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Updated: May 5, 2026

Histological Quantification to Determine Lung Fungal Burden in Experimental Aspergillosis
Published on: March 9, 2018
Fungal cell gigantism during mammalian infection
Oscar Zaragoza1, Rocío García-Rodas, Joshua D Nosanchuk
1Servicio de Micología, Centro Nacional de Microbiología, Instituto de Salud Carlos III, Majadahonda, Madrid, Spain. ozaragoza@isciii.es
Abstract:
The interaction between fungal pathogens with the host frequently results in morphological changes, such as hyphae formation. The encapsulated pathogenic fungus Cryptococcus neoformans is not considered a dimorphic fungus, and is predominantly found in host tissues as round yeast cells. However, there is a specific morphological change associated with cryptococcal infection that involves an increase in capsule volume. We now report another morphological change whereby gigantic cells are formed in tissue. The paper reports the phenotypic characterization of giant cells isolated from infected mice and the cellular changes associated with giant cell formation. C. neoformans infection in mice resulted in the appearance of giant cells with cell bodies up to 30 microm in diameter and capsules resistant to stripping with gamma-radiation and organic solvents. The proportion of giant cells ranged from 10 to 80% of the total lung fungal burden, depending on infection time, individual mice, and correlated with the type of immune response. When placed on agar, giant cells budded to produce small daughter cells that traversed the capsule of the mother cell at the speed of 20-50 m/h. Giant cells with dimensions that approximated those in vivo were observed in vitro after prolonged culture in minimal media, and were the oldest in the culture, suggesting that giant cell formation is an aging-dependent phenomenon. Giant cells recovered from mice displayed polyploidy, suggesting a mechanism by which gigantism results from cell cycle progression without cell fission. Giant cell formation was dependent on cAMP, but not on Ras1. Real-time imaging showed that giant cells were engaged, but not engulfed by phagocytic cells. We describe a remarkable new strategy for C. neoformans to evade the immune response by enlarging cell size, and suggest that gigantism results from replication without fission, a phenomenon that may also occur with other fungal pathogens.
Insights
Cryptococcus neoformans forms gigantic cells in host tissues, a novel immune evasion strategy. This gigantism results from cell replication without fission, potentially occurring in other fungal pathogens.
Area of Science:
- Mycology
- Immunology
- Cell Biology
Background:
- Fungal pathogens like Cryptococcus neoformans interact with hosts, often causing morphological changes.
- While typically yeast-shaped, C. neoformans exhibits capsule enlargement; this study identifies another change: gigantism.
Purpose of the Study:
- To characterize the phenotypic and cellular changes associated with giant cell formation in C. neoformans infections.
- To investigate the mechanism and implications of C. neoformans gigantism during infection.
Main Methods:
- Phenotypic characterization of giant cells isolated from infected mice.
- In vitro culture of C. neoformans and real-time imaging of giant cell behavior.
- Analysis of giant cell ploidy and dependence on signaling pathways (cAMP, Ras1).
Main Results:
- C. neoformans formed giant cells (up to 30 microm) with resistant capsules in infected mice.
- Giant cell proportion varied (10-80%) based on infection parameters and host immune response.
- Giant cells exhibited polyploidy, suggesting replication without fission, and were resistant to phagocytosis.
Conclusions:
- C. neoformans employs gigantism as a strategy to evade the host immune response.
- Giant cell formation appears to be an aging-dependent phenomenon linked to cell cycle progression without division.
- This replication-without-fission mechanism may be relevant for other fungal pathogens.
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