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Published on: May 26, 2023
Montelukast prevents microparticle-induced inflammatory and functional alterations in human bronchial smooth muscle
Stefano Fogli1, Fabio Stefanelli, Tommaso Neri
1Department of Pharmacy, University of Pisa, Pisa, Italy.
Abstract:
Microparticles (MPs) are membrane fragments that may play a role in the pathogenesis of chronic respiratory diseases. We aimed to investigate whether human monocytes/macrophage-derived MPs could induce a pro-inflammatory phenotype in human bronchial smooth muscle cells (BSMC) and the effect of montelukast in this setting. Experimental methods included isolation of human monocytes/macrophages and generation of monocyte-derived MPs, RT-PCR analysis of gene expression, immunoenzymatic determination of pro-inflammatory factor release, bioluminescent assay of intracellular cAMP levels and electromobility shift assay analysis of NF-κB nuclear translocation. Stimulation of human BSMC with monocyte-derived MPs induced a pro-inflammatory switch in human BSMC by inducing gene expression (COX-2 and IL-8), protein release in the supernatant (PGE2 and IL-8), and heterologous β2-adrenoceptor desensitization. The latter effect was most likely related to autocrine PGE2 since pre-treatment with COX inhibitors restored the ability of salbutamol to induce cAMP synthesis in desensitized cells. Challenge with MPs induced nuclear translocation of NF-κB and selective NF-κB inhibition decreased MP-induced cytokine release in the supernatant. Montelukast treatment prevented IL-8 release and heterologous β2-adrenoceptor desensitization in human BSMC exposed to monocyte-derived MPs by blocking NF-κB nuclear translocation. These findings provide evidence on the role of human monocyte-derived MPs in the airway smooth muscle phenotype switch as a novel potential mechanism in the progression of chronic respiratory diseases and on the protective effects by montelukast in this setting.
Insights
Human monocyte-derived microparticles (MPs) promote airway inflammation and smooth muscle dysfunction in chronic respiratory diseases. Montelukast treatment mitigates these effects by inhibiting NF-κB activation.
Area of Science:
- Respiratory Medicine
- Immunology
- Cell Biology
Background:
- Microparticles (MPs) are implicated in chronic respiratory disease pathogenesis.
- Monocyte/macrophage-derived MPs may influence airway smooth muscle cells (BSMC).
Purpose of the Study:
- To investigate if monocyte/macrophage-derived MPs induce a pro-inflammatory phenotype in human BSMC.
- To determine the effect of montelukast on MP-induced changes in BSMC.
Main Methods:
- Isolation of human monocytes/macrophages and generation of MPs.
- RT-PCR, immunoassays, cAMP assays, and NF-κB translocation analysis.
- Stimulation of human BSMC with monocyte-derived MPs and montelukast treatment.
Main Results:
- MPs induced pro-inflammatory gene expression (COX-2, IL-8) and protein release (PGE2, IL-8) in BSMC.
- MPs caused heterologous β2-adrenoceptor desensitization, linked to autocrine PGE2.
- MPs induced NF-κB nuclear translocation, which mediated cytokine release.
- Montelukast prevented IL-8 release and β2-adrenoceptor desensitization by inhibiting NF-κB.
Conclusions:
- Human monocyte-derived MPs induce airway smooth muscle phenotype switching, a potential mechanism in chronic respiratory diseases.
- Montelukast exhibits protective effects by blocking NF-κB activation and mitigating MP-induced inflammation and desensitization.
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