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Published on: January 22, 2020
Paracoccidioidesbrasiliensis induces IL-32 and is controlled by IL-15/IL-32/vitamin D pathway in vitro
Grazzielle Guimarães de Matos1, Ana Marina Barroso de Figueiredo1, Pedro Hugo Diniz Gonçalves1
1Laboratório de Imunidade Natural (LIN), Instituto de Patologia Tropical e Saúde Pública, Universidade Federal de Goiás, Goiânia, Goiás, Brazil.
Abstract:
Paracoccidioidomycosis (PCM) is a systemic fungal disease caused by Paracoccidioides spp., whose clinical outcome depends on immune response. Interleukin 32 (IL-32) is a cytokine present in inflammatory and infectious diseases, including bacterial, virus and protozoan infections. Its role in fungal disease remains unclear. The axis IL-15, IL-32 and vitamin D leads to microbicidal capacity against intracellular pathogens. Thus, the aims of this study were to investigate the production of IL-32 during Paracoccidioides spp. infection and whether this cytokine and IL-15 can increase P. brasiliensis control in a vitamin D dependent manner. IL-32 was highly detected in oral lesions from patients with PCM. In addition, high production of this cytokine was intracellularly detected in peripheral blood mononuclear cells (PBMCs) from healthy donors after exposure to particulated P. brasiliensis antigens (PbAg). The IL-32γ isoform was predominantly expressed, but there was mRNA alternative splicing for IL-32α isoform. The induction of IL-32 was dependent on Dectin-1 receptor. Infection of PBMCs with P. brasiliensis yeasts did not significantly induce IL-32 production even after activation with exogenous IFN-γ or IL-15 treatments. Although IL-15 was a potent inducer of IL-32 production, treatment with this cytokine did not increase the fungal control unless vitamin D was present in high levels. In this case, both IL-15 and IL-32 increased fungicidal activity of PBMCs. Together, data showed that IL-32 is present in lesions of PCM, PbAg induces IL-32, and the axis of IL-15/IL-32/vitamin D can contribute to control fungal infection. The data suggest that exposure to molecules from P. brasiliensis, as β-glucans, is needed to induce IL-32 production since only heat-killed and sonicated P. brasiliensis yeasts were able to increase IL-32, which was blocked by anti-Dectin-1 antibodies. This is the first description about IL-15/IL-32/vitamin D pathway role in P. brasiliensis infection.
Insights
Interleukin 32 (IL-32) is found in Paracoccidioidomycosis (PCM) lesions and is induced by fungal antigens. The IL-15, IL-32, and vitamin D pathway enhances control of fungal infections.
Area of Science:
- Immunology
- Mycology
- Infectious Diseases
Background:
- Paracoccidioidomycosis (PCM) is a systemic fungal disease with variable clinical outcomes influenced by the host immune response.
- Interleukin 32 (IL-32), a cytokine involved in inflammation and infections, has an unclear role in fungal diseases.
- The interplay between IL-15, IL-32, and vitamin D is known to enhance microbicidal capacity against intracellular pathogens.
Purpose of the Study:
- To investigate IL-32 production during Paracoccidioides spp. infection.
- To determine if IL-32 and IL-15 can improve control of P. brasiliensis in a vitamin D-dependent manner.
Main Methods:
- Detection of IL-32 in oral lesions of PCM patients.
- Intracellular IL-32 detection in peripheral blood mononuclear cells (PBMCs) exposed to P. brasiliensis antigens (PbAg).
- Assessment of IL-15 and vitamin D effects on fungal control and IL-32 production in PBMCs.
Main Results:
- IL-32 was highly detected in PCM oral lesions and intracellularly in PBMCs stimulated with PbAg, with predominant IL-32γ isoform expression.
- IL-32 induction was dependent on the Dectin-1 receptor, with heat-killed and sonicated P. brasiliensis yeasts being effective inducers.
- IL-15 strongly induced IL-32 production, but enhanced fungal control by PBMCs required the presence of high vitamin D levels, with both IL-15 and IL-32 increasing fungicidal activity.
Conclusions:
- IL-32 is present in PCM lesions and induced by P. brasiliensis antigens via Dectin-1.
- The IL-15/IL-32/vitamin D axis plays a role in controlling P. brasiliensis infection.
- This study is the first to describe the role of the IL-15/IL-32/vitamin D pathway in P. brasiliensis infection.
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