Related Experiment Video
Updated: Apr 20, 2026

Controlled Cortical Impact Model for Traumatic Brain Injury
Published on: August 5, 2014
Cannabinoid receptor type-2 stimulation, blockade, and deletion alter the vascular inflammatory responses to
Peter S Amenta1, Jack I Jallo2, Ronald F Tuma3
1Department of Neurological Surgery, Thomas Jefferson University Hospital, 1020 Locust Street, Thomas Jefferson University, Philadelphia, PA, 19107, USA. peter.amenta@gmail.com.
Background:
Immunomodulatory therapies have been identified as interventions for secondary injury after traumatic brain injury (TBI). The cannabinoid receptor type-2 (CB2R) is proposed to play an important, endogenous role in regulating inflammation. The effects of CB2R stimulation, blockade, and deletion on the neurovascular inflammatory responses to TBI were assessed.
Methods:
Wild-type C57BL/6 or CB2R knockout mice were randomly assigned to controlled cortical impact (CCI) injury or to craniotomy control groups. The effects of treatment with synthetic, selective CB2R agonists (0-1966 and JWH-133), a selective CB2R antagonist, or vehicle solution administered to CCI groups were assessed at 1-day after injury. Changes in TNF-α, intracellular adhesion molecule (ICAM-1), inducible nitric oxide synthase (iNOS), macrophage/microglial ionized calcium-binding adaptor molecule, and blood-brain-barrier (BBB) permeability were assessed using ELISA, quantitative RT-PCR, immunohistochemistry, and fluorometric analysis of sodium fluorescein uptake. CB2R knockouts and wild-type mice with CCI injury were treated with a CB2R agonist or vehicle treatment.
Results:
TNF-α mRNA increased at 6 hours and 1 to 3 days after CCI; a CB2R antagonist and genetic knockout of the CB2R exacerbated TNF-α mRNA expression. Treatment with a CB2R agonist attenuated TNF-α protein levels indicating post-transcriptional mechanisms. Intracellular adhesion molecule (ICAM-1) mRNA was increased at 6 hours, and at 1 to 2 days after CCI, reduced in mice treated with a CB2R agonist, and increased in CB2R knockout mice with CCI. Sodium fluorescein uptake was increased in CB2R knockouts after CCI, with and without a CB2R agonist. iNOS mRNA expression peaked early (6 hours) and remained increased from 1 to 3 days after injury. Treatment with a CB2R agonist attenuated increases in iNOS mRNA expression, while genetic deletion of the CB2R resulted in substantial increases in iNOS expression. Double label immunohistochemistry confirmed that iNOS was expressed by macrophage/microglia in the injured cortex.
Conclusion:
Findings demonstrate that the endogenous cannabinoid system and CB2R play an important role in regulating inflammation and neurovascular responses in the traumatically injured brain. CB2R stimulation with two agonists (0-1966 and JWH-133) dampened post-traumatic inflammation, while blockade or deletion of the CB2R worsened inflammation. Findings support previous evidence that modulating the CB2R alters infiltrating macrophages and activated resident microglia. Further investigation into the role of the CB2R on specific immune cell populations in the injured brain is warranted.
Insights
Stimulating the cannabinoid receptor type-2 (CB2R) dampens neuroinflammation after traumatic brain injury (TBI). Blocking or deleting CB2R worsens inflammation, highlighting its crucial role in brain injury recovery.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Traumatic brain injury (TBI) can lead to secondary injury, with immunomodulatory therapies showing promise.
- The cannabinoid receptor type-2 (CB2R) is implicated in endogenous inflammation regulation.
- Understanding CB2R's role in TBI-induced neuroinflammation is critical for developing new treatments.
Purpose of the Study:
- To assess the effects of CB2R stimulation, blockade, and deletion on neurovascular inflammatory responses following TBI.
- To investigate the impact of CB2R modulation on key inflammatory markers and blood-brain barrier (BBB) integrity.
- To determine the therapeutic potential of targeting CB2R in TBI.
Main Methods:
- Utilized wild-type and CB2R knockout mice subjected to controlled cortical impact (CCI) or craniotomy.
- Administered selective CB2R agonists (0-1966, JWH-133) or an antagonist to CCI groups.
- Assessed inflammatory markers (TNF-α, ICAM-1, iNOS) and BBB permeability using ELISA, RT-PCR, immunohistochemistry, and sodium fluorescein uptake.
Main Results:
- CB2R stimulation attenuated TNF-α and iNOS mRNA expression, while CB2R blockade or knockout exacerbated them.
- CB2R agonist treatment reduced ICAM-1 mRNA levels, whereas knockout mice showed increased ICAM-1.
- CB2R knockout mice exhibited increased BBB permeability, irrespective of agonist treatment.
Conclusions:
- The endogenous cannabinoid system, particularly CB2R, plays a significant role in regulating neuroinflammation post-TBI.
- CB2R stimulation effectively reduces post-traumatic inflammation, while blockade or deletion worsens it.
- Modulating CB2R influences macrophage infiltration and microglia activation, suggesting therapeutic potential.
Related Concept Videos
Cerebral Edema ll: Pathophysiology
Acute Inflammation II: Local and Systemic Effects
Bacterial Meningitis II: Pathophysiology

