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Activation and Measurement of NLRP3 Inflammasome Activity Using IL-1β in Human Monocyte-derived Dendritic Cells
Published on: May 22, 2014
Cryptococcus neoformans Secretes Small Molecules That Inhibit IL-1β Inflammasome-Dependent Secretion
Pedro Henrique Bürgel1,2, Clara Luna Marina1, Pedro H V Saavedra3
1Laboratory of Applied Immunology, Department of Cellular Biology, Institute of Biological Sciences, University of Brasília, Brazil.
Abstract:
Cryptococcus neoformans is an encapsulated yeast that causes disease mainly in immunosuppressed hosts. It is considered a facultative intracellular pathogen because of its capacity to survive and replicate inside phagocytes, especially macrophages. This ability is heavily dependent on various virulence factors, particularly the glucuronoxylomannan (GXM) component of the polysaccharide capsule. Inflammasome activation in phagocytes is usually protective against fungal infections, including cryptococcosis. Nevertheless, recognition of C. neoformans by inflammasome receptors requires specific changes in morphology or the opsonization of the yeast, impairing proper inflammasome function. In this context, we analyzed the impact of molecules secreted by C. neoformans B3501 strain and its acapsular mutant Δcap67 in inflammasome activation in an in vitro model. Our results showed that conditioned media derived from B3501 was capable of inhibiting inflammasome-dependent events (i.e., IL-1β secretion and LDH release via pyroptosis) more strongly than conditioned media from Δcap67, regardless of GXM presence. We also demonstrated that macrophages treated with conditioned media were less responsive against infection with the virulent strain H99, exhibiting lower rates of phagocytosis, increased fungal burdens, and enhanced vomocytosis. Moreover, we showed that the aromatic metabolite DL-Indole-3-lactic acid (ILA) and DL-p-Hydroxyphenyllactic acid (HPLA) were present in B3501's conditioned media and that ILA alone or with HPLA is involved in the regulation of inflammasome activation by C. neoformans. These results were confirmed by in vivo experiments, where exposure to conditioned media led to higher fungal burdens in Acanthamoeba castellanii culture as well as in higher fungal loads in the lungs of infected mice. Overall, the results presented show that conditioned media from a wild-type strain can inhibit a vital recognition pathway and subsequent fungicidal functions of macrophages, contributing to fungal survival in vitro and in vivo and suggesting that secretion of aromatic metabolites, such as ILA, during cryptococcal infections fundamentally impacts pathogenesis.
Insights
Cryptococcus neoformans secretes molecules that suppress immune inflammasome activation, hindering macrophage defense. These secreted compounds, including aromatic metabolites like ILA, promote fungal survival in vitro and in vivo.
Area of Science:
- Mycology
- Immunology
- Pathogenesis
Background:
- Cryptococcus neoformans is an opportunistic fungal pathogen causing disease primarily in immunocompromised individuals.
- Its virulence is linked to its polysaccharide capsule, particularly glucuronoxylomannan (GXM).
- Macrophage inflammasome activation is crucial for controlling fungal infections, but C. neoformans can evade this.
Purpose of the Study:
- To investigate the impact of molecules secreted by C. neoformans on inflammasome activation.
- To identify specific secreted factors involved in immune evasion.
- To assess the role of these factors in fungal pathogenesis in vitro and in vivo.
Main Methods:
- In vitro analysis of conditioned media from C. neoformans strains (wild-type B3501 and acapsular Δcap67) on inflammasome activation in macrophages.
- Assessment of macrophage phagocytosis, fungal burden, and vomocytosis upon treatment with conditioned media.
- Identification and testing of specific secreted metabolites, including DL-Indole-3-lactic acid (ILA) and DL-p-Hydroxyphenyllactic acid (HPLA).
- In vivo validation using Acanthamoeba castellanii and a murine model of cryptococcosis.
Main Results:
- Conditioned media from wild-type C. neoformans significantly inhibited inflammasome-dependent IL-1β secretion and pyroptosis compared to the acapsular mutant.
- Macrophages exposed to conditioned media showed reduced phagocytosis, increased fungal burdens, and enhanced vomocytosis.
- Secreted aromatic metabolites, particularly ILA (alone or with HPLA), were identified as key inhibitors of inflammasome activation.
- In vivo experiments confirmed increased fungal loads in Acanthamoeba and mouse lungs upon exposure to conditioned media.
Conclusions:
- Secreted molecules from C. neoformans, notably aromatic metabolites like ILA, actively suppress macrophage inflammasome activation and function.
- This immune evasion mechanism contributes to C. neoformans survival and pathogenesis.
- Targeting these secreted factors could offer novel therapeutic strategies against cryptococcosis.
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