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Published on: April 13, 2017
The role of microglia in neurodegenerative diseases
Da-Ao Nie1, Jiangkun Yu2, Wenshan Huang2
1State Key Laboratory of Quality Research in Chinese Medicine, Macau University of Science and Technology, 999078, Macao; The Affiliated Guangdong Second Provincial General Hospital of Jinnan University, Guangzhou, Guangdong 510317, China.
Abstract:
As resident immune surveillance cells within the central nervous system (CNS), microglia exert pivotal biological functions in maintaining CNS homeostasis through dynamic modulation of their proliferative capacity, chemotactic motility, efferocytosis activity, and biphasic secretory mechanisms involving both neuromodulatory factors and pro-inflammatory mediators. These specialized macrophages not only serve as the first line of defense in innate immunity but also orchestrate the regulation of adaptive immune responses; whose functional status directly governs both the physiological integrity of neural circuits and the progression of pathological outcomes. Notably, in neurodegenerative disease models, microglial functional states exhibit pronounced heterogeneity and are tightly regulated by microenvironmental cues. Upon encountering sustained hyperactivation or functional impairment, these cells precipitate a cascade of deleterious events within the neurovascular unit. Building upon these pathophysiological mechanisms, targeted modulation of microglial polarization equilibrium has emerged as a pivotal research focus in developing innovative neuroprotective therapeutic strategies. This review systematically integrates empirical evidence derived from cutting-edge methodologies-including molecular imaging, single-cell multi-omics profiling, and conditional genetic ablation-to mechanistically dissect the dual regulatory roles of microglia in orchestrating neural homeostatic maintenance and driving pathological progression in neurological disorders.
Insights
Microglia, the brain's immune cells, are crucial for CNS homeostasis and neurological disease progression. Modulating their function offers potential neuroprotective therapies.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglia are resident immune surveillance cells in the central nervous system (CNS).
- They maintain CNS homeostasis through proliferation, motility, efferocytosis, and secretion of neuromodulatory and pro-inflammatory factors.
- Microglial function is critical for neural integrity and disease progression, exhibiting heterogeneity in neurodegenerative models.
Purpose of the Study:
- To systematically review the dual regulatory roles of microglia in maintaining neural homeostasis and driving neurological disease progression.
- To explore targeted modulation of microglial polarization as a therapeutic strategy for neuroprotection.
Main Methods:
- Integration of empirical evidence from molecular imaging.
- Application of single-cell multi-omics profiling.
- Utilisation of conditional genetic ablation techniques.
Main Results:
- Microglia play pivotal roles in CNS homeostasis and orchestrate innate and adaptive immune responses.
- Dysfunctional microglia contribute to neurodegenerative processes and neurovascular unit damage.
- Microglial functional states are highly heterogeneous and influenced by microenvironmental cues.
Conclusions:
- Targeted modulation of microglial polarization is a key research focus for developing novel neuroprotective therapies.
- Understanding microglial mechanisms is essential for addressing neurological disorders.
- This review provides a mechanistic dissection of microglia's roles in health and disease.
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