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Published on: January 7, 2015
Mouse Mast Cell Protease-4 Recruits Leukocytes in the Inflammatory Phase of Surgically Wounded Skin
Julien Succar1, Giorgio Giatsidis1, Nanze Yu1
1Tissue Engineering and Wound Healing Laboratory, Division of Plastic Surgery, Department of Surgery Brigham and Women's Hospital-Harvard Medical School, Boston, Massachusetts.
Abstract:
Objective: Mouse mast cell protease-4 (mMCP-4, also known as chymase) has both pro- and anti-inflammatory roles depending on the disease model. However, its effects have not been studied in surgically wounded skin. Given the significant clinical applications of modulating the inflammatory response in wound healing, we examined the role of mMCP-4 and the effect of its inhibitor chymostatin on leukocyte and polymorphonuclear cell (PMN) recruitment in our skin model. Approach: Recruitment was assessed on day-1 postwounding of three groups of mice (n = 10 each): mMCP-4 null mice, wild-type (WT) mice treated with the mMCP-4 inhibitor chymostatin, and WT with no other intervention. Leukocytes were stained with CD-45 cell marker, and PMN cells were stained with chloroacetate esterase. Results: The WT mice had 27 ± 9 leukocytes per field compared with 11 ± 6 for the mMCP-4 nulls, a decrease of 60% (p = 0.03), whereas the chymostatin-injected group had a count comparable with the uninjected WT controls at 24 ± 9. The WT group had a PMN count of 96 ± 12 cells, compared with just 24 ± 8 in the mMCP-4 null group, a decrease of 75% (p = 0.001), whereas the chymostatin-treated group had 60 ± 18 cells, a decrease of 38% compared with the WT group (p = 0.03). Innovation: We showed that the inflammatory process can be influenced by impeding the arrival of PMNs into the surgically injured site using the mMCP-4 inhibitor chymostatin. Conclusion: Chymase contributes to the recruitment of white blood cells in surgically wounded skin.
Insights
Mouse mast cell protease-4 (mMCP-4) inhibition reduces white blood cell recruitment to skin wounds. This study shows chymase contributes to leukocyte and polymorphonuclear cell (PMN) infiltration in surgically wounded skin.
Area of Science:
- Immunology
- Dermatology
- Protease research
Background:
- Mouse mast cell protease-4 (mMCP-4), also known as chymase, exhibits complex roles in inflammation.
- Its specific function in surgically wounded skin remains uncharacterized.
- Understanding mMCP-4's role is crucial for developing targeted wound healing therapies.
Purpose of the Study:
- To investigate the role of mMCP-4 in leukocyte and polymorphonuclear cell (PMN) recruitment in a mouse model of surgically wounded skin.
- To evaluate the therapeutic potential of inhibiting mMCP-4 using chymostatin on inflammatory cell infiltration.
Main Methods:
- Comparison of leukocyte and PMN recruitment in mMCP-4 null mice, wild-type (WT) mice treated with chymostatin, and untreated WT mice.
- Assessment of cell recruitment one day post-skin wounding.
- Quantification of leukocytes using CD-45 staining and PMNs via chloroacetate esterase staining.
Main Results:
- mMCP-4 null mice exhibited a 60% reduction in leukocytes and a 75% decrease in PMNs compared to WT mice.
- Chymostatin treatment in WT mice significantly reduced PMN infiltration by 38% compared to untreated WT controls.
- Leukocyte counts in chymostatin-treated mice were comparable to untreated WT controls.
Conclusions:
- Chymase (mMCP-4) plays a significant role in attracting white blood cells to surgically wounded skin.
- Inhibiting mMCP-4 with chymostatin effectively reduces polymorphonuclear cell (PMN) recruitment to the wound site.
- Targeting mMCP-4 presents a potential strategy for modulating inflammation in wound healing.
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