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Characterization and Isolation of Mouse Primary Microglia by Density Gradient Centrifugation
Published on: February 16, 2018
Microglia as the Critical Regulators of Neuroprotection and Functional Recovery in Cerebral Ischemia
1Department of Neurology and Anesthesiology, Shock Trauma and Anesthesiology Research Center, University of Maryland School of Medicine, Baltimore, MD, 21201, USA. bgaire@som.umaryland.edu.
Abstract:
Microglial activation is considered as the critical pathogenic event in diverse central nervous system disorders including cerebral ischemia. Proinflammatory responses of activated microglia have been well reported in the ischemic brain and neuroinflammatory responses of activated microglia have been believed to be the potential therapeutic strategy. However, despite having proinflammatory roles, microglia can have significant anti-inflammatory roles and they are associated with the production of growth factors which are responsible for neuroprotection and recovery after ischemic injury. Microglia can directly promote neuroprotection by preventing ischemic infarct expansion and promoting functional outcomes. Indirectly, microglia are involved in promoting anti-inflammatory responses, neurogenesis, and angiogenesis in the ischemic brain which are crucial pathophysiological events for ischemic recovery. In fact, anti-inflammatory cytokines and growth factors produced by microglia can promote neuroprotection and attenuate neurobehavioral deficits. In addition, microglia regulate phagocytosis, axonal regeneration, blood-brain barrier protection, white matter integrity, and synaptic remodeling, which are essential for ischemic recovery. Microglia can also regulate crosstalk with neurons and other cell types to promote neuroprotection and ischemic recovery. This review mainly focuses on the roles of microglia in neuroprotection and recovery following ischemic injury. Furthermore, this review also sheds the light on the therapeutic potential of microglia in stroke patients.
Insights
Microglia, immune cells in the brain, play dual roles in cerebral ischemia. While often proinflammatory, they also promote neuroprotection and recovery by reducing infarct size and enhancing functional outcomes.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Microglial activation is a key pathogenic event in central nervous system disorders like cerebral ischemia.
- Activated microglia in ischemic brains exhibit well-documented proinflammatory responses, suggesting therapeutic potential.
- However, microglia also possess significant anti-inflammatory roles crucial for neuroprotection and recovery.
Purpose of the Study:
- To review the multifaceted roles of microglia in neuroprotection and recovery following ischemic injury.
- To explore the therapeutic potential of modulating microglial activity in stroke patients.
Main Methods:
- This review synthesizes existing literature on microglial function in ischemic stroke.
- Focuses on the dual pro- and anti-inflammatory roles of microglia.
- Examines their impact on neuroprotection, recovery, and therapeutic strategies.
Main Results:
- Microglia can directly prevent ischemic infarct expansion and improve functional outcomes.
- They indirectly promote anti-inflammatory responses, neurogenesis, and angiogenesis essential for recovery.
- Microglia-derived factors and functions like phagocytosis, axonal regeneration, and blood-brain barrier protection are vital for ischemic recovery.
Conclusions:
- Microglia exhibit both detrimental proinflammatory and beneficial anti-inflammatory/neuroprotective roles in ischemic stroke.
- Modulating microglial activity offers a promising therapeutic avenue for stroke patients.
- Understanding these dual roles is critical for developing effective neuroprotective strategies.
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