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The interaction of fungi with dendritic cells: implications for Th immunity and vaccination
Montagnoli Claudia1, Angela Bacci, Bozza Silvia
1Department of Experimental Medicine and Biochemical Sciences, Medical School, University of Perugia, Italy.
Abstract:
Human beings are continuously exposed to fungi, yet they rarely get fungal diseases. The delicate balance between the host and these otherwise harmless pathogens may turn into a parasitic relationship, resulting in the development of severe infections. The ability to reversibly switch between unicellular and filamentous forms, all of which can be found in infected tissues, is thought to be important for virulence. Efficient responses to the different forms of fungi require different mechanisms of immunity. Dendritic cells (DC) are uniquely able at decoding the fungus-associated information and translating it in qualitatively different T helper (Th) immune responses, in vitro and in vivo. Myeloid DC phagocytosed yeasts and hyphae of Candida albicans and conidia and hyphae of Aspergillus fumigatus, both in vitro and in vivo. Phagocytosis occurred through distinct phagocytic morphologies, involving the engagement and cooperativity of distinct recognition receptors. However, receptor engagement and cooperativity were greatly modified by opsonization. The engagement of distinct receptors translated into disparate downstream signaling events, ultimately affecting cytokine production and costimulation. In vivo studies confirmed that the choice of receptor and mode of entry of fungi into DC was responsible for Th polarization and patterns of susceptibility or resistance to infection. Adoptive transfer of different types of DC activated protective, nonprotective and regulatory T cells, ultimately affecting the outcome of infection. The conclusions are that the selective exploitation of receptors and mode of entry into DC may determine the full range of host's immune relationships with fungi and have important implications in the design of vaccine-based strategies.
Insights
Human immune cells called dendritic cells (DCs) recognize different fungal forms, influencing T helper (Th) cell responses. This interaction dictates susceptibility or resistance to fungal infections, impacting vaccine development.
Area of Science:
- Immunology
- Mycology
- Cell Biology
Background:
- Humans are constantly exposed to fungi, but rarely develop infections.
- Fungal virulence is linked to their ability to switch between yeast and filamentous forms.
- Effective immunity requires distinct responses to different fungal morphologies.
Purpose of the Study:
- To investigate how dendritic cells (DCs) recognize and respond to different fungal forms.
- To determine the role of DC recognition in shaping T helper (Th) cell immunity.
- To explore the implications for fungal disease susceptibility and vaccine strategies.
Main Methods:
- In vitro and in vivo phagocytosis assays using Candida albicans and Aspergillus fumigatus.
- Analysis of DC receptor engagement, signaling pathways, and cytokine production.
- Adoptive transfer of DCs to assess T cell polarization and infection outcomes.
Main Results:
- Myeloid DCs phagocytosed various fungal forms via distinct morphologies and receptor engagements.
- Opsonization significantly modified receptor engagement and downstream signaling.
- DC recognition pathways dictated Th polarization, influencing resistance or susceptibility to fungal infections.
Conclusions:
- The selective engagement of receptors by DCs determines the host's immune response to fungi.
- The mode of fungal entry into DCs influences T cell responses and infection outcomes.
- Understanding these interactions is crucial for designing effective anti-fungal vaccines.