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Innate cells and STAT1-dependent signals orchestrate vaccine-induced protection against invasive Cryptococcus
Keyi Wang1, Vanessa Espinosa2, Yina Wang3
1Graduate School of Biomedical Sciences, New Jersey Medical School, Rutgers University, Newark, New Jersey, USA.
Abstract:
Fungal pathogens are underappreciated causes of significant morbidity and mortality worldwide. In previous studies, we determined that a heat-killed, Cryptococcus neoformans fbp1-deficient strain (HK-fbp1) is a potent vaccine candidate. We determined that vaccination with HK-fbp1 confers protective immunity against lethal Cryptococcosis in an interferon γ (IFNγ)-dependent manner. In this study, we set out to uncover cellular sources and relevant targets of the protective effects of IFNγ in response to the HK-fbp1 vaccine. We found that early IFNγ production peaks at day 3 and that monocytes and neutrophils are important sources of this cytokine after vaccination. Neutralization of IFNγ at day 3 results in impaired CCR2+ monocyte recruitment and reduced differentiation into monocyte-derived dendritic cells (Mo-DC). In turn, depletion of CCR2+ cells prior to immunization results in impaired activation of IFNγ-producing CD4 and CD8 T cells. Thus, monocytes are important targets of innate IFNγ and help promote further IFNγ production by lymphocytes. We employed monocyte-fate mapper and conditional STAT1 knockout mice to uncover that STAT1 activation in CD11c+ cells, including alveolar macrophages, Mo-DCs, and monocyte-derived macrophages (Mo-Mac) is essential for HK-fbp1 vaccine-induced protection. Altogether, our aggregate findings suggest critical roles for innate cells as orchestrators of vaccine-induced protection against Cryptococcus infection.IMPORTANCEThe number of patients susceptible to invasive fungal infections across the world continues to rise at an alarming pace yet current antifungal drugs are often inadequate. Immune-based interventions and novel antifungal vaccines hold the promise of significantly improving patient outcomes. In previous studies, we identified a Cryptococcus neoformans mutant strain (Fbp1-deficient) as a potent, heat-inactivated vaccine candidate capable of inducing homologous and heterologous antifungal protection. In this study, we used a combination of methods together with a cohort of conditional knockout mouse strains to interrogate the roles of innate cells in the orchestration of vaccine-induced antifungal protection. We uncovered novel roles for neutrophils and monocytes as coordinators of a STAT1-dependent cascade of responses that mediate vaccine-induced protection against invasive cryptococcosis. This new knowledge will help guide the future development of much-needed antifungal vaccines.
Insights
Vaccination with a heat-killed Cryptococcus neoformans strain protects against fungal infections by engaging innate immune cells. Monocytes and neutrophils are key sources of interferon gamma (IFNγ), crucial for vaccine-induced protection against Cryptococcus.
Area of Science:
- Immunology
- Mycology
- Vaccinology
Background:
- Fungal infections cause significant global morbidity and mortality.
- Existing antifungal drugs are often inadequate for invasive fungal infections.
- Novel antifungal vaccines are needed to improve patient outcomes.
Purpose of the Study:
- To identify cellular sources and targets of protective interferon gamma (IFNγ) after vaccination with a heat-killed Cryptococcus neoformans fbp1-deficient strain (HK-fbp1).
- To elucidate the role of innate immune cells in mediating vaccine-induced protection against Cryptococcus infection.
Main Methods:
- Utilized a heat-killed Cryptococcus neoformans fbp1-deficient strain (HK-fbp1) for vaccination.
- Employed IFNγ neutralization and depletion of CCR2+ cells.
- Used monocyte-fate mapper and conditional STAT1 knockout mice to investigate STAT1 activation in CD11c+ cells.
Main Results:
- Early IFNγ production peaks at day 3 post-vaccination, with monocytes and neutrophils as key sources.
- IFNγ neutralization impairs monocyte recruitment and differentiation into monocyte-derived dendritic cells (Mo-DC).
- STAT1 activation in CD11c+ cells (including macrophages and Mo-DCs) is essential for vaccine-induced protection.
Conclusions:
- Innate immune cells, particularly monocytes and neutrophils, orchestrate vaccine-induced protection against Cryptococcus.
- Monocytes act as targets of innate IFNγ and promote further lymphocyte IFNγ production.
- STAT1-dependent immune responses mediated by innate cells are critical for antifungal vaccine efficacy.
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