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Updated: Jun 14, 2025

Histological Quantification to Determine Lung Fungal Burden in Experimental Aspergillosis
Published on: March 9, 2018
IFN Receptor 2 Regulates TNF-α-Mediated Damaging Inflammation during Aspergillus Pulmonary Infection
Agnieszka Rynda-Apple1, Jazmin Reyes Servin2, Julianna Lenz2
1Department of Microbiology and Cell Biology, Montana State University, Bozeman, MT.
Abstract:
The increased incidence of invasive pulmonary aspergillosis, caused by Aspergillus fumigatus, occurring in patients infected with severe influenza or SARS-CoV-2, suggests that antiviral immune responses create an environment permissive to fungal infection. Our recent evidence suggests that absence of the type I IFN receptor 2 subunit (IFNAR2) of the heterodimeric IFNAR1/2 receptor is allowing for this permissive immune environment of the lung through regulation of damage responses. Because damage is associated with poor outcome to invasive pulmonary aspergillosis, this suggested that IFNAR2 may be involved in A. fumigatus susceptibility. In this study, we determined that absence of IFNAR2 resulted in increased inflammation, morbidity, and damage in the lungs in response to A. fumigatus challenge, whereas absence of IFNAR1 did not. Although the Ifnar2-/- mice had increased morbidity, we found that the Ifnar2-/- mice cleared more conidia compared with both wild-type and Ifnar1-/- mice. However, this early clearance did not prevent invasive disease from developing in the Ifnar2-/- mice as infection progressed. Importantly, by altering the inflamed environment of the Ifnar2-/- mice early during A. fumigatus infection, by neutralizing TNF-α, we were able to reduce the morbidity and fungal clearance in these mice back to wild-type levels. Together, our results establish a distinct role for IFNAR2 in regulating host damage responses to A. fumigatus and contributing to an A. fumigatus-permissive environment through regulation of inflammation. Specifically, our data reveal a role for IFNAR2 in regulating TNF-α-mediated damage and morbidity during A. fumigatus infection.
Insights
The absence of type I interferon receptor 2 (IFNAR2) exacerbates lung damage and inflammation during Aspergillus fumigatus infections, increasing susceptibility. Neutralizing TNF-α partially restored normal responses in Ifnar2-/- mice.
Area of Science:
- Immunology
- Mycology
- Pulmonology
Background:
- Invasive pulmonary aspergillosis (IPA) incidence rises in patients with severe influenza or SARS-CoV-2.
- Antiviral immune responses may create lung environments permissive to fungal infections.
- Absence of type I interferon receptor 2 subunit (IFNAR2) is implicated in permissive immune environments via damage response regulation.
Purpose of the Study:
- To investigate the role of IFNAR2 in host susceptibility to Aspergillus fumigatus.
- To determine if IFNAR2 absence contributes to an Aspergillus fumigatus-permissive lung environment.
Main Methods:
- Utilized a mouse model to study the effects of Aspergillus fumigatus challenge in the absence of IFNAR2 and IFNAR1.
- Assessed inflammation, morbidity, lung damage, and fungal clearance.
- Investigated the impact of neutralizing TNF-α on host responses in Ifnar2-/- mice.
Main Results:
- Absence of IFNAR2, but not IFNAR1, led to increased lung inflammation, morbidity, and damage following A. fumigatus challenge.
- Ifnar2-/- mice exhibited enhanced early conidia clearance but still developed invasive disease.
- Neutralizing TNF-α in Ifnar2-/- mice reduced morbidity and normalized fungal clearance to wild-type levels.
Conclusions:
- IFNAR2 plays a critical role in regulating host damage responses to A. fumigatus.
- IFNAR2 contributes to an A. fumigatus-permissive environment by modulating inflammation, particularly TNF-α-mediated responses.
- Targeting TNF-α may be a therapeutic strategy for managing IPA in specific contexts.
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