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Published on: May 10, 2024
Nonpathogenic, environmental fungi induce activation and degranulation of human eosinophils
Yoshinari Inoue1, Yoshinori Matsuwaki, Seung-Heon Shin
1Department of Immunology, Mayo Clinic, Rochester, MN 55905, USA.
Abstract:
Eosinophils and their products are probably important in the pathophysiology of allergic diseases, such as bronchial asthma, and in host immunity to certain organisms. An association between environmental fungal exposure and asthma has been long recognized clinically. Although products of microorganisms (e.g., lipopolysaccharides) directly activate certain inflammatory cells (e.g., macrophages), the mechanism(s) that triggers eosinophil degranulation is unknown. In this study we investigated whether human eosinophils have an innate immune response to certain fungal organisms. We incubated human eosinophils with extracts from seven environmental airborne fungi (Alternaria alternata, Aspergillus versicolor, Bipolaris sorokiniana, Candida albicans, Cladosporium herbarum, Curvularia spicifera, and Penicillium notatum). Alternaria and Penicillium induced calcium-dependent exocytosis (e.g., eosinophil-derived neurotoxin release) in eosinophils from normal individuals. Alternaria also strongly induced other activation events in eosinophils, including increases in intracellular calcium concentration, cell surface expression of CD63 and CD11b, and production of IL-8. Other fungi did not induce eosinophil degranulation, and Alternaria did not induce neutrophil activation, suggesting specificity for fungal species and cell type. The Alternaria-induced eosinophil degranulation was pertussis toxin sensitive and desensitized by preincubating cells with G protein-coupled receptor agonists, platelet-activating factor, or FMLP. The eosinophil-stimulating activity in Alternaria extract was highly heat labile and had an M(r) of approximately 60 kDa. Thus, eosinophils, but not neutrophils, possess G protein-dependent cellular activation machinery that directly responds to an Alternaria protein product(s). This innate response by eosinophils to certain environmental fungi may be important in host defense and in the exacerbation of inflammation in asthma and allergic diseases.
Insights
Human eosinophils directly respond to certain fungi, like Alternaria, triggering degranulation and inflammation. This innate immune response may worsen asthma and allergic diseases.
Area of Science:
- Immunology
- Allergology
- Microbiology
Background:
- Eosinophils are implicated in allergic diseases like asthma.
- Environmental fungal exposure is linked to asthma.
- Mechanisms of eosinophil degranulation by fungi are unknown.
Purpose of the Study:
- Investigate innate immune responses of human eosinophils to environmental fungi.
- Identify fungal species that trigger eosinophil activation.
Main Methods:
- Incubation of human eosinophils with extracts from seven airborne fungi.
- Measurement of eosinophil degranulation (e.g., release of eosinophil-derived neurotoxin).
- Assessment of intracellular calcium, CD63/CD11b expression, IL-8 production, and pertussis toxin sensitivity.
Main Results:
- Alternaria alternata and Penicillium notatum induced calcium-dependent eosinophil degranulation.
- Alternaria strongly activated eosinophils, increasing calcium, CD63/CD11b, and IL-8 production.
- Fungal activation was specific to species and cell type; Alternaria did not activate neutrophils.
Conclusions:
- Human eosinophils possess G protein-dependent machinery to directly respond to Alternaria protein products.
- This innate eosinophil response to fungi may contribute to host defense and allergic inflammation.
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