009
- Noninvasive prenatal diagnosis of fetal chromosomal aneuploidy by massively parallel genomic sequencing of DNA in maternal plasmaProceedings of the National Academy of Sciences, 2008
- Integrated genotype calling and association analysis of SNPs, common copy number polymorphisms and rare CNVsNature Genetics, 2008
- Circulating mutant DNA to assess tumor dynamicsNature Medicine, 2008
- Digital PCR for the molecular detection of fetal chromosomal aneuploidyProceedings of the National Academy of Sciences, 2007