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Live Imaging of Antifungal Activity by Human Primary Neutrophils and Monocytes in Response to A. fumigatus
Published on: April 19, 2017
Healthy human T-Cell Responses to Aspergillus fumigatus antigens
Neelkamal Chaudhary1, Janet F Staab, Kieren A Marr
1School of Medicine, Johns Hopkins University, Baltimore, Maryland, USA.
Background:
Aspergillus fumigatus is associated with both invasive and allergic pulmonary diseases, in different hosts. The organism is inhaled as a spore, which, if not cleared from the airway, germinates into hyphal morphotypes that are responsible for tissue invasion and resultant inflammation. Hyphae secrete multiple products that function as antigens, evoking both a protective (T(H)1-T(H)17) and destructive allergic (T(H)2) immunity. How Aspergillus allergens (Asp f proteins) participate in the development of allergic sensitization is unknown.
Methodology/Principal Findings:
To determine whether Asp f proteins are strictly associated with T(H)2 responses, or represent soluble hyphal products recognized by healthy hosts, human T cell responses to crude and recombinant products were characterized by ELISPOT. While responses (number of spots producing IFN-gamma, IL-4 or IL-17) to crude hyphal antigen preparations were weak, responses to recombinant Asp f proteins were higher. Recombinant allergens stimulated cells to produce IFN-gamma more so than IL-4 or IL-17. Volunteers exhibited a diverse CD4+ and CD8+ T cell antigen recognition profile, with prominent CD4 T(H)1-responses to Asp f3 (a putative peroxismal membrane protein), Asp f9/16 (cell wall glucanase), Asp f11 (cyclophilin type peptidyl-prolyl isomerase) and Asp f22 (enolase). Strong IFN-gamma responses were reproduced in most subjects tested over 6 month intervals.
Conclusions:
Products secreted after conidial germination into hyphae are differentially recognized by protective T cells in healthy, non-atopic individuals. Defining the specificity of the human T cell repertoire, and identifying factors that govern early responses may allow for development of novel diagnostics and therapeutics for both invasive and allergic Aspergillus diseases.
Insights
Healthy individuals recognize Aspergillus fumigatus allergens through T helper 1 (T(H)1) cell responses. Understanding these protective immune reactions to fungal allergens can inform new diagnostics and treatments for Aspergillus-related lung diseases.
Area of Science:
- Immunology
- Mycology
- Pulmonary Medicine
Background:
- Aspergillus fumigatus causes invasive and allergic lung diseases.
- Inhaled spores germinate into hyphae, leading to tissue invasion and inflammation.
- Hyphae release antigens that trigger protective (T(H)1-T(H)17) and allergic (T(H)2) immune responses.
Purpose of the Study:
- To investigate how Aspergillus allergens (Asp f proteins) contribute to allergic sensitization.
- To determine if Asp f proteins are exclusively linked to T(H)2 responses or recognized by healthy hosts.
- To characterize human T cell responses to crude and recombinant Aspergillus products.
Main Methods:
- ELISPOT assays were used to analyze human T cell responses.
- Crude and recombinant Aspergillus hyphal antigens were tested.
- T cell responses (IFN-gamma, IL-4, IL-17) from CD4+ and CD8+ T cells were measured.
Main Results:
- Recombinant Asp f proteins elicited stronger T cell responses than crude antigens.
- T cells predominantly produced IFN-gamma (T(H)1 response) rather than IL-4 or IL-17.
- Specific Asp f proteins (Asp f3, Asp f9/16, Asp f11, Asp f22) induced prominent CD4+ T(H)1 responses in most subjects.
- Strong IFN-gamma responses were consistent over 6-month intervals.
Conclusions:
- Secreted hyphal products are recognized by protective T cells in healthy individuals.
- Defining T cell specificity to Aspergillus allergens is crucial.
- Identifying factors influencing early immune responses can lead to novel diagnostics and therapeutics for Aspergillus-related diseases.
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