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IL-25 Receptor Signaling Modulates Host Defense against Cryptococcus neoformans Infection
Adithap Hansakon1,2, Siranart Jeerawattanawart1,2, Kovit Pattanapanyasat3
1Department of Medical Technology, Faculty of Allied Health Sciences, Thammasat University, Pathumthani 12120, Thailand.
Abstract:
Cryptococcal meningitis is one of the most common life-threatening diseases caused by Cryptococcus infection. Increasing evidence indicates that type 2 immunity is associated with disease progression by promoting fungal growth and dissemination. However, factors that govern this pathogenic response during infection are still elusive. In this study, we investigated the role of IL-25, one of the type 2-inducing cytokines produced by epithelial cells, in contributing to the pathogenesis of cryptococcosis. We found that pulmonary but not systemic infection with a high-virulence strain of C. neoformans significantly induced pulmonary IL-25 expression in the lungs but not brains. In response to pulmonary infection, mice deficient in the surface IL-17 receptor B, a component of the IL-25R, exhibited improved survival with a decreased brain fungal burden. The absence of IL-25R signaling diminished the type 2 and enhanced the type 1 immune response that directed macrophage polarization toward M1 macrophages. Interestingly, Cryptococcus-mediated IL-25 signaling suppressed the expression of cytokines and chemokines associated with protection in the brain, including Ifng, Il1b, Ip10, and Nos2, without affecting brain cellular inflammation and microglia cell activation. Il17rb mice receiving cryptococcal-specific CD4+ T cells from wild-type had a shorter survival time with higher fungal burden within the brain and an elevated expression of M2 macrophage markers than those receiving cryptococcal-specific CD4+ T cells from Il17rb mice. Taken together, our data indicated that IL-25 signaling subverts the induction of protective immunity and amplifies the type 2 immune response that may favor the development of cryptococcal disease and the fungal dissemination to the CNS.
Insights
Interleukin-25 (IL-25) signaling promotes fungal growth in cryptococcal meningitis by suppressing protective immunity. Blocking IL-25 receptor B (IL-17RB) in mice improved survival and reduced fungal burden in the brain.
Area of Science:
- Immunology
- Infectious Diseases
- Microbiology
Background:
- Cryptococcal meningitis is a life-threatening infection caused by *Cryptococcus*.
- Type 2 immunity is linked to disease progression in cryptococcosis, but the underlying factors remain unclear.
- Interleukin-25 (IL-25) is a cytokine that induces type 2 immunity.
Purpose of the Study:
- To investigate the role of IL-25 in the pathogenesis of cryptococcosis.
- To determine how IL-25 signaling affects immune responses and fungal dissemination to the central nervous system (CNS).
Main Methods:
- Mice were infected with *C. neoformans*.
- IL-25 expression and IL-17 receptor B (IL-17RB) deficiency were analyzed.
- Immune responses, including macrophage polarization and cytokine/chemokine expression, were assessed.
- Fungal burden in the lungs and brain was quantified.
Main Results:
- Pulmonary infection with *C. neoformans* induced IL-25 expression in the lungs.
- Mice deficient in IL-17RB showed improved survival and reduced brain fungal burden.
- IL-25R signaling suppressed protective immune responses (e.g., IFN-γ, IL-1β) in the brain.
- IL-25 amplified type 2 immunity and M2 macrophage polarization, favoring fungal dissemination.
Conclusions:
- IL-25 signaling contributes to cryptococcal meningitis pathogenesis by promoting type 2 immunity.
- Blocking IL-25R signaling enhances protective type 1 immunity and reduces fungal dissemination to the CNS.
- IL-25 represents a potential therapeutic target for cryptococcosis.
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