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Matthew Ringel

Matthew Ringel

· Professor

Ohio State University · Translational and Molecular Therapeutics

Active 1957–2026

h-index91
Citations38.9k
Papers405118 last 5y
Funding$124.9M2 active

Academic metrics are sourced from OpenAlex and public funding records; values may differ from Google Scholar.

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Research topics

  • Biology
  • Genetics
  • Computational biology
  • Evolutionary biology
  • Cancer research
  • Mathematics
  • Pharmacology
  • Biochemistry
  • Chemistry
  • Medicine

Selected publications

  • The repertoire of mutational signatures in human cancer

    Nature · 2020 · 3673 citations

    , enabled the discovery of new signatures, the separation of overlapping signatures and the decomposition of signatures into components that may represent associated-but distinct-DNA damage, repair and/or replication mechanisms. By estimating the contribution of each signature to the mutational catalogues of individual cancer genomes, we revealed associations of signatures to exogenous or endogenous exposures, as well as to defective DNA-maintenance processes. However, many signatures are of unk…

  • Pan-cancer analysis of whole genomes

    Nature · 2020 · 3248 citations

    .

  • The evolutionary history of 2,658 cancers

    Nature · 2020 · 1112 citations

    , we reconstruct the life history and evolution of mutational processes and driver mutation sequences of 38 types of cancer. Early oncogenesis is characterized by mutations in a constrained set of driver genes, and specific copy number gains, such as trisomy 7 in glioblastoma and isochromosome 17q in medulloblastoma. The mutational spectrum changes significantly throughout tumour evolution in 40% of samples. A nearly fourfold diversification of driver genes and increased genomic instability are…

  • Patterns of somatic structural variation in human cancer genomes

    Nature · 2020 · 976 citations

    . Sixteen signatures of structural variation emerged. Deletions have a multimodal size distribution, assort unevenly across tumour types and patients, are enriched in late-replicating regions and correlate with inversions. Tandem duplications also have a multimodal size distribution, but are enriched in early-replicating regions-as are unbalanced translocations. Replication-based mechanisms of rearrangement generate varied chromosomal structures with low-level copy-number gains and frequent inve…

  • Comprehensive analysis of chromothripsis in 2,658 human cancers using whole-genome sequencing

    Nature Genetics · 2020 · 763 citations

    Chromothripsis is a mutational phenomenon characterized by massive, clustered genomic rearrangements that occurs in cancer and other diseases. Recent studies in selected cancer types have suggested that chromothripsis may be more common than initially inferred from low-resolution copy-number data. Here, as part of the Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium of the International Cancer Genome Consortium (ICGC) and The Cancer Genome Atlas (TCGA), we analyze patterns of chromothrips…

Recent grants

Frequent coauthors

  • Motoyasu Saji

    252 shared
  • Vasily Vasko

    Uniformed Services University of the Health Sciences

    105 shared
  • Rory Johnson

    University Hospital of Bern

    94 shared
  • Roland Eils

    84 shared
  • Thomas J. Mitchell

    Wellcome Sanger Institute

    82 shared
  • Richard T. Kloos

    Veracyte (United States)

    78 shared
  • Lars Feuerbach

    German Cancer Research Center

    76 shared
  • L. Sylvia

    Mirai Hospital

    75 shared

Education

  • M.D., Medicine

    The Ohio State University College of Medicine

    2008
  • B.S., Biology

    The Ohio State University

    2004

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