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Visualizing Non-lytic Exocytosis of Cryptococcus neoformans from Macrophages Using Digital Light Microscopy
Published on: October 21, 2014
CD4+ T Cells Orchestrate Lethal Immune Pathology despite Fungal Clearance during Cryptococcus neoformans
Lori M Neal1,2, Enze Xing2, Jintao Xu1,2
1Division of Pulmonary and Critical Care Medicine, Department of Internal Medicine, University of Michigan Health System, Ann Arbor, Michigan, USA.
Abstract:
Cryptococcus neoformans is a major fungal pathogen that disseminates to the central nervous system (CNS) to cause fatal meningoencephalitis, but little is known about immune responses within this immune-privileged site. CD4+ T cells have demonstrated roles in anticryptococcal defenses, but increasing evidence suggests that they may contribute to clinical deterioration and pathology in both HIV-positive (HIV+) and non-HIV patients who develop immune reconstitution inflammatory syndrome (IRIS) and post-infectious inflammatory response syndrome (PIIRS), respectively. Here we report a novel murine model of cryptococcal meningoencephalitis and a potential damaging role of T cells in disseminated cryptococcal CNS infection. In this model, fungal burdens plateaued in the infected brain by day 7 postinfection, but activation of microglia and accumulation of CD45hi leukocytes was significantly delayed relative to fungal growth and did not peak until day 21. The inflammatory leukocyte infiltrate consisted predominantly of gamma interferon (IFN-γ)-producing CD4+ T cells, conventionally believed to promote fungal clearance and recovery. However, more than 50% of mice succumbed to infection and neurological dysfunction between days 21 and 35 despite a 100-fold reduction in fungal burdens. Depletion of CD4+ cells significantly impaired IFN-γ production, CD8+ T cell and myeloid cell accumulation, and fungal clearance from the CNS but prevented the development of clinical symptoms and mortality. These findings conclusively demonstrate that although CD4+ T cells are necessary to control fungal growth, they can also promote significant immunopathology and mortality during CNS infection. The results from this model may provide important guidance for development and use of anti-inflammatory therapies to minimize CNS injury in patients with severe cryptococcal infections.IMPORTANCE CNS infection with the fungal pathogen Cryptococcus neoformans often results in debilitating brain injury and has a high mortality rate despite antifungal treatment. Treatment is complicated by the fact that immune responses needed to eliminate infection are also thought to drive CNS damage in a subset of both HIV+ and non-HIV patients. Thus, physicians need to balance efforts to enhance patients' immune responses and promote microbiological control with anti-inflammatory therapy to protect the CNS. Here we report a novel model of cryptococcal meningoencephalitis demonstrating that fungal growth within the CNS does not immediately cause symptomatic disease. Rather, accumulation of antifungal immune cells critically mediates CNS injury and mortality. This model demonstrates that antifungal immune responses in the CNS can cause detrimental pathology and addresses the urgent need for animal models to investigate the specific cellular and molecular mechanisms underlying cryptococcal disease in order to better treat treat patients with CNS infections.
Insights
CD4+ T cells control fungal growth in the brain but also cause damaging inflammation and mortality in cryptococcal meningoencephalitis. Depleting these cells prevents disease, highlighting a need for balanced therapies.
Area of Science:
- Immunology
- Neuroscience
- Infectious Diseases
Background:
- Cryptococcus neoformans causes fatal meningoencephalitis, particularly in immune-privileged CNS sites.
- CD4+ T cells are crucial for antifungal defense but can also drive pathology in conditions like IRIS and PIIRS.
- Understanding CNS immune responses is vital for treating cryptococcal infections.
Purpose of the Study:
- To investigate the role of T cells in the immunopathology of cryptococcal meningoencephalitis using a novel murine model.
- To determine whether CD4+ T cells contribute to CNS injury and mortality during disseminated cryptococcal infection.
- To provide a model for evaluating anti-inflammatory therapies in severe CNS fungal infections.
Main Methods:
- Development of a novel murine model for cryptococcal meningoencephalitis.
- Monitoring fungal burden, immune cell infiltration (microglia, CD45hi leukocytes, CD4+ T cells), and cytokine production (IFN-γ).
- CD4+ T cell depletion experiments to assess their impact on fungal clearance, immune response, and clinical outcomes.
Main Results:
- Fungal burden plateaued by day 7, but immune cell activation and leukocyte infiltration peaked later (day 21).
- Inflammatory infiltrate was dominated by IFN-γ-producing CD4+ T cells.
- Despite significant fungal reduction, mice experienced mortality and neurological dysfunction between days 21-35.
- CD4+ T cell depletion reduced IFN-γ, myeloid cell accumulation, and fungal clearance but prevented mortality and symptoms.
Conclusions:
- CD4+ T cells are essential for controlling fungal growth in the CNS but paradoxically mediate significant immunopathology and mortality.
- Immune responses, not immediate fungal burden, critically drive CNS injury and disease progression.
- This model highlights the need to balance antifungal immunity with anti-inflammatory strategies to mitigate CNS damage in cryptococcal infections.
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