Abstract
Methods to detect circulating tumor DNA (ctDNA) enable minimally invasive responsive monitoring of cancer dynamics. However, sensitive and cost-effective methods are still lacking. Current methods for detecting cancer signals in shallow whole-genome sequencing (sWGS) data from cell-free DNA (cfDNA) via copy number aberration (CNA) analysis typically have a limit of detection of approximately 3% tumor fraction (TF). We developed informCNA, a bioinformatics method that leverages CNA information from sWGS of tumor or pre-treatment plasma samples with high TF as references, enabling ctDNA detection down to 0.2% TF across multiple cancer types. In 177 serial plasma samples from 18 patients with ovarian cancer, informCNA showed high concordance with the standard serum protein marker CA-125 and identified recurrence a median of 3.7 months earlier than CA-125 test. These results demonstrate the potential of personalized CNA analysis through sWGS for estimating ctDNA burden, enabling precise and cost-effective disease monitoring and early detection of relapse.
Author supplied keywords
Cite
CITATION STYLE
Zhou, Z., Cutts, R., Hrebien, S., Zhang, C. X., Garcia‑Murillas, I., Zhang, W. Z., … Zhao, H. (2026). ctDNA monitoring using tumor-informed copy number analysis. EMBO Molecular Medicine, 18(4), 1429–1455. https://doi.org/10.1038/s44321-026-00399-4
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.