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The Carbohydrate Lectin Receptor Dectin-1 Mediates the Immune Response to Exserohilum rostratum
Jennifer L Reedy1,2, Paige E Negoro1, Marianela Feliu1
1Division of Infectious Diseases, Department of Medicine, Massachusetts General Hospital, Boston, Massachusetts, USA.
Abstract:
Dematiaceous molds are found ubiquitously in the environment and cause a wide spectrum of human disease, including infections associated with high rates of mortality. Despite this, the mechanism of the innate immune response has been less well studied, although it is key in the clearance of fungal pathogens. Here, we focus on Exserohilum rostratum, a dematiaceous mold that caused 753 infections during a multistate outbreak due to injection of contaminated methylprednisolone. We show that macrophages are incapable of phagocytosing Exserohilum Despite a lack of phagocytosis, macrophage production of tumor necrosis factor alpha is triggered by hyphae but not spores and depends upon Dectin-1, a C-type lectin receptor. Dectin-1 is specifically recruited to the macrophage-hyphal interface but not the macrophage-spore interface due to differences in carbohydrate antigen expression between these two fungal forms. Corticosteroid and antifungal therapy perturb this response, resulting in decreased cytokine production. In vivo soft tissue infection in wild-type mice demonstrated that Exserohilum provokes robust neutrophilic and granulomatous inflammation capable of thwarting fungal growth. However, coadministration of methylprednisolone acetate results in robust hyphal tissue invasion and a significant reduction in immune cell recruitment. Our results suggest that Dectin-1 is crucial for macrophage recognition and the macrophage response to Exserohilum and that corticosteroids potently attenuate the immune response to this pathogen.
Insights
Dematiaceous molds like Exserohilum rostratum cause severe infections. Macrophages rely on Dectin-1 to detect fungal hyphae, but corticosteroids impair this critical immune response.
Area of Science:
- Mycology
- Immunology
- Infectious Diseases
Background:
- Dematiaceous molds are environmental fungi causing severe human diseases.
- The innate immune response to these fungi, crucial for pathogen clearance, is not well understood.
- Exserohilum rostratum was linked to a large outbreak from contaminated methylprednisolone injections.
Purpose of the Study:
- To investigate the innate immune response to Exserohilum rostratum.
- To elucidate the role of macrophages and Dectin-1 in Exserohilum recognition.
- To determine the impact of corticosteroids on the immune response to this mold.
Main Methods:
- Macrophage phagocytosis assays with Exserohilum.
- Analysis of tumor necrosis factor alpha production via Dectin-1.
- In vivo soft tissue infection models in mice with and without methylprednisolone acetate.
Main Results:
- Macrophages cannot phagocytose Exserohilum.
- Dectin-1 mediates tumor necrosis factor alpha production in response to hyphae, not spores, due to differential carbohydrate antigen expression.
- Corticosteroids and antifungal therapy decrease cytokine production.
- In vivo, methylprednisolone acetate promotes fungal invasion and reduces immune cell recruitment.
Conclusions:
- Dectin-1 is essential for macrophage recognition and response to Exserohilum.
- Corticosteroids significantly weaken the immune system's ability to combat Exserohilum infections.
- Understanding these mechanisms is vital for treating dematiaceous mold infections.
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