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A 3D Fusarium keratitis model reveals isolate-specific adhesion and invasion properties in the Fusarium solani
Anna Zimmermann1, Johanna Theuersbacher2, Hong Han2
1Institute for Hygiene and Microbiology, University of Würzburg, Würzburg, Germany.
Abstract:
Members of the Fusarium solani species complex (FSSC) are major causes of keratitis in humans. The underlying mechanisms leading to this disease are not well understood, partially due to the absence of more complex in vitro infection models. Here, we compared the pathogenicity of keratitis-causing FSSC members F. falciforme, F. keratoplasticum, and F. petroliphilum in a 2D monolayer infection model using a human corneal epithelial cell line and a newly established 3D human cornea infection model which comprises the multilayer epithelium and the stroma. In both models, F. keratoplasticum emerged as the most virulent species, showing extensive invasion and host cell damage and, in rare cases, even inducing the formation of transcellular tunnels. While F. falciforme exhibited strong adhesion to corneal epithelial cells, its capacity for invasion and damage was limited. F. petroliphilum was the least virulent among the FSSC species with low adhesion and invasion. The use of the 3D model allowed the investigation of fungal infection in a more physiologically relevant context and revealed that all three FSSC species disseminated deeper into the cornea than C. albicans under identical conditions. This may partly explain the unfavorable clinical outcome of Fusarium keratitis in patients, as the deep penetration of Fusarium hyphae complicates the accessibility of antifungal drugs to the pathogen. Our data indicate species-specific infection routes which might avoid recognition by the host cell defense system and could contribute to the overall high virulence of the species.IMPORTANCEFusarium keratitis is a rare fungal infection of the human eye. The outcome for affected patients is often poor, with loss of eyesight or even the entire eye being common. Investigation of this disease is challenging due to the absence of established in vitro complex infection models that go beyond a simple 2D monolayer of a single cell type. Here, we performed a comparative analysis of three Fusarium species in a classic 2D infection model and a newly established 3D human cornea model which comprised the epithelium and the stroma. Our experiments revealed that F. keratoplasticum shows a higher potential for invasion and host cell damage when compared to related species. The 3D human cornea model could be a helpful tool for future investigations of fungal pathogenicity and antifungal drug susceptibility during cornea infections.
Insights
The study compared three Fusarium species causing keratitis using 2D and 3D human cornea models. Fusarium keratoplasticum showed the highest virulence, invading deeper than other species, which may explain poor outcomes in Fusarium keratitis.
Area of Science:
- Ophthalmology
- Mycology
- Infectious Diseases
Background:
- Fusarium solani species complex (FSSC) causes human keratitis, a severe eye infection.
- Understanding FSSC pathogenicity is limited by the lack of complex in vitro infection models.
- Current models often use simple 2D cell monolayers, not mimicking the full corneal structure.
Purpose of the Study:
- To compare the pathogenicity of three FSSC species: F. falciforme, F. keratoplasticum, and F. petroliphilum.
- To evaluate fungal invasion and host cell damage in 2D and novel 3D human cornea models.
- To investigate the clinical relevance of fungal deep penetration in Fusarium keratitis.
Main Methods:
- Comparison of F. falciforme, F. keratoplasticum, and F. petroliphilum pathogenicity.
- Utilized a 2D human corneal epithelial cell line model.
- Developed and employed a novel 3D human cornea model including epithelium and stroma.
- Assessed fungal adhesion, invasion, and host cell damage.
Main Results:
- F. keratoplasticum demonstrated the highest virulence, causing extensive invasion and host cell damage in both models.
- F. falciforme showed strong adhesion but limited invasion and damage.
- F. petroliphilum exhibited low virulence with minimal adhesion and invasion.
- All FSSC species penetrated deeper into the cornea than Candida albicans in the 3D model.
Conclusions:
- F. keratoplasticum is the most virulent FSSC species studied.
- The 3D human cornea model provides a more physiologically relevant platform for studying keratitis.
- Deep corneal penetration by FSSC species may contribute to poor treatment outcomes in Fusarium keratitis.
- Species-specific infection routes may evade host defenses, enhancing virulence.

