Fueling neurodegeneration: metabolic insights into microglia functions
Mohammadamin Sadeghdoust1, Aysika Das1, Deepak Kumar Kaushik2
1Division of BioMedical Sciences, Faculty of Medicine, Health Sciences Centre, Memorial University of Newfoundland, 300 Prince Phillip Dr. St. John's, St. John's, NL, A1B 3V6, Canada.
Abstract:
Microglia, the resident immune cells of the central nervous system, emerge in the brain during early embryonic development and persist throughout life. They play essential roles in brain homeostasis, and their dysfunction contributes to neuroinflammation and the progression of neurodegenerative diseases. Recent studies have uncovered an intricate relationship between microglia functions and metabolic processes, offering fresh perspectives on disease mechanisms and possible treatments. Despite these advancements, there are still significant gaps in our understanding of how metabolic dysregulation affects microglial phenotypes in these disorders. This review aims to address these gaps, laying the groundwork for future research on the topic. We specifically examine how metabolic shifts in microglia, such as the transition from oxidative phosphorylation and mitochondrial metabolism to heightened glycolysis during proinflammatory states, impact the disease progression in Alzheimer's disease, multiple sclerosis, Parkinson's disease, amyotrophic lateral sclerosis, and Huntington's disease. Additionally, we explore the role of iron, fatty and amino acid metabolism in microglial homeostasis and repair. Identifying both distinct and shared metabolic adaptations in microglia across neurodegenerative diseases could reveal common therapeutic targets and provide a deeper understanding of disease-specific mechanisms underlying multiple CNS disorders.
Insights
Microglia, the brain's immune cells, undergo metabolic changes impacting neurodegenerative diseases like Alzheimer's and Parkinson's. Understanding these shifts offers new therapeutic targets for brain disorders.
Area of Science:
- Neuroscience
- Immunology
- Metabolism
Background:
- Microglia are central nervous system immune cells crucial for brain homeostasis.
- Microglial dysfunction is implicated in neuroinflammation and neurodegenerative disease progression.
- Emerging research highlights the link between microglial metabolism and brain health.
Purpose of the Study:
- To review the impact of metabolic dysregulation on microglial phenotypes in neurodegenerative diseases.
- To explore metabolic shifts in microglia during proinflammatory states.
- To identify common and distinct metabolic adaptations across various CNS disorders.
Main Methods:
- Literature review of studies on microglial metabolism and neurodegeneration.
- Analysis of metabolic pathways, including glycolysis and oxidative phosphorylation.
- Examination of the roles of iron, fatty acid, and amino acid metabolism.
Main Results:
- Microglia shift from oxidative phosphorylation to glycolysis in proinflammatory states.
- Metabolic changes in microglia influence disease progression in Alzheimer's, MS, Parkinson's, ALS, and Huntington's diseases.
- Iron, fatty acid, and amino acid metabolism are vital for microglial homeostasis and repair.
Conclusions:
- Metabolic dysregulation significantly affects microglial function in neurodegenerative diseases.
- Shared metabolic adaptations in microglia may indicate common therapeutic targets.
- Understanding disease-specific metabolic profiles can deepen insights into CNS disorders.
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