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Histological Quantification to Determine Lung Fungal Burden in Experimental Aspergillosis
Published on: March 9, 2018
Eosinophil deficiency compromises lung defense against Aspergillus fumigatus
Lauren M Lilly1, Michaella Scopel, Michael P Nelson
1Department of Medicine, University of Alabama at Birmingham, Birmingham, Alabama, USA.
Abstract:
Exposure to the mold Aspergillus fumigatus may result in allergic bronchopulmonary aspergillosis, chronic necrotizing pulmonary aspergillosis, or invasive aspergillosis (IA), depending on the host's immune status. Neutrophil deficiency is the predominant risk factor for the development of IA, the most life-threatening condition associated with A. fumigatus exposure. Here we demonstrate that in addition to neutrophils, eosinophils are an important contributor to the clearance of A. fumigatus from the lung. Acute A. fumigatus challenge in normal mice induced the recruitment of CD11b+ Siglec F+ Ly-6G(lo) Ly-6C(neg) CCR3+ eosinophils to the lungs, which was accompanied by an increase in lung Epx (eosinophil peroxidase) mRNA levels. Mice deficient in the transcription factor dblGATA1, which exhibit a selective deficiency in eosinophils, demonstrated impaired A. fumigatus clearance and evidence of germinating organisms in the lung. Higher burden correlated with lower mRNA expression of Epx (eosinophil peroxidase) and Prg2 (major basic protein) as well as lower interleukin 1β (IL-1β), IL-6, IL-17A, granulocyte colony-stimulating factor (G-CSF), granulocyte-macrophage colony-stimulating factor (GM-CSF), and CXCL1 levels. However, examination of lung inflammatory cell populations failed to demonstrate defects in monocyte/macrophage, dendritic cell, or neutrophil recruitment in dblGATA1-deficient mice, suggesting that the absence of eosinophils in dlbGATA1-deficient mice was the sole cause of impaired lung clearance. We show that eosinophils generated from bone marrow have potent killing activity against A. fumigtaus in vitro, which does not require cell contact and can be recapitulated by eosinophil whole-cell lysates. Collectively, our data support a role for eosinophils in the lung response after A. fumigatus exposure.
Insights
Eosinophils, not just neutrophils, help clear Aspergillus fumigatus from the lungs. Mice lacking eosinophils showed impaired fungal clearance, indicating their crucial role in lung immunity against this mold.
Area of Science:
- Immunology
- Pulmonology
- Microbiology
Background:
- Exposure to Aspergillus fumigatus can cause severe lung diseases like invasive aspergillosis (IA).
- Neutrophil deficiency is a primary risk factor for IA.
- The role of other immune cells in clearing A. fumigatus is less understood.
Purpose of the Study:
- To investigate the role of eosinophils in the lung's immune response to Aspergillus fumigatus.
- To determine if eosinophils contribute to the clearance of A. fumigatus from the lungs.
Main Methods:
- Utilized a mouse model with a deficiency in the transcription factor dblGATA1, leading to a lack of eosinophils.
- Challenged mice with Aspergillus fumigatus and assessed fungal burden in the lungs.
- Measured mRNA levels of key inflammatory mediators and eosinophil-specific proteins.
- Evaluated inflammatory cell recruitment to the lungs.
- Performed in vitro killing assays with eosinophils against A. fumigatus.
Main Results:
- Mice deficient in eosinophils exhibited impaired clearance of A. fumigatus and evidence of fungal germination.
- Reduced expression of eosinophil peroxidase (Epx) and major basic protein (Prg2) was observed in deficient mice.
- No defects in neutrophil, monocyte/macrophage, or dendritic cell recruitment were found in eosinophil-deficient mice.
- Eosinophils demonstrated potent in vitro killing activity against A. fumigatus, independent of cell contact.
Conclusions:
- Eosinophils play a significant role in clearing Aspergillus fumigatus from the lungs.
- The absence of eosinophils leads to impaired fungal clearance and increased fungal burden.
- Eosinophils possess direct fungicidal activity against A. fumigatus.
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