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.

Abstract

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: Pathophysiology01:22

Cerebral Edema ll: Pathophysiology

Vasogenic edema is a major form of cerebral edema characterized by abnormal accumulation of fluid in the brain’s extracellular space due to disruption of the blood–brain barrier (BBB). The BBB is a specialized structure composed of endothelial cells connected by tight junctions, supported by astrocytic endfeet and a basement membrane. Under normal conditions, it tightly regulates the movement of ions, proteins, and solutes between the bloodstream and brain parenchyma. When this...
2
Acute Inflammation II: Local and Systemic Effects01:25

Acute Inflammation II: Local and Systemic Effects

Acute inflammation produces a coordinated set of local and systemic changes that limit injury, eliminate pathogens, and initiate repair. These responses arise within minutes of infection, trauma, or chemical insult and are driven by vascular alterations and leukocyte-derived mediators. When the stimulus resolves, the reaction typically abates within days.Local EffectsAt the site of injury, arteriolar vasodilation increases blood flow, resulting in redness and warmth. Simultaneously, increased...
7
Bacterial Meningitis II: Pathophysiology01:26

Bacterial Meningitis II: Pathophysiology

Bacterial meningitis typically begins when pathogens such as Neisseria meningitidis and Streptococcus pneumoniae colonize the nasopharynx and invade the bloodstream. This process is facilitated by bacterial virulence factors, such as polysaccharide capsules, which resist phagocytosis and complement-mediated killing. Less commonly, bacteria reach the central nervous system via contiguous spread from infections like otitis media or sinusitis, through congenital or acquired dural defects, or...
2