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Macrophage Cholesterol Depletion and Its Effect on the Phagocytosis of Cryptococcus neoformans
Published on: December 19, 2014
Unique recognition, phagocytosis, and intracellular survival of Cryptococcus neoformans in a human immortalized
Robbi L Ross1,2, Kassandra Arias-Parbul1,2, Zane M Douglass1
1Department of Biological Sciences, University of Notre Dame, Notre Dame, IN 46556.
Abstract:
Cryptococcus neoformans, the etiological agent of cryptococcal meningitis (CM), is a globally distributed environmental yeast that mainly causes infections in immunocompromised individuals. Particularly in low-resource countries, the mortality rate of CM can reach 81% and accounts for 19% of HIV/AIDS-related deaths each year. In immunocompromised individuals, once inhaled, C. neoformans escapes from the lungs and disseminates with special predilection for the central nervous system (CNS). Once in the brain, C. neoformans interacts with microglia, the tissue-resident macrophages of the CNS. Previous studies indirectly showed that microglia are ineffective at controlling this fungal infection. The mechanisms underlying this fungal survival and proliferation within the CNS, however, remain unclear. In this study, we use and validate the C20 immortalized human microglia cell line to study cryptococcal-microglia interactions. We show that microglia have limited phagocytic activity that is specific to C. neoformans and partly dependent on cryptococcal antiphagocytic proteins that alter cell size and cell wall structure. We also show human microglia respond to cryptococcal strains differently than peripheral macrophages. Further, we show that human microglia are ineffective at killing phagocytosed C. neoformans, and that this could be due to the ability of this yeast to disrupt phagosome maturation and induce phagosome membrane damage in these cells. These findings provide us with fundamental knowledge regarding cryptococcal pathogenesis in the CNS, specifically insight into how C. neoformans is recognized by microglia under different conditions and demonstrate the usefulness of C20 cells to further study how this yeast survives and replicates within the CNS environment.
Insights
Human microglia are ineffective at controlling Cryptococcus neoformans infections in the brain. This yeast disrupts phagosome maturation and damages cell membranes, contributing to cryptococcal meningitis survival and proliferation.
Area of Science:
- Neuroscience
- Infectious Diseases
- Immunology
Background:
- Cryptococcus neoformans causes cryptococcal meningitis (CM), a deadly infection, especially in immunocompromised individuals.
- CM has high mortality rates (up to 81%) and is a significant cause of death in HIV/AIDS patients.
- C. neoformans disseminates to the central nervous system (CNS) and interacts with microglia, the resident macrophages.
Purpose of the Study:
- To investigate the mechanisms of cryptococcal-microglia interactions in the CNS.
- To understand why microglia are ineffective at controlling C. neoformans infections.
- To validate the C20 immortalized human microglia cell line for studying these interactions.
Main Methods:
- Utilized the C20 immortalized human microglia cell line.
- Assessed microglia phagocytic activity against C. neoformans.
- Investigated the role of cryptococcal antiphagocytic proteins.
- Examined microglia response to different cryptococcal strains.
- Analyzed C. neoformans' impact on phagosome maturation and integrity.
Main Results:
- Microglia exhibit limited, C. neoformans-specific phagocytosis, influenced by fungal antiphagocytic factors.
- Human microglia show distinct responses to C. neoformans compared to peripheral macrophages.
- Microglia are unable to effectively kill phagocytosed C. neoformans.
- C. neoformans disrupts phagosome maturation and causes phagosome membrane damage in microglia.
Conclusions:
- Human microglia are inefficient at controlling C. neoformans CNS infections.
- C. neoformans survival in the CNS is facilitated by its ability to evade microglial defenses.
- The C20 cell line is a valuable model for studying C. neoformans pathogenesis in the CNS.
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