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Efficient Method for Imaging Murine Lungs that Preserves Spatial Dynamics of Fungal Spores in the Airways
Published on: December 13, 2024
Phagolysosomal Survival Enables Non-lytic Hyphal Escape and Ramification Through Lung Epithelium During Aspergillus
Constanze Seidel1, Sergio D Moreno-Velásquez1, Nagwa Ben-Ghazzi1
1Manchester Fungal Infection Group, Faculty of Biology, Medicine and Health, The University of Manchester, Manchester Academic Health Science Centre, Core Technology Facility, Manchester, United Kingdom.
Abstract:
Aspergillus fumigatus is the most important mould pathogen in immunosuppressed patients. Suboptimal clearance of inhaled spores results in the colonisation of the lung airways by invasive hyphae. The first point of contact between A. fumigatus and the host is the lung epithelium. In vitro and ex vivo studies have characterised critical aspects of the interaction of invasive hyphae on the surface of epithelial cells. However, the cellular interplay between internalised A. fumigatus and the lung epithelium remains largely unexplored. Here, we use high-resolution live-cell confocal microscopy, 3D rendered imaging and transmission electron microscopy to define the development of A. fumigatus after lung epithelium internalisation in vitro. Germination, morphology and growth of A. fumigatus were significantly impaired upon internalisation by alveolar (A549) and bronchial (16HBE) lung epithelial cells compared to those growing on the host surface. Internalised spores and germlings were surrounded by the host phagolysosome membrane. Sixty per cent of the phagosomes containing germlings were not acidified at 24 h post infection allowing hyphal development. During escape, the phagolysosomal membrane was not ruptured but likely fused to host plasma membrane allowing hyphal exit from the intact host cell in an non-lytic Manner. Subsequently, escaping hyphae elongated between or through adjacent epithelial lung cells without penetration of the host cytoplasm. Hyphal tips penetrating new epithelial cells were surrounded by the recipient cell plasma membrane. Altogether, our results suggest cells of lung epithelium survive fungal penetration because the phagolysosomal and plasma membranes are never breached and that conversely, fungal spores survive due to phagosome maturation failure. Consequently, fungal hyphae can grow through the epithelial cell layer without directly damaging the host. These processes likely prevent the activation of downstream immune responses alongside limiting the access of professional phagocytes to the invading fungal hypha. Further research is needed to investigate if these events also occur during penetration of fungi in endothelial cells, fibroblasts and other cell types.
Insights
Fungal spores survive lung epithelial cell entry by evading phagolysosome acidification. Aspergillus fumigatus hyphae grow through lung epithelium without causing cell death, potentially evading immune responses.
Area of Science:
- Medical Mycology
- Cell Biology
- Immunology
Background:
- Aspergillus fumigatus is a significant opportunistic fungal pathogen, particularly in immunocompromised individuals.
- Inhaled spores can colonize the lungs, leading to invasive disease.
- While interactions of external hyphae with lung epithelium are known, internal fungal behavior within epithelial cells is poorly understood.
Purpose of the Study:
- To investigate the cellular interactions and developmental fate of Aspergillus fumigatus following internalization by lung epithelial cells.
- To elucidate the mechanisms by which lung epithelial cells and A. fumigatus survive this interaction.
Main Methods:
- High-resolution live-cell confocal microscopy
- 3D rendered imaging
- Transmission electron microscopy
Main Results:
- Internalized Aspergillus fumigatus germination, morphology, and growth were significantly impaired within alveolar (A549) and bronchial (16HBE) lung epithelial cells compared to external growth.
- Internalized spores and germlings were contained within phagolysosomes; 60% of these phagosomes failed to acidify at 24 hours post-infection, allowing hyphal development.
- Fungal hyphae escaped host cells via non-lytic membrane fusion and grew between or through adjacent cells without breaching host cytoplasm, suggesting epithelial cell survival and fungal persistence.
Conclusions:
- Lung epithelial cells survive fungal penetration due to intact phagolysosomal and plasma membranes.
- Aspergillus fumigatus spores survive intracellularly due to impaired phagosome maturation and acidification.
- This interaction allows fungal hyphae to traverse the epithelial barrier without causing direct host cell damage, potentially limiting immune activation.
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