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Updated: Aug 15, 2025

A Preclinical Controlled Cortical Impact Model for Traumatic Hemorrhage Contusion and Neuroinflammation
Published on: June 10, 2020
Infiltrating anti-inflammatory monocytes modulate microglial activation through toll-like receptor
Mahmoud G El Baassiri1, Young H Chun, Simon S Rahal
1From the Pediatric Surgery, Department of Surgery, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Background:
Traumatic brain injury (TBI) is the leading cause of morbidity and mortality in the pediatric population. Microglia and infiltrating monocyte-derived macrophages are crucial immune cells that modulate the neuroinflammatory response following TBI. Using C34, a novel pharmacologic toll-like receptor 4 inhibitor, we investigated the intricate interactions between these cells in a murine TBI model.
Methods:
A murine controlled cortical impact model was used, and the results were analyzed on postinjury days 1, 7, 28, and 35. The experimental groups are as follows: (1) sham C57BL/6 wild-type (WT), (2) TBI WT, (3) sham WT + C34, and (4) TBI WT + C34. Quantitative real-time polymerase chain reaction was used to quantify gene expression associated with microglial activation, apoptotic pathways, and type 1 interferon pathway. Flow cytometry was used to isolate microglia and infiltrating monocytes. Brain lesion volumes were assessed using magnetic resonance imaging. Last, neurocognitive outcomes were evaluated using the Morris Water Maze test. Student's t test and one-way analysis of variance were used for statistical analysis with significance achieved when p < 0.05.
Results:
Toll-like receptor 4 inhibition leads to improved neurological sequela post-TBI, possibly because of an increase in infiltrating anti-inflammatory monocytes and a decrease in IFN regulatory factor 7 during acute inflammation, followed by a reduction in apoptosis and M2 microglial expression during chronic inflammation.
Conclusion:
Toll-like receptor 4 inhibition with C34 skews infiltrating monocytes toward an anti-inflammatory phenotype, leading to enhanced neurocognitive outcomes. Moreover, although M2 microglia have been consistently shown as inducers of neuroprotection, our results clearly demonstrate their detrimental role during the chronic phases of healing post-TBI.
Insights
Toll-like receptor 4 inhibition improved outcomes after pediatric traumatic brain injury (TBI) by promoting anti-inflammatory monocytes and reducing detrimental microglial activity during chronic healing.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Traumatic brain injury (TBI) is a primary cause of death and disability in children.
- Microglia and macrophages are key immune cells influencing TBI's neuroinflammatory response.
- Investigating novel therapeutics like toll-like receptor 4 (TLR4) inhibitors is crucial for TBI management.
Purpose of the Study:
- To investigate the effects of C34, a novel TLR4 inhibitor, on immune cell interactions in a murine TBI model.
- To elucidate the role of TLR4 inhibition in modulating neuroinflammation and neurocognitive outcomes post-TBI.
Main Methods:
- Utilized a murine controlled cortical impact model of TBI.
- Analyzed gene expression (microglial activation, apoptosis, type 1 interferon pathway) via qRT-PCR.
- Quantified immune cell populations (microglia, monocytes) using flow cytometry.
- Assessed brain lesion volume by MRI and neurocognitive function using the Morris Water Maze test.
Main Results:
- TLR4 inhibition with C34 improved neurological sequelae post-TBI.
- Observed an increase in anti-inflammatory monocytes and a decrease in IFN regulatory factor 7 during acute inflammation.
- Noted a reduction in apoptosis and M2 microglial expression during chronic inflammation.
Conclusions:
- TLR4 inhibition with C34 promotes an anti-inflammatory monocyte phenotype, enhancing neurocognitive outcomes.
- Demonstrated a detrimental role for M2 microglia during chronic TBI healing, contrasting with established neuroprotective roles.
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