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Updated: Jan 19, 2026

Obtaining Human Microglia from Adult Human Brain Tissue
Published on: August 30, 2020
Microglia in Alzheimer Disease: Well-Known Targets and New Opportunities
Anne-Laure Hemonnot1, Jennifer Hua1, Lauriane Ulmann1
1Institute for Functional Genomics (IGF), University of Montpellier, Centre National de la Recherche Scientififique, Institut National de la Santé et de la Recherche Médicale, Montpellier, France.
Abstract:
Microglia are the resident macrophages of the central nervous system. They play key roles in brain development, and physiology during life and aging. Equipped with a variety of molecular sensors and through the various functions they can fulfill, they are critically involved in maintaining the brain's homeostasis. In Alzheimer disease (AD), microglia reaction was initially thought to be incidental and triggered by amyloid deposits and dystrophic neurites. However, recent genome-wide association studies have established that the majority of AD risk loci are found in or near genes that are highly and sometimes uniquely expressed in microglia. This leads to the concept of microglia being critically involved in the early steps of the disease and identified them as important potential therapeutic targets. Whether microglia reaction is beneficial, detrimental or both to AD progression is still unclear and the subject of intense debate. In this review, we are presenting a state-of-knowledge report intended to highlight the variety of microglial functions and pathways shown to be critically involved in AD progression. We first address both the acquisition of new functions and the alteration of their homeostatic roles by reactive microglia. Second, we propose a summary of new important parameters currently emerging in the field that need to be considered to identify relevant microglial targets. Finally, we discuss the many obstacles in designing efficient therapeutic strategies for AD and present innovative technologies that may foster our understanding of microglia roles in the pathology. Ultimately, this work aims to fly over various microglial functions to make a general and reliable report of the current knowledge regarding microglia's involvement in AD and of the new research opportunities in the field.
Insights
Microglia, the brain's immune cells, are increasingly implicated in Alzheimer's disease (AD) progression. Understanding their complex roles is crucial for developing effective AD therapies.
Area of Science:
- Neuroimmunology
- Neurodegenerative Diseases
- Cellular Biology
Background:
- Microglia are central nervous system macrophages vital for brain development, homeostasis, and aging.
- Genome-wide association studies link Alzheimer's disease (AD) risk loci to microglial genes, highlighting their critical role.
- The precise impact of microglial activation on AD progression remains debated: beneficial, detrimental, or both.
Purpose of the Study:
- To provide a comprehensive review of microglial functions and pathways involved in AD.
- To discuss emerging parameters for identifying relevant microglial therapeutic targets in AD.
- To explore challenges and innovative technologies for AD therapeutic strategies targeting microglia.
Main Methods:
- Literature review synthesizing current knowledge on microglia in AD.
- Analysis of genetic association studies implicating microglial genes in AD risk.
- Discussion of functional roles and therapeutic targeting strategies for microglia in AD.
Main Results:
- Reactive microglia exhibit altered homeostatic roles and acquire new functions relevant to AD.
- Numerous AD risk genes are highly expressed in microglia, underscoring their central role.
- The dual role of microglia in AD (beneficial vs. detrimental) is an active area of research.
Conclusions:
- Microglia are critically involved in early AD pathogenesis and represent key therapeutic targets.
- Further research is needed to elucidate the complex functions of microglia in AD.
- Overcoming obstacles in therapeutic strategy design is essential for effective microglial-targeted AD treatments.
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