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Updated: May 3, 2026

Isolation of Peritoneum-derived Mast Cells and Their Functional Characterization with Ca2+-imaging and Degranulation Assays
Published on: July 4, 2018
Mouse mast cell proteases 4 and 5 mediate epidermal injury through disruption of tight junctions
Lora G Bankova1, Cecilia Lezcano, Gunnar Pejler
1Division of Rheumatology, Immunology and Allergy, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115;
Abstract:
We previously established a mast cell (MC)-dependent thermal injury model in mice with ulceration and scar formation that depended on nonredundant functions of mouse MC protease (mMCP)4 and mMCP5. We hypothesized that MC activation is an early event and now find by histology that exocytosis of granule contents occurred by 2 min after thermal injury in wild-type (WT) C57BL/6 mice and in the mMCP4- or mMCP5-deficient mice. The degranulation was equivalent for MCs in the dermis and hypodermis of all three strains, but only the WT mice showed an appreciable increase in epidermal thickness. There was no loss of total MCs, partially degranulated plus intact, during the 4 h of observation. By electron microscopy, MCs in all strains showed early zonal degranulation at 30 s with marked progression in magnitude by 120 s and no mitochondrial injury or cellular necrosis. Concomitantly there was an increase in intercellular spaces indicative of tight junction (TJ) disruption in WT mice but not in the mMCP4- or mMCP5-deficient strains. The desmosomes were intact in all strains. Immunodetection of the TJ protein claudin 4 in WT and mMCP5-deficient mice indicated a significant reduction after scald injury whereas mMCP4(-/-) mice showed no significant changes. Taken together, these findings reveal that a second-degree burn injury can initiate an immediate novel zonal degranulation of MCs throughout all skin layers and a disruption of the epidermal TJs dependent on the nonredundant presence of mMCP4 and mMCP5.
Insights
Mast cells (MCs) rapidly degranulate after thermal injury. Specific proteases, mouse mast cell proteases (mMCP)4 and mMCP5, are crucial for disrupting skin barrier function and epidermal tight junctions.
Area of Science:
- Dermatology
- Immunology
- Cell Biology
Background:
- Mast cells (MCs) play a role in thermal injury responses.
- Mouse mast cell proteases (mMCP)4 and mMCP5 have nonredundant functions in injury models.
Purpose of the Study:
- To investigate the early events of mast cell activation following thermal injury.
- To determine the role of mMCP4 and mMCP5 in mast cell degranulation and skin barrier disruption.
Main Methods:
- Histological analysis of mouse skin at various time points post-thermal injury.
- Electron microscopy to examine mast cell morphology and intercellular spaces.
- Immunodetection of tight junction protein claudin 4.
Main Results:
- Mast cell degranulation occurred within 2 minutes of thermal injury in wild-type and knockout mice.
- Epidermal thickening was observed only in wild-type mice.
- Tight junction disruption was evident in wild-type mice but not in mMCP4- or mMCP5-deficient mice.
- Claudin 4 levels significantly decreased in wild-type and mMCP5-deficient mice, but not in mMCP4-deficient mice.
Conclusions:
- Thermal injury triggers immediate, zonal mast cell degranulation.
- mMCP4 and mMCP5 are essential for mast cell-mediated disruption of epidermal tight junctions.
- These findings highlight a novel mechanism of skin barrier impairment following burns.
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