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February 21, 2026Nature Cancer8 citationsOpen Access

A pan-cancer compendium of 1,294 plasma cell-free DNA methylomes and fragmentomes enabling multicancer detection

YZYong ZengDADor AbelmanASAlthaf Singhawansa

Key Points

  • To develop a comprehensive framework for analyzing plasma cell-free DNA methylation and fragmentation for multicancer detection.
  • Collated 1,074 cfMeDIP-seq profiles from 9 studies involving 11 cancer types and healthy controls.
  • Created a uniform computational workflow to mitigate confounding factors in data processing.
  • Identified pancancer differentially methylated regions and cancer-specific markers through extensive profiling.
  • Conducted validation in 220 independent plasma samples including additional cancer types.
  • Identified 14,202 pancancer differentially methylated regions for effective cancer detection.
  • Revealed distinct differences in fragment lengths and motifs across various cancers.
  • Enhanced cancer detection and classification by integrating methylomic and fragmentomic features.
  • Validation confirmed robustness in findings across independent samples.

Abstract

Cell-free DNA analysis via methylation and fragmentation profiling has advanced minimally invasive cancer detection; however, broader application has been limited by small cohorts and inconsistent data processing. Here we collated 1,074 cfMeDIP-seq profiles across 9 studies, comprising cancer samples from 11 cancer types, carriers of Li-Fraumeni syndrome and healthy controls. We developed a uniform computational workflow to mitigate technical and biological confounders across cohorts. This analysis identified 14,202 pancancer differentially methylated regions for cancer detection, along with cancer-specific markers for subtype monitoring. Fragmentomic profiling revealed distinguishing differences in 5′ end motifs, fragment lengths and nucleosome footprints across cancers. Integrating methylome and fragmentome features enhanced cancer detection and classification. Validation in 220 independent samples, including 3 cancer types absent from the primary dataset, confirmed the robustness of our findings. Altogether, this work provides a pancancer cell-free DNA resource of 1,294 samples to support future methylome and fragmentome studies. Zeng et al. analyzed cfDNA methylation and fragmentomic data from 1,294 patient plasma samples across 14 major cancer types to present a comprehensive landscape of pancancer and cancer-specific cell-free DNA methylation and fragmentomic features.

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Cite This Study

Zeng et al. (2026) studied this question.

synapsesocial.com/papers/69994c5d873532290d020cc2https://doi.org/10.1038/s43018-026-01116-3
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