AI Article Synopsis

  • Identifying biomarkers for early cancer detection is crucial for improving diagnosis and treatment outcomes, specifically focusing on esophageal squamous cell carcinoma (ESCC) in this study.
  • Researchers analyzed DNA methylation patterns in cancer cells and plasma cell-free DNA from early-stage ESCC patients to construct a reliable methylation profile.
  • Seven specific CG sites showed significant hypermethylation in three genes (CASZ1, CDH13, and ING2), demonstrating 100% sensitivity and specificity for potential non-invasive diagnosis of esophageal cancer through blood samples.

Article Abstract

Identifying sensitive and specific biomarkers for early detection of cancer is immensely imperative for early diagnosis and treatment and better clinical outcome of cancer patients. This study aimed to construct a specific DNA methylation pattern of cancer suppressor genes and explore the feasibility of applying cell-free DNA based methylation as a biomarker for early diagnosis of esophageal squamous cell carcinoma (ESCC). We recruited early stage ESCC patients from Yangzhong County, China. The Illumina Infinium 450K Methylation BeadChip was used to construct a genome-wide DNA methylation profile. Then, differentiated genes were selected for the validation study using the Sequenom MassARRAY platform. The frequency of methylation was compared between cancer tissues, matched cell-free DNAs and normal controls. The specific methylation profiles were constructed, and the sensitivity and specificity were calculated. Seven CG sites in three genes CASZ1, CDH13 and ING2 were significantly hypermethylated in ESCC as compared with normal controls. A significant correlation was found between the methylation of DNA extracted from cancer tissues and matched plasma cell-free DNA, either for individual CG site or for cumulative methylation analysis. The sensitivity and specificity reached 100% at an appropriate cut-point using these specific methylation biomarkers. This study revealed that aberrant DNA methylation is a promising biomarker for molecular diagnosis of esophageal cancer. Hypermethylation of CASZ1, CDH13 and ING2 detected in plasma cell-free DNA can be applied as a potential noninvasive biomarker for diagnosis of esophageal cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6283827PMC
http://dx.doi.org/10.7555/JBR.32.20170065DOI Listing

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Article Synopsis
  • Identifying biomarkers for early cancer detection is crucial for improving diagnosis and treatment outcomes, specifically focusing on esophageal squamous cell carcinoma (ESCC) in this study.
  • Researchers analyzed DNA methylation patterns in cancer cells and plasma cell-free DNA from early-stage ESCC patients to construct a reliable methylation profile.
  • Seven specific CG sites showed significant hypermethylation in three genes (CASZ1, CDH13, and ING2), demonstrating 100% sensitivity and specificity for potential non-invasive diagnosis of esophageal cancer through blood samples.
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