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Published on: July 22, 2016
Mast cell chymase impairs bronchial epithelium integrity by degrading cell junction molecules of epithelial cells
Xiaoying Zhou1,2, Tao Wei1, Christopher W Cox2
1The School of Pharmaceutical Engineering and Life Science, Changzhou University, Jiangsu, China.
Background:
An increased degree of mast cell (MC) degranulation and damage to the epithelial lining are prominent features of bronchial asthma. In asthmatic airways, it seems likely that epithelial cells will be exposed to increased concentrations of proteases from MC, though their actions on the epithelium are still not very clear.
Methods:
Bronchial rings from human lung tissue or 16HBE cell monolayer were incubated with MC chymase in different doses or various inhibitors. The sections of paraffin-embedded tissue were haematoxylin-eosin stained and computerized by image analysis for epithelial damage-scale-evaluation; the cell viability, proliferation, adhesion and lactate dehydrogenase activity release were assayed; the expressions of gelatinases, cell junction molecules and structure proteins of 16HBE were examined.
Results:
Mast cell chymase was found to provoke profound changes in the morphology of bronchi epithelial layer. Following incubation with chymase, there was 40% reduction in the length of epithelium that was intact, with detachment of columnar epithelial cells and basal cells. Chymase reduced epithelial cell proliferation and induced cell detachment, which were associated with the changes in secretion and activation of matrix metalloproteinase-2/9. In intact epithelial cell layers, immunocytochemistry study revealed that chymase reduced the expressions of occludin, claudin-4, ZO-1, E-cadherin, focal adhesion kinase and cytokeratin. Overall data of this study indicated that MC chymase can influence tissue remodelling, disrupt epithelial cell junctions, inhibit wound healing and impair the barrier function of epithelium, resulting in dysfunction of airway wall and ECM remodelling in pathogenesis of asthma.
Conclusion:
Mast cell chymase plays a key role in inducing the damage to bronchial epithelium in asthma.
Insights
Mast cell chymase damages bronchial epithelium in asthma by disrupting cell junctions and impairing barrier function. This protease contributes to airway remodeling and dysfunction, highlighting its key role in asthma pathogenesis.
Area of Science:
- Pulmonary Medicine
- Cell Biology
- Immunology
Background:
- Bronchial asthma is characterized by mast cell degranulation and epithelial damage.
- Epithelial cells in asthmatic airways are exposed to mast cell proteases, but their effects are not fully understood.
Purpose of the Study:
- To investigate the effects of mast cell chymase on bronchial epithelial cells.
- To elucidate the mechanisms by which mast cell chymase contributes to airway remodeling in asthma.
Main Methods:
- Human bronchial rings and 16HBE cells were treated with mast cell chymase.
- Epithelial damage, cell viability, proliferation, adhesion, and protein expression were analyzed.
- Immunocytochemistry was used to examine junctional proteins and structural components.
Main Results:
- Mast cell chymase caused significant epithelial damage, including cell detachment and reduced epithelial length.
- Chymase inhibited cell proliferation and altered matrix metalloproteinase-2/9 activity.
- Expressions of occludin, claudin-4, ZO-1, E-cadherin, focal adhesion kinase, and cytokeratin were reduced.
Conclusions:
- Mast cell chymase disrupts bronchial epithelial barrier function and cell junctions.
- Chymase impairs wound healing and contributes to airway wall dysfunction and ECM remodeling in asthma.
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