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◇ bioRxiv2026-09-12· cancer biology

Quantitative and sensitive neuroblastoma minimal residual disease detection using extrachromosomal DNA (ecDNA) breakpoints

A. Szymansky, F. Hertwig, A. Winkler, R. Chamorro Gonzalez, K. Helmsauer, A.-M. Schroeer, M. J. Witthauer, E. Karaman, M. Lodrini, J. Wuenschel, N. Wittstruck, S. Fuchs, J. Theissen, B. Hero, R. P. Koche, M. J. Barz, L. C. Heukamp, K. Astrahantseff, K. Schmelz, P. Hundsdoerfer, J. Toedling, A. Eggert, C. Eckert, B. Spanjaard, H. E. Deubzer, M. Fischer, A. G. Henssen, J. H. Schulte

原始摘要(英文原文)· Original abstract
Sensitive detection of minimal residual disease (MRD) remains a major unmet need in high-risk neuroblastoma. MYCN amplification, a hallmark of high-risk disease, typically occurs on extrachromosomal DNA (ecDNA), but the potential of ecDNA-associated genomic rearrangements for individualized MRD monitoring has not been fully exploited. Here, we applied neuroblastoma-specific hybrid capture-based panel sequencing to identify patient-unique breakpoints within MYCN amplicons, and used Circle-seq and Nanopore sequencing to resolve the extrachromosomal amplicon structure in representative samples. Analysis of 8 neuroblastoma cell lines and 22 primary tumors identified 69 tumor-specific breakpoints. Those selected for assay development were validated by breakpoint-specific PCR and Sanger sequencing. Breakpoints detected in primary tumors remained detectable at relapse, supporting their stability as MRD markers. Breakpoint-specific real-time quantitative PCR and droplet digital PCR detected these junctions in bone marrow aspirates with high specificity and reached sensitivities down to a tumor DNA fraction of 10^-6. We applied this approach to 53 serial bone marrow aspirates from 14 patients with high-risk neuroblastoma to monitor MRD dynamics, resolving treatment response and molecular persistence. In six samples, breakpoint-positive DNA was detected in bone marrow that was negative by conventional cytology and immunocytology, highlighting the added value of molecular monitoring. Together, these findings establish ecDNA breakpoint-based detection as a strategy for MRD assessment in neuroblastoma, that is, in principle, applicable to any ecDNA-amplified oncogene.
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