A universal method to interrogate genome-wide methylation patterns

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The Technology: An efficient, simple, sensitive method to study DNA methylation.
This technology is a tagmentation-based method for global DNA methylation and sequencing that uses a fusion protein without DNA-targeting antibodies, enabling efficient and convenient analysis of methylation patterns in normal and disease conditions, including early cancer detection.
Reduces the cost of DNA methylation analysis.
This technology is a direct-tag method for rapid nanopore sequencing that enables rapid DNA extraction and high-yield sequencing of DNA fragments within a fraction of the time of current sequencing technologies.
This underscores the urgent need for faster and more affordable DNA sequencing technologies.
This technology is a direct-tag method for rapid nanopore sequencing that enables rapid DNA extraction and high-yield sequencing of DNA fragments within a fraction of the time of current sequencing technologies.
This technology is two methods, called ssg-MeDIP-Seq and sscf-MeDIP-Seq, for improved tumor detection using detection of DNA methylation density in genomic DNA, and of hemi-methylated regions in plasma cell-free DNA.
The Technology: Tumor detection via DNA methylation and hemi-methylation biomarkers.
This technology detects sDNA methylation density as well as hemi-methylated regions of genomic DNA and plasma cell free (cf) DNA to detect tumors.
    • Tags
      • 8
        DNA sequencing
      • 6
        Genotyping
      • 6
        DNA methylation
      • 6
        Assay
      • 5
        Genome
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    • Categories
      • 24
        Biology
      • 20
        Biotechnology
      • 20
        Branches of biology
      • 11
        Genetics
      • 6
        Genomics
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    • Inventors
      • 6
        Jingyue Ju
      • 4
        James J. Russo
      • 3
        Hui Zhou
      • 3
        Shiv Kumar
      • 3
        Xiaoxu Li
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    • Manager
      • 10
        Cynthia Lang
      • 9
        Joan Martinez
      • 2
        Greg Maskel
      • 1
        Dovina Qu
      • 1
        Jerry Kokoshka
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    • Departments
      • 8
        Genetics & Development
      • 7
        Chemical Engineering/Applied Chemistry
      • 5
        Institute for Cancer Genetics
      • 4
        Biomedical Informatics
      • 4
        Genome Center
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    • Divisions
      • 18
        Columbia University Medical Center (CUMC)
      • 8
        Fu Foundation School of Engineering and Applied Science (SEAS)
      • 5
        Faculty of the Arts & Sciences
      • 3
        Fu Foundation School of Engineering and
      • 2
        Mailman School Of Public Health (MSPH)
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