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Published on: May 27, 2015
IgE-mediated anaphylactic degranulation of isolated human skin mast cells
A M Dvorak1, W Massey, J Warner
1Department of Pathology, Beth Israel Hospital, Boston, MA 02215.
Insights
Isolated human skin mast cells (HSMC) exhibit distinct ultrastructural features and degranulation patterns compared to lung or gut mast cells. These findings validate HSMC as a reliable model for studying mast cell function and morphology.
Area of Science:
- Immunology
- Cell Biology
- Dermatology
Background:
- Human mast cells (HMCs) play a crucial role in allergic and inflammatory responses.
- Understanding the heterogeneity of mast cells from different tissues is essential for targeted therapeutic strategies.
- Isolated human skin mast cells (HSMC) offer a valuable model for studying mast cell behavior.
Purpose of the Study:
- To characterize the ultrastructural morphology of isolated human skin mast cells (HSMC).
- To investigate the degranulation process of HSMC following IgE-mediated stimulation.
- To compare the characteristics of HSMC with mast cells from other human tissues.
Main Methods:
- Isolation and overnight culture of human skin mast cells (HSMC).
- Electron microscopy for ultrastructural analysis of granulated and degranulating cells.
- Measurement of histamine release as a functional assay for degranulation.
Main Results:
- Isolated HSMC preserved their ultrastructure, with crystal granules being the most prevalent pattern.
- Anaphylactic degranulation involved granule extrusion through plasma membrane pores, with a maximum of 24% histamine release.
- Morphological differences were observed between HSMC and isolated human lung mast cells, particularly in granule type and degranulation mechanisms.
Conclusions:
- The ultrastructural morphology of isolated HSMC mirrors that of in situ skin mast cells, validating their use in research.
- HSMC display unique degranulation characteristics, including granule extrusion, distinct from lung mast cells.
- These findings highlight mast cell heterogeneity and support the use of isolated HSMC for correlative functional and morphological studies.
Abstract:
Isolated human skin mast cells (HSMC) were prepared and cultured overnight before functional and electron microscopic studies. Mast cell suspensions were examined after stimulation with anti-IgE to produce anaphylactic degranulation or examined in buffer-incubated controls. Histamine release was measured in replicate samples. Control, isolated HSMC studied by electron microscopy were well preserved and fully granulated. Although all granule patterns reported for human mast cells were found, crystal granules were the most prevalent, as is true for HSMC in situ. Individual mast cells containing both crystal and scroll granules occurred. Lipid bodies were rare, as in HSMC in situ. Control, isolated mast cells did not express granule changes associated with either piecemeal degranulation or recovery during wound healing in situ; nor were morphologic changes of anaphylactic degranulation present. Spontaneous histamine release was 0% in control samples. Anaphylactic degranulation of isolated HSMC was accompanied by 24% maximum histamine release and characteristically showed extrusion of altered, membrane-free granules through multiple pores in the plasma membrane to the exterior of the cell. Other morphologic aspects of anaphylactic degranulation, as expressed in isolated human lung mast cells, were also present. These events included granule swelling, fusion, alteration of matrix contents, degranulation channel formation, pore formation, and shedding of granules, membranes, and surface processes. The ultrastructural morphology of isolated HSMC and their IgE-mediated degranulation shows some differences from similar studies of isolated human lung mast cells and of human lung and gut mast cells in biopsy samples. These differences include crystal granules as the predominant granule pattern, minor numbers of lipid bodies, and extrusion of granules during anaphylactic degranulation as characteristic for HSMC. By contrast, isolated human lung and gut mast cells have more scroll granules and particle granules, respectively, and more lipid bodies. In isolated human lung mast cells, anaphylactic degranulation is almost exclusively an intracellular fusion event characterized by the formation of complex degranulation channels within which altered granule matrix materials solubilize. In addition to morphologic differences between mast cells of skin, lung, or gut origin, functional differences have also been reported among mast cells of these organs. The ultrastructural morphology of isolated HSMC is identical to that of skin mast cells in biopsy samples, thereby validating the usefulness of this new source of HSMC for correlative functional and morphologic studies.
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