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Three-dimensional Confocal Analysis of Microglia/macrophage Markers of Polarization in Experimental Brain Injury
Published on: September 4, 2013
The Polarization States of Microglia in TBI: A New Paradigm for Pharmacological Intervention
Hangzhe Xu1, Zhijiang Wang1, Jianru Li1
1Department of Neurosurgery, Second Affiliated Hospital, School of Medicine, Zhejiang University, Jiefang Road 88th, Hangzhou 310016, China.
Abstract:
Traumatic brain injury (TBI) is a serious medical and social problem worldwide. Because of the complex pathophysiological mechanisms of TBI, effective pharmacotherapy is still lacking. The microglial cells are resident tissue macrophages located in the brain and have two major polarization states, M1 phenotype and M2 phenotype, when activated. The M1 phenotype is related to the release of proinflammatory cytokines and secondary brain injury, while the M2 phenotype has been proved to be responsible for the release of anti-inflammation cytokines and for central nervous system (CNS) repair. In animal models, pharmacological strategies inhibiting the M1 phenotype and promoting the M2 phenotype of microglial cells could alleviate cerebral damage and improve neurological function recovery after TBI. In this review, we aimed to summarize the current knowledge about the pathological significance of microglial M1/M2 polarization in the pathophysiology of TBI. In addition, we reviewed several drugs that have provided neuroprotective effects against brain injury following TBI by altering the polarization states of the microglia. We emphasized that future investigation of the regulation mechanisms of microglial M1/M2 polarization in TBI is anticipated, which could contribute to the development of new targets of pharmacological intervention in TBI.
Insights
Traumatic brain injury (TBI) treatment is limited. Targeting microglial M1/M2 polarization shows promise for reducing brain damage and improving recovery after TBI.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Traumatic brain injury (TBI) presents significant global health challenges.
- Current pharmacotherapy for TBI is insufficient due to complex pathophysiology.
- Microglial cells, brain-resident macrophages, exist in M1 (pro-inflammatory) and M2 (anti-inflammatory/repair) states.
Purpose of the Study:
- To review the role of microglial M1/M2 polarization in TBI pathophysiology.
- To summarize drugs that offer neuroprotection by modulating microglial polarization.
- To highlight future research directions for TBI pharmacological interventions.
Main Methods:
- Literature review of studies on microglial polarization in TBI.
- Analysis of pharmacological strategies targeting M1/M2 phenotypes.
- Synthesis of current knowledge on neuroprotective agents.
Main Results:
- M1 phenotype exacerbates secondary brain injury via inflammation.
- M2 phenotype promotes CNS repair and reduces inflammation.
- Modulating microglial polarization in animal models alleviates TBI damage and improves neurological function.
Conclusions:
- Microglial M1/M2 polarization is critical in TBI.
- Targeting microglial polarization offers a promising therapeutic strategy for TBI.
- Further research into regulatory mechanisms could yield novel drug targets for TBI.

