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Neutrophil-Derived Exosomes: A New Mechanism Contributing to Airway Smooth Muscle Remodeling
Amandine Vargas1, Florence Roux-Dalvai2, Arnaud Droit2
11 Department of Clinical Sciences, Faculty of Veterinary Medicine, Université de Montréal, Saint-Hyacinthe, Quebec, Canada; and.
Abstract:
Neutrophils infiltrate the airways of patients with asthma of all severities, yet their role in the pathogenesis of asthma and their contribution to airway remodeling is largely unknown. We hypothesized that neutrophils modulate airway smooth muscle (ASM) proliferation in asthma by releasing bioactive exosomes. These newly discovered nano-sized vesicles have the capacity to modulate immune responses, cell migration, cell differentiation, and other aspects of cell-to-cell communication. The aim of the study is to determine whether bioactive exosomes are released by neutrophils, and, if so, characterize their proteomic profile and evaluate their capacity to modulate ASM cell proliferation. Exosomes were isolated from equine neutrophil supernatants by differential centrifugation and filtration methods, followed by size-exclusion chromatography. Nanovesicles were characterized using electron microscopy, particle size determination, and proteomic analyses. Exosomes were cocultured with ASM cells and analyzed for exosome internalization by confocal microscopy. ASM proliferation was measured using an impedance-based system. Neutrophils release exosomes that have characteristic size, morphology, and exosomal markers. We identified 271 proteins in exosomes from both LPS and unstimulated neutrophils, and 16 proteins that were differentially expressed, which carried proteins associated with immune response and positive regulation of cell communication. Furthermore, neutrophil-derived exosomes were rapidly internalized by ASM cells and altered their proliferative properties. Upon stimulation of LPS, neutrophil-derived exosomes can enhance the proliferation of ASM cells and could therefore play an important role in the progression of asthma and promoting airway remodeling in severe and corticosteroid-insensitive patients with asthma.
Insights
Neutrophils release exosomes that promote airway smooth muscle proliferation, potentially driving asthma progression and airway remodeling, especially in severe cases.
Area of Science:
- Cell Biology
- Immunology
- Respiratory Medicine
Background:
- Neutrophils are present in asthma but their role in airway remodeling is unclear.
- Bioactive exosomes, nano-sized vesicles involved in cell communication, are a potential mechanism for neutrophil influence.
Purpose of the Study:
- To determine if neutrophils release bioactive exosomes.
- To characterize these exosomes and assess their impact on airway smooth muscle (ASM) cell proliferation.
Main Methods:
- Exosomes isolated from equine neutrophils via differential centrifugation, filtration, and size-exclusion chromatography.
- Characterization included electron microscopy, particle size analysis, and proteomics.
- ASM cells were co-cultured with exosomes, and proliferation was measured using an impedance-based system.
Main Results:
- Neutrophils release exosomes with typical size, morphology, and markers.
- Exosomes contained proteins involved in immune response and cell communication.
- Neutrophil-derived exosomes were internalized by ASM cells and enhanced their proliferation, particularly after LPS stimulation.
Conclusions:
- Neutrophil-derived exosomes can enhance ASM cell proliferation.
- These exosomes may contribute to asthma pathogenesis and airway remodeling in severe, corticosteroid-insensitive asthma.
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