Related Experiment Video
Updated: Aug 11, 2026

Mitochondrial Preparation from Microglia for Glycan Analysis
Published on: May 30, 2025
Metabolic Reprogramming of Brain Microglia: Implications for Aging and Aging-Associated Neurodegenerative Diseases
Seokjo Kang1,2, Helen S Goodridge1,2
1Board of Governors Regenerative Medicine Institute, Cedars-Sinai Medical Center, Los Angeles, California, USA.
Abstract:
Microglia, the resident macrophages of the central nervous system (CNS), are key players in maintaining brain and spinal cord homeostasis and protecting the CNS from damage and disease. During aging, the brain undergoes profound changes-including chronic low-grade inflammation, synaptic dysfunction, and increased vulnerability to neurodegenerative diseases-all of which are closely related to alterations in microglial function. One emerging theme is that microglial metabolism is a crucial determinant of their immune and homeostatic activity. In this mini-review, we explore how metabolic programs shape brain microglial behavior and how these processes change during aging and in neurodegenerative diseases. We first highlight the link between specific metabolic pathways and key microglial functions, including phagocytosis, cytokine production, and the oxidative stress response. We then discuss how microglial metabolism is reprogrammed during healthy aging and in Alzheimer's disease and Parkinson's disease, including sex-specific differences. Finally, we examine regulators that influence microglial metabolic states and discuss how these pathways contribute to disease susceptibility and progression. Collectively, recent findings highlight the central role of metabolic reprogramming in shaping microglial responses during aging and in neurodegenerative diseases. We emphasize the need for integrative studies that consider microglial subsets, sex differences, disease context, and upstream molecular regulators to better understand how microglial metabolism contributes to brain health and pathology. A deeper understanding of these pathways may offer new opportunities for therapeutic strategies aimed at restoring microglial homeostasis and mitigating harmful neuroinflammatory processes.
Insights
Microglial metabolism is crucial for brain health and function, especially during aging and neurodegenerative diseases like Alzheimer's and Parkinson's. Understanding these metabolic changes offers therapeutic potential for brain disorders.
Area of Science:
- Neuroscience
- Immunology
- Metabolism
Background:
- Microglia, the CNS immune cells, are vital for brain homeostasis.
- Aging and neurodegenerative diseases alter microglial function, impacting brain health.
- Microglial metabolic reprogramming is increasingly recognized as a key factor in these changes.
Purpose of the Study:
- To review how metabolic pathways influence microglial functions.
- To examine metabolic changes in microglia during aging and neurodegenerative diseases (Alzheimer's, Parkinson's).
- To discuss regulators of microglial metabolism and their role in disease.
Main Methods:
- Literature review and synthesis of current research on microglial metabolism.
- Analysis of metabolic pathways linked to microglial functions (phagocytosis, cytokine production).
- Examination of age- and disease-related metabolic reprogramming in microglia, including sex differences.
Main Results:
- Specific metabolic pathways directly impact microglial immune and homeostatic activities.
- Microglial metabolism is significantly altered during aging and in Alzheimer's and Parkinson's disease.
- Sex-specific differences exist in microglial metabolic reprogramming.
Conclusions:
- Metabolic reprogramming is central to microglial responses in aging and neurodegeneration.
- Further research is needed on microglial subsets, sex differences, and regulatory pathways.
- Targeting microglial metabolism may offer novel therapeutic strategies for brain health and disease.

