Invention Grant
US08150627B2 Methods and compositions for diagnosing lung cancer with specific DNA methylation patterns 有权
用特定DNA甲基化模式诊断肺癌的方法和组合物

  • Patent Title: Methods and compositions for diagnosing lung cancer with specific DNA methylation patterns
  • Patent Title (中): 用特定DNA甲基化模式诊断肺癌的方法和组合物
  • Application No.: US11259546
    Application Date: 2005-10-25
  • Publication No.: US08150627B2
    Publication Date: 2012-04-03
  • Inventor: Jian-Bing FanMarina Bibikova
  • Applicant: Jian-Bing FanMarina Bibikova
  • Applicant Address: US CA San Diego
  • Assignee: Illumina, Inc.
  • Current Assignee: Illumina, Inc.
  • Current Assignee Address: US CA San Diego
  • Agent Lisa de Berg
  • Main IPC: G01N33/48
  • IPC: G01N33/48 C12Q1/00
Methods and compositions for diagnosing lung cancer with specific DNA methylation patterns
Abstract:
The present invention provides a method for identification of differentially methylated genomic CpG dinucleotide sequences within genomic target sequences that are associated with cancer in an individual by obtaining a biological sample comprising genomic DNA from the individual measuring the level or pattern of methylated genomic CpG dinucleotide sequences for two or more of the genomic targets in the sample, and comparing the level of methylated genomic CpG dinucleotide sequences in the sample to a reference level of methylated genomic CpG dinucleotide sequences, wherein a difference in the level or pattern of methylation of the genomic CpG dinucleotide sequences in the sample compared to the reference level identifies differentially methylated genomic CpG dinucleotide sequences associated with cancer. As disclosed herein, the methods of the invention have numerous diagnostic and prognostic applications. The methods of the invention can be combined with a miniaturized array platform that allows for a high level of assay multiplexing and scalable automation for sample handling and data processing. Also provided by the invention are genomic targets and corresponding nucleic acid probes that are useful in the methods of the invention as they enable detection of differentially methylated genomic CpG dinucleotide sequences associated with adenocarcinomas of the lung.
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