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Updated: Sep 5, 2025

Assessing Anti-fungal Activity of Isolated Alveolar Macrophages by Confocal Microscopy
Published on: July 9, 2014
Characterization of Aspergillus terreus Accessory Conidia and Their Interactions With Murine Macrophages
Isabell Henß1, Christoph Kleinemeier1, Lea Strobel2
1Institute for Infectious Diseases and Zoonoses, Ludwig-Maximilians-University Munich, Munich, Germany.
Abstract:
All Aspergillus species form phialidic conidia (PC) when the mycelium is in contact with the air. These small, asexual spores are ideally suited for an airborne dissemination in the environment. Aspergillus terreus and a few closely related species from section Terrei can additionally generate accessory conidia (AC) that directly emerge from the hyphal surface. In this study, we have identified galactomannan as a major surface antigen on AC that is largely absent from the surface of PC. Galactomannan is homogeneously distributed over the entire surface of AC and even detectable on nascent AC present on the hyphal surface. In contrast, β-glucans are only accessible in distinct structures that occur after separation of the conidia from the hyphal surface. During germination, AC show a very limited isotropic growth that has no detectable impact on the distribution of galactomannan. The AC of the strain used in this study germinate much faster than the corresponding PC, and they are more sensitive to desiccation than PC. During infection of murine J774 macrophages, AC are readily engulfed and trigger a strong tumor necrosis factor-alpha (TNFα) response. Both processes are not hampered by the presence of laminarin, which indicates that β-glucans only play a minor role in these interactions. In the phagosome, we observed that galactomannan, but not β-glucan, is released from the conidial surface and translocates to the host cell cytoplasm. AC persist in phagolysosomes, and many of them initiate germination within 24 h. In conclusion, we have identified galactomannan as a novel and major antigen on AC that clearly distinguishes them from PC. The role of this fungal-specific carbohydrate in the interactions with the immune system remains an open issue that needs to be addressed in future research.
Insights
This study identifies galactomannan as a key surface antigen on accessory conidia (AC) of Aspergillus, distinguishing them from phialidic conidia (PC). This finding impacts understanding fungal-host interactions and immune responses.
Area of Science:
- Medical Mycology
- Immunology
- Microbial Pathogenesis
Background:
- Aspergillus species produce asexual spores for dissemination.
- Accessory conidia (AC) are unique spore types produced by some Aspergillus species, including Aspergillus terreus.
- The surface composition of AC and their interaction with the host immune system are not fully understood.
Purpose of the Study:
- To identify and characterize major surface antigens on AC.
- To compare the properties of AC with phialidic conidia (PC).
- To investigate the role of AC surface components in host-pathogen interactions.
Main Methods:
- Immunological detection of surface antigens on AC and PC.
- Analysis of spore germination and desiccation sensitivity.
- Macrophage infection assays to study host cell response and fungal survival.
- Confocal microscopy to track antigen localization during phagocytosis.
Main Results:
- Galactomannan was identified as a major surface antigen on AC, largely absent from PC.
- AC exhibit faster germination and higher desiccation sensitivity compared to PC.
- AC trigger a strong TNFα response in macrophages, independent of β-glucans.
- Galactomannan is released from AC within phagolysosomes, while β-glucans remain associated with the spore structure.
Conclusions:
- Galactomannan is a novel distinguishing antigen on AC, differentiating them from PC.
- The interaction of AC with macrophages involves galactomannan and triggers an immune response.
- The role of galactomannan in fungal pathogenesis and immune evasion warrants further investigation.
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