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Matrix Metalloproteinase-1 Activation Contributes to Airway Smooth Muscle Growth and Asthma Severity
Shams-Un-Nisa Naveed1, Debbie Clements1, David J Jackson2,3
11 Division of Respiratory Medicine and Respiratory Research Unit, University of Nottingham, Nottingham, United Kingdom.
Rationale:
Matrix metalloproteinase-1 (MMP-1) and mast cells are present in the airways of people with asthma.
Objectives:
To investigate whether MMP-1 could be activated by mast cells and increase asthma severity.
Methods:
Patients with stable asthma and healthy control subjects underwent spirometry, methacholine challenge, and bronchoscopy, and their airway smooth muscle cells were grown in culture. A second asthma group and control subjects had symptom scores, spirometry, and bronchoalveolar lavage before and after rhinovirus-induced asthma exacerbations. Extracellular matrix was prepared from decellularized airway smooth muscle cultures. MMP-1 protein and activity were assessed.
Measurements And Main Results:
Airway smooth muscle cells generated pro-MMP-1, which was proteolytically activated by mast cell tryptase. Airway smooth muscle treated with activated mast cell supernatants produced extracellular matrix, which enhanced subsequent airway smooth muscle growth by 1.5-fold (P < 0.05), which was dependent on MMP-1 activation. In asthma, airway pro-MMP-1 was 5.4-fold higher than control subjects (P = 0.002). Mast cell numbers were associated with airway smooth muscle proliferation and MMP-1 protein associated with bronchial hyperresponsiveness. During exacerbations, MMP-1 activity increased and was associated with fall in FEV1 and worsening asthma symptoms.
Conclusions:
MMP-1 is activated by mast cell tryptase resulting in a proproliferative extracellular matrix. In asthma, mast cells are associated with airway smooth muscle growth, MMP-1 levels are associated with bronchial hyperresponsiveness, and MMP-1 activation are associated with exacerbation severity. Our findings suggest that airway smooth muscle/mast cell interactions contribute to asthma severity by transiently increasing MMP activation, airway smooth muscle growth, and airway responsiveness.
Insights
Matrix metalloproteinase-1 (MMP-1) activation by mast cells promotes airway smooth muscle growth and asthma severity. This study reveals MMP-1
Area of Science:
- * Pulmonary Medicine and Immunology
- * Cellular and Molecular Biology
Background:
- * Matrix metalloproteinase-1 (MMP-1) and mast cells are implicated in asthma pathogenesis.
- * The interaction between MMP-1 and mast cells in asthma severity requires further elucidation.
Purpose of the Study:
- * To investigate the activation of MMP-1 by mast cells.
- * To determine the role of MMP-1 activation in asthma severity and airway smooth muscle proliferation.
Main Methods:
- * Analysis of airway smooth muscle cells, mast cells, and extracellular matrix from asthma patients and healthy controls.
- * Assessment of MMP-1 protein levels, activity, and its interaction with mast cell tryptase.
- * Inclusion of spirometry, methacholine challenge, bronchoscopy, and bronchoalveolar lavage.
Main Results:
- * Mast cell tryptase activated pro-MMP-1, leading to extracellular matrix production that enhanced airway smooth muscle growth.
- * Asthma patients exhibited significantly higher airway pro-MMP-1 levels compared to controls.
- * MMP-1 levels correlated with bronchial hyperresponsiveness, and increased MMP-1 activity during exacerbations was linked to reduced FEV1 and symptom worsening.
Conclusions:
- * Mast cell-mediated MMP-1 activation promotes airway smooth muscle proliferation and contributes to asthma severity.
- * The findings highlight airway smooth muscle and mast cell interactions as a key mechanism in asthma.
- * Targeting MMP-1 activation may offer a therapeutic strategy for managing asthma exacerbations and severity.
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