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Published on: April 13, 2017
Differential Roles of M1 and M2 Microglia in Neurodegenerative Diseases
1Key Laboratory of Stem Cell Biology, Institute of Health Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences/Shanghai JiaoTong University School of Medicine, 200025, Shanghai, China.
Abstract:
One of the most striking hallmarks shared by various neurodegenerative diseases, including Parkinson's disease, Alzheimer's disease (AD), and amyotrophic lateral sclerosis, is microglia-mediated neuroinflammation. Increasing evidence indicates that microglial activation in the central nervous system is heterogeneous, which can be categorized into two opposite types: M1 phenotype and M2 phenotype. Depending on the phenotypes activated, microglia can produce either cytotoxic or neuroprotective effects. In this review, we focus on the potential role of M1 and M2 microglia and the dynamic changes of M1/M2 phenotypes that are critically associated with the neurodegenerative diseases. Generally, M1 microglia predominate at the injury site at the end stage of disease, when the immunoresolution and repair process of M2 microglia are dampened. This phenotype transformation is very complicated in AD due to the phagocytosis of regionally distributed β-amyloid (Aβ) plaque and tangles that are released into the extracellular space. The endogenous stimuli including aggregated α-synuclein, mutated superoxide dismutase, Aβ, and tau oligomers exist in the milieu that may persistently activate M1 pro-inflammatory responses and finally lead to irreversible neuron loss. The changes of microglial phenotypes depend on the disease stages and severity; mastering the stage-specific switching of M1/M2 phenotypes within appropriate time windows may provide better therapeutic benefit.
Insights
Microglia activation in neurodegenerative diseases like Alzheimer's involves M1 (harmful) and M2 (protective) phenotypes. Understanding their dynamic shifts is key to developing effective treatments for these conditions.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Neuroinflammation, driven by microglia, is a common feature in neurodegenerative diseases such as Parkinson's, Alzheimer's (AD), and ALS.
- Microglial activation is heterogeneous, with distinct M1 (pro-inflammatory, cytotoxic) and M2 (anti-inflammatory, neuroprotective) phenotypes.
Purpose of the Study:
- To review the roles of M1 and M2 microglia in neurodegeneration.
- To examine the dynamic changes in microglial phenotypes during disease progression.
Main Methods:
- Literature review focusing on microglial phenotypes in neurodegenerative diseases.
- Analysis of the interplay between microglial activation states and disease-specific pathological hallmarks.
Main Results:
- M1 microglia often dominate at later disease stages, correlating with neuron loss.
- M2 microglia-mediated repair processes can be suppressed.
- Phenotype switching is complex in AD, influenced by amyloid-beta plaques and tau tangles.
Conclusions:
- The balance and dynamic switching between M1 and M2 microglial phenotypes are critical in neurodegenerative disease progression.
- Targeting stage-specific microglial phenotype transitions offers potential therapeutic strategies.

