Synaptic plasticity alterations associated with memory impairment induced by deletion of CB2 cannabinoid receptors

María S García-Gutiérrez1, Antonio Ortega-Álvaro, Arnau Busquets-García

  • 1Instituto de Neurociencias, Campus de San Juan, Universidad Miguel Hernández-CSIC, San Juan de Alicante, Alicante, Spain.

Neuropharmacology
|June 26, 2013
PubMed

Insights

Cannabinoid receptor 2 (CB₂r) plays a crucial role in aversive memory consolidation. Its absence impairs memory, while agonists enhance it, suggesting CB₂r as a therapeutic target for cognitive disorders.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Pharmacology

Background:

  • Cannabinoid receptor 2 (CB₂r) function in memory consolidation remains incompletely understood.
  • Aversive memory consolidation involves complex molecular and structural changes in the brain.

Purpose of the Study:

  • To investigate the role of CB₂r in aversive memory consolidation.
  • To explore the molecular mechanisms underlying CB₂r's effects on memory.

Main Methods:

  • Utilized CB₂r knockout (CB2KO) and wild-type (WT) mice in a step-down inhibitory avoidance test (SDIA).
  • Assessed synaptic markers (MAP2, NF200, SYN) and ultrastructure via electron microscopy in the hippocampus (HIP).
  • Quantified gene expression (BDNF, NR3C1) and protein signaling (mTOR/p70S6K, AKT) in HIP and prefrontal cortex (PFC).
  • Administered CB₂r-agonist JWH133 and antagonist AM630 to WT mice to evaluate memory consolidation.

Main Results:

  • CB2KO mice exhibited impaired aversive memory consolidation, reduced synaptic markers, and fewer synapses in the dentate gyrus (DG).
  • BDNF and NR3C1 gene expression were decreased in the HIP of CB2KO mice.
  • Increased phosphorylation of p70S6K and AKT was observed in the HIP and PFC of CB2KO mice.
  • AM630 administration impaired memory consolidation, while JWH133 enhanced it in WT mice.

Conclusions:

  • CB₂r is integral to aversive memory consolidation.
  • CB₂r influences synaptic plasticity and neurotrophic factor expression.
  • CB₂r modulation presents a potential therapeutic strategy for cognitive impairment disorders.

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