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.

Frontiers in Neurology
|December 1, 2018
PubMed

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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