• Title of article

    Observation of dendritic cell morphology under light, phase-contrast or confocal laser scanning microscopy

  • Author/Authors

    TAN, Yuen-Fen PPUKM-MAKNA Cancer Centre - Cell Banking Unit, Malaysia , LEONG, Chooi-Fun Universiti Kebangsaan Malaysia - Faculty of Medicine, Malaysia , CHEONG, Soon-Keng Universiti Tunku Abdul Rahman - Faculty of Medicine and Health Sciences, Malaysia

  • From page
    97
  • To page
    102
  • Abstract
    Dendritic cells (DCs) are professional antigen presenting cells of the immune system. They can be generated in vitro from peripheral blood monocytes supplemented with GM-CSF, IL-4 and TNF alpha. During induction, DCs will increase in size and acquire multiple cytoplasmic projections when compared to their precursor cells such as monocytes or haematopoietic stem cells which are usually round or spherical. Morphology of DCs can be visualized by conventional light microscopy after staining or phase-contrast inverted microscopy or confocal laser scanning microscopy. In this report, we described the morphological appearances of DCs captured using the above-mentioned techniques. We found that confocal laser scanning microscopy yielded DCs images with greater details but the operating cost for such a technique is high. On the other hand, the images obtained through light microscopy after appropriate staining or phase contrast microscopy were acceptable for identification purpose. Besides, these equipments are readily available in most laboratories and the cost of operation is affordable. Nevertheless, morphological identification is just one of the methods to characterise DCs. Other methods such as phenotypic expression markers and mixed leukocyte reactions are additional tools used in the characterisation of DCs.
  • Keywords
    Dendritic cells , inverted phase contrast microscope , light microscope , confocal laser scanning microscope
  • Journal title
    The Malaysian Journal of Pathology
  • Journal title
    The Malaysian Journal of Pathology
  • Record number

    2537743