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Published on: February 7, 2025
Early Microglial Activation Following Closed-Head Concussive Injury Is Dominated by Pro-Inflammatory M-1 Type
Sindhu K Madathil1, Bernard S Wilfred1, Sarah E Urankar1
1Brain Trauma Neuroprotection and Neurorestoration Branch, Center for Military Psychiatry and Neuroscience, Walter Reed Army Institute of Research, Silver Spring, MD, United States.
Abstract:
Microglial activation is a pathological hallmark of traumatic brain injury (TBI). Following brain injury, activated microglia/macrophages adopt different phenotypes, generally categorized as M-1, or classically activated, and M-2, or alternatively activated. While the M-1, or pro-inflammatory phenotype is detrimental to recovery, M-2, or the anti-inflammatory phenotype, aids in brain repair. Recent findings also suggest the existence of mixed phenotype following brain injury, where activated microglia simultaneously express both M-1 and M-2 markers. The present study sought to determine microglial activation states at early time points (6-72 h) following single or repeated concussive injury in rats. Closed-head concussive injury was modeled in rats using projectile concussive impact injury, with either single or repeated impacts (4 impacts, 1 h apart). Brain samples were examined using immunohistochemical staining, inflammatory gene profiling and real-time polymerase chain reaction analyses to detect concussive injury induced changes in microglial activation and phenotype in cortex and hippocampal regions. Our findings demonstrate robust microglial activation following concussive brain injury. Moreover, we show that multiple concussions induced a unique rod-shaped microglial morphology that was also observed in other diffuse brain injury models. Histological studies revealed a predominance of MHC-II positive M-1 phenotype in the post-concussive microglial milieu following multiple impacts. Although there was simultaneous expression of M-1 and M-2 markers, gene expression results indicate a clear dominance in M-1 pro-inflammatory markers following both single and repeated concussions. While the increase in M-1 markers quickly resolved after a single concussion, they persisted following repeated concussions, indicating a pro-inflammatory environment induced by multiple concussions that may delay recovery and contribute to long-lasting consequences of concussion.
Insights
Repeated concussions cause a pro-inflammatory microglial response, characterized by M-1 markers, which persists longer than after a single traumatic brain injury (TBI). This sustained inflammation may impede recovery from multiple brain injuries.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Microglial activation is a key feature of traumatic brain injury (TBI).
- Activated microglia adopt M-1 (pro-inflammatory) or M-2 (anti-inflammatory) phenotypes, influencing recovery.
- Mixed microglial phenotypes expressing both M-1 and M-2 markers have been observed post-TBI.
Purpose of the Study:
- To investigate microglial activation states and phenotypes at early time points (6-72 hours) after single or repeated concussive brain injuries in a rat model.
- To characterize the morphological and molecular changes in microglia following different concussive injury paradigms.
Main Methods:
- Projectile concussive impact injury model in rats, with single or repeated impacts (4 impacts, 1 hour apart).
- Immunohistochemical staining to assess microglial morphology and phenotype (MHC-II marker).
- Inflammatory gene profiling and real-time polymerase chain reaction (PCR) to quantify M-1 and M-2 marker expression in cortical and hippocampal regions.
Main Results:
- Concussive brain injury robustly activated microglia.
- Multiple concussions induced a distinct rod-shaped microglial morphology.
- Histology showed a predominance of M-1 (MHC-II positive) microglia after multiple impacts.
- Gene expression revealed a dominance of M-1 pro-inflammatory markers following both single and repeated concussions.
- M-1 marker increase resolved quickly after single concussion but persisted after repeated concussions.
Conclusions:
- Repeated concussions create a sustained pro-inflammatory microglial environment, indicated by persistent M-1 marker expression.
- This prolonged M-1 phenotype dominance following multiple impacts may hinder brain repair and contribute to long-term consequences.
- Understanding these early microglial responses is crucial for developing therapeutic strategies for TBI recovery.
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