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Updated: Jul 17, 2026

Systems Analysis of the Neuroinflammatory and Hemodynamic Response to Traumatic Brain Injury
Published on: May 27, 2022
Kinetics of the cellular immune response following closed head injury
A Czigner1, A Mihály, O Farkas
1Department of Anatomy, Faculty of Medicine, University of Szeged, Szeged, Hungary.
Insights
Traumatic brain injury (TBI) triggers early brain swelling due to inflammation. Activated microglia and T-lymphocytes infiltrate the brain, suggesting potential therapeutic targets for improved outcomes.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Brain edema significantly contributes to brain swelling after traumatic brain injury (TBI).
- Inflammatory reactions are hypothesized to play a key role in post-head injury brain swelling.
- Direct evidence of cellular immune reactivity in diffuse brain injury following closed head trauma is limited.
Purpose of the Study:
- To investigate the temporal pattern of microglia activation following TBI.
- To examine the pattern of lymphocyte migration in response to TBI.
- To establish a link between inflammatory responses and brain swelling in TBI.
Main Methods:
- Utilized an impact acceleration model to induce diffuse brain damage in adult Wistar rats.
- Analyzed sagittal brain sections using immunohistochemical markers (CD3 for T-lymphocytes, CD11b for microglia activation).
- Examined animals at various time points post-TBI (5 minutes to 24 hours).
Main Results:
- Traumatic brain injury (TBI) induced microglia activation in the brain parenchyma.
- A transient, biphasic infiltration of T-lymphocytes into the brain parenchyma was observed.
- T-cell infiltration began as early as 30 minutes post-injury, peaking at 45 minutes and 3 hours.
Conclusions:
- Acute response to severe head trauma involves inflammatory events, likely triggered by activated microglia and infiltrating lymphocytes.
- Early edema formation in TBI is associated with these acute inflammatory responses.
- Targeted immunosuppressive treatment early after severe head injury may improve patient outcomes.
Background:
The contribution of brain edema to brain swelling in cases of traumatic brain injury (TBI) remains a critical problem. We believe that inflammatory reactions may play a fundamental role in brain swelling following a head injury. Although possible roles of microglia activation and the release of mediators have been suggested, direct evidence of cellular immune reactivity in diffuse brain injury following closed head trauma is lacking. Accordingly, the objective of this study was to assess the temporal pattern of microglia activation and lymphocyte migration in an experimental model of TBI.
Method:
An impact acceleration TBI model was utilized to induce diffuse brain damage in adult Wistar rats. The animals were separated into three groups: unoperated controls, sham-operated controls and trauma group. At various times after TBI induction (5 min-24 h), rats were perfused transcardially. Sagittal brain sections were analyzed with immunohistochemical markers of CD3 to reveal the presence of T-lymphocytes, and by immunochemistry for the detection of CD11b to reveal microglia activation within the brain parenchyma.
Findings:
In the control groups, scattered T-cells were found in the brain parenchyma. In the trauma group, TBI induced microglia activation and a transient biphasic T-cell infiltration of the brain parenchyma in all regions was found, beginning as early as 30 min post injury and reaching its maximum values at 45 min and 3 h after trauma induction.
Conclusion:
These results lead us to suggest that the acute response to severe head trauma with early edema formation is likely to be associated with inflammatory events which might be triggered by activated microglia and infiltrating lymphocytes. It is difficult to overestimate the clinical significance of these observations, as the early and targeted treatment of patients with severe head injuries with immunosuppressive medication may result in a far more favorable outcome.
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Secondary Spinal Cord Injury llI: Pathophysiology
Cellular Injury I: Introduction
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