Related Experiment Video
Updated: Aug 21, 2026

Detection of Rare Mutations in CtDNA Using Next Generation Sequencing
Published on: August 24, 2017
Methyltransferase-assisted single duplex sequencing for detecting circulating tumor DNA
Zhaoyu Jiang1,2,3, Yuxuan Wu1,4, Yuqing Guo1,4
1Department of General Surgery, Biomedical Pioneering Innovation Center, Third Hospital, Peking University, Beijing, 100871, China.
None:
Accurate circulating tumor DNA (ctDNA) detection is limited by high sequencing errors. To address this, we developed Methyltransferase-Assisted Single Duplex sequencing (MASD-seq), which physically links Watson and Crick strands to enable error correction using double-stranded information within a single read pair. MASD-seq employs enzymatic methyl-sequencing to disrupt strand pairing and uses CpG methyltransferase pre-methylation to enable detection of CpG>TpG and transversion mutations in DNA duplexes. In parallel, MspI digestion enriches tumor CpG>TpG mutations and reduces genome complexity. MASD-seq achieves error rates of 5.4 × 10-7 for CpG>TpG and 4.1 × 10-8 for transversions in cell lines, allowing detection of age-associated mutational burdens in blood. Tissue analyses show a 4-fold enrichment of CpG>TpG mutations and a 1.6-fold increase in total mutations in high microsatellite instability (MSI-H) colorectal cancer (CRC), and 3-fold and 1.2-fold enrichments in microsatellite stable (MSS) tumors, respectively, yielding a correctable mutation burden comparable to the whole genome. Clinical testing demonstrates an area under the curve (AUC) of 0.97 for ctDNA detection in CRC patients. MASD-seq is a highly accurate sequencing method, suggesting its potential for future clinical applications.
