• Title of article

    Inflamatory bowel diseases as an intermediate stage between normal and cancer: A FTIR-microspectroscopy approach

  • Author/Authors

    Salman، Ahmad نويسنده , , Mordechai، Shaul نويسنده , , Argov، Shmuel نويسنده , , Sahu، Ranjit K. نويسنده , , Bernshtain، Evgenia نويسنده , , Shohat، Guy نويسنده , , Zelig، Udi نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    -383
  • From page
    384
  • To page
    0
  • Abstract
    Elucidation of the evolution of inflammatory bowel disease (IBD) to cancer by clinical symptoms and histopathology of biopsies is important. Fourier transform infrared microspectroscopy (FTIR-MSP) has shown promise as a diagnostic tool for distinction of normal and cancer cells and tissues. In the present work, FTIRMSP is used to evaluate IBD cases and to study the IR spectral characteristic with respect to cancer and normal tissues from formalin-fixed colonic biopsies from patients. Specific regions of the spectra were analyzed by statistical tools to study variations in metabolites that signified changes between the two pathological conditions: IBD and cancer. IBD tissues can be grouped with cancer or normal tissue using certain parameters such as phosphate content and RNA/DNA ratio as calculated from the spectra and show intermediate levels with regard to these metabolites. Further classification of the spectra by cluster analysis indicated which cases of Crohnʹs disease (3 of 10 cases) or ulcerative colitis (7 of 10 cases) were more likely to progress to cancer. The study exhibits that FTIR-MSP can detect gross biochemical changes in morphologically identical IBD and cancer tissues and suggest which cases of IBD may require further evaluation for carcinogenesis.
  • Keywords
    Fourier transform infrared microspectroscopy , disease progression , inflammatory bowel disease , colon cancer
  • Journal title
    BIOPOLYMERS (ORIGINAL RESEARCH ON BIOMOLECULES)
  • Serial Year
    2004
  • Journal title
    BIOPOLYMERS (ORIGINAL RESEARCH ON BIOMOLECULES)
  • Record number

    120863