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Macrophage Cholesterol Depletion and Its Effect on the Phagocytosis of Cryptococcus neoformans
Published on: December 19, 2014
Methamphetamine enhances Cryptococcus neoformans pulmonary infection and dissemination to the brain
Dhavan Patel1, Gunjan M Desai, Susana Frases
1Department of Biomedical Sciences, Long Island University Post, Brookville, New York, USA.
Unlabelled:
Methamphetamine (METH) is a major addictive drug of abuse in the United States and worldwide, and its use is linked to HIV acquisition. The encapsulated fungus Cryptococcus neoformans is the most common cause of fungal meningitis in patients with AIDS. In addition to functioning as a central nervous system stimulant, METH has diverse effects on host immunity. Using a systemic mouse model of infection and in vitro assays in order to critically assess the impact of METH on C. neoformans pathogenesis, we demonstrate that METH stimulates fungal adhesion, glucuronoxylomannan (GXM) release, and biofilm formation in the lungs. Interestingly, structural analysis of the capsular polysaccharide of METH-exposed cryptococci revealed that METH alters the carbohydrate composition of this virulence factor, an event of adaptation to external stimuli that can be advantageous to the fungus during pathogenesis. Additionally, we show that METH promotes C. neoformans dissemination from the respiratory tract into the brain parenchyma. Our findings provide novel evidence of the impact of METH abuse on host homeostasis and increased permissiveness to opportunistic microorganisms.
Importance:
Methamphetamine (METH) is a major health threat to our society, as it adversely changes people's behavior, as well as increases the risk for the acquisition of diverse infectious diseases, particularly those that enter through the respiratory tract or skin. This report investigates the effects of METH use on pulmonary infection by the AIDS-related fungus Cryptococcus neoformans. This drug of abuse stimulates colonization and biofilm formation in the lungs, followed by dissemination of the fungus to the central nervous system. Notably, C. neoformans modifies its capsular polysaccharide after METH exposure, highlighting the fungus's ability to adapt to environmental stimuli, a possible explanation for its pathogenesis. The findings may translate into new knowledge and development of therapeutic and public health strategies to deal with the devastating complications of METH abuse.
Insights
Methamphetamine (METH) use enhances Cryptococcus neoformans lung colonization, biofilm formation, and brain dissemination. This drug of abuse alters the fungus's capsule, aiding its adaptation and pathogenesis in the host.
Area of Science:
- Mycology
- Immunology
- Neuroscience
Background:
- Methamphetamine (METH) abuse is a global health issue linked to increased infectious disease risk.
- Cryptococcus neoformans is an opportunistic fungus causing meningitis, particularly in AIDS patients.
- METH has known central nervous system stimulant effects and impacts host immunity.
Purpose of the Study:
- To investigate the impact of METH on Cryptococcus neoformans pathogenesis.
- To assess METH's effects on fungal adhesion, capsule composition, and dissemination.
- To understand how METH influences host-pathogen interactions in pulmonary cryptococcosis.
Main Methods:
- Systemic mouse model of infection.
- In vitro assays.
- Structural analysis of fungal capsular polysaccharide.
Main Results:
- METH stimulates C. neoformans adhesion, glucuronoxylomannan (GXM) release, and lung biofilm formation.
- METH alters the carbohydrate composition of the C. neoformans capsule, indicating fungal adaptation.
- METH promotes the dissemination of C. neoformans from the lungs to the brain.
Conclusions:
- METH abuse compromises host homeostasis, increasing susceptibility to opportunistic infections like cryptococcosis.
- Fungal adaptation, mediated by METH exposure, plays a role in C. neoformans pathogenesis.
- Findings highlight the need for public health strategies addressing METH abuse and associated infections.
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