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Isolation and In Vitro Culture of Murine and Human Alveolar Macrophages
Published on: April 20, 2018
Matrix metalloproteinase expression by human alveolar macrophages in relation to emphysema
Alison M Wallace1, Andrew J Sandford, John C English
1University of British Columbia (UBC) James Hogg iCAPTURE Centre, St. Paul's Hospital, Vancouver, BC, Canada. aw2264@columbia.edu
Abstract:
An abnormal increase in proteolytic enzymes is thought to play a key role in pulmonary emphysema. Alveolar macrophage proteolytic enzymes include cathepsin L, cathepsin S, matrix metalloproteinase 1, 9, and 12, and a number of studies have implicated these proteinases in the alveolar destruction that characterizes emphysema. The aim of this study was to investigate cathepsin L, cathepsin S, matrix metalloproteinase 1, 9, and 12 mRNA expression in alveolar macrophages isolated from patients with varying degrees of emphysema and to correlate their level of expression with measures of emphysema. Alveolar macrophages were isolated from fifty-four patients who underwent surgical resection for lung carcinoma. The level of mRNA expression was determined using real-time PCR. Emphysema was quantified using high-resolution CT scans. Alveolar macrophages were also cultured for 24 h and 48 h; the effect of proinflammatory mediators and promoter polymorphisms on expression was analyzed. There was a significant correlation between matrix metalloproteinase 1 mRNA expression and emphysema. A higher level of matrix metalloproteinase 1 mRNA was associated with more severe emphysema. Matrix metalloproteinase 12 mRNA expression was increased in current smokers as compared with former smokers. Furthermore, there was a negative correlation between matrix metalloproteinase 12 gene expression and carbon monoxide diffusing capacity. The matrix metalloproteinase 9 C-1562T polymorphism significantly influenced matrix metalloproteinase 9 mRNA expression in alveolar macrophages. These results suggest that alveolar macrophage matrix metalloproteinase 1 and 12 may have a role in the lung structural changes leading to the development of emphysema. Furthermore, these data provide evidence to support the concept that multiple proteinases, causing both elastin and collagen degradation, are important in the pathogenesis of pulmonary emphysema.
Insights
Matrix metalloproteinase 1 and 12 in alveolar macrophages are linked to emphysema severity. Increased matrix metalloproteinase 1 mRNA correlates with worse emphysema, while matrix metalloproteinase 12 is higher in smokers.
Area of Science:
- Pulmonary Medicine
- Molecular Biology
- Biochemistry
Background:
- Pulmonary emphysema pathogenesis involves increased proteolytic enzymes.
- Alveolar macrophages release key proteinases like cathepsin L, S, and matrix metalloproteinases (MMPs) 1, 9, 12.
- These proteinases are implicated in alveolar destruction characteristic of emphysema.
Purpose of the Study:
- To investigate mRNA expression of cathepsin L, S, and MMPs 1, 9, 12 in alveolar macrophages from emphysema patients.
- To correlate proteinase mRNA expression levels with emphysema severity.
- To analyze the influence of inflammatory mediators and gene polymorphisms on expression.
Main Methods:
- Alveolar macrophages isolated from 54 lung carcinoma patients.
- Real-time PCR used to quantify mRNA expression.
- High-resolution CT scans used for emphysema quantification.
Main Results:
- Significant correlation found between matrix metalloproteinase 1 mRNA expression and emphysema severity.
- Matrix metalloproteinase 12 mRNA expression was higher in current smokers.
- Matrix metalloproteinase 12 gene expression negatively correlated with carbon monoxide diffusing capacity.
- Matrix metalloproteinase 9 C-1562T polymorphism affected MMP-9 mRNA expression.
Conclusions:
- Alveolar macrophage MMP-1 and MMP-12 may contribute to lung structural changes in emphysema.
- Multiple proteinases degrading elastin and collagen are important in emphysema pathogenesis.
- Findings support a multifactorial enzymatic role in pulmonary emphysema development.
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