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Updated: Aug 13, 2026

Controlled Cortical Impact Model for Traumatic Brain Injury
Published on: August 5, 2014
Activation of Rho after traumatic brain injury and seizure in rats
Catherine I Dubreuil1, Niklas Marklund, Kathleen Deschamps
1Université de Montréal, 2900 Edouard-Montpetit, Faculté de médecine, Département de Pathologie et Biologie cellulaire, Montréal, QC, Canada H3T 1J4.
Abstract:
Traumatic brain injury (TBI) is characterized by a progressive cell loss and a lack of axonal regeneration. In the central nervous system (CNS), the Rho signaling pathway regulates the neuronal response to growth inhibitory proteins and regeneration of damaged axons, and Rho activation is also correlated with an increased susceptibility to apoptosis. To evaluate whether traumatic brain injury (TBI) results in changes in Rho activation in vulnerable regions of the brain, GTP-RhoA pull down assays were performed on rat cortical and hippocampal tissue homogenates obtained from 24 h to 3 days following lateral fluid percussion brain injury (FPI). Following FPI, a significantly increased RhoA activation was observed from 24 h to 3 days post-injury in the cortex and by 3 days in the hippocampus ipsilateral to the injury. We also detected activated RhoA in the cortex and hippocampus contralateral to the injury, without concomitant changes in total RhoA levels. To determine if immediate post-traumatic events such as seizures may activate Rho, we examined RhoA activation in the brains of rats with kainic acid-induced seizures. Severe seizures resulted in bilateral RhoA activation in the cortex and hippocampus. Together, these results indicate that RhoA is activated in vulnerable brain regions following traumatic and epileptic insults to the CNS.
Insights
Traumatic brain injury (TBI) increases RhoA activation in vulnerable brain regions. This study investigated RhoA activation following TBI and seizures, finding significant increases in specific brain areas.
Area of Science:
- Neuroscience
- Cellular signaling
- Neurotrauma
Background:
- Traumatic brain injury (TBI) causes progressive cell loss and inhibits axonal regeneration in the central nervous system (CNS).
- The Rho signaling pathway influences neuronal responses to growth inhibitory proteins and axonal regeneration, with Rho activation linked to apoptosis susceptibility.
Purpose of the Study:
- To investigate changes in Rho activation in brain regions vulnerable to traumatic brain injury (TBI).
- To determine if seizures, a common post-TBI event, also affect RhoA activation.
Main Methods:
- GTP-RhoA pull-down assays were used on rat cortical and hippocampal tissues post-lateral fluid percussion brain injury (FPI).
- RhoA activation was also assessed in rats with kainic acid-induced seizures.
Main Results:
- Significantly increased RhoA activation was observed in the cortex (24 h to 3 days) and hippocampus (by 3 days) ipsilateral to FPI.
- Activated RhoA was detected in both ipsilateral and contralateral cortex and hippocampus without changes in total RhoA levels.
- Severe seizures induced bilateral RhoA activation in the cortex and hippocampus.
Conclusions:
- RhoA is activated in vulnerable brain regions following traumatic brain injury (TBI).
- Epileptic seizures also lead to RhoA activation in the brain.
- These findings highlight RhoA's role in the CNS response to insults.

