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Published on: March 23, 2011
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.
Abstract:
In this study, the role of CB₂r on aversive memory consolidation was further evaluated. Mice lacking CB₂r (CB2KO) and their corresponding littermates (WT) were exposed to the step-down inhibitory avoidance test (SDIA). MAP2, NF200 and synaptophysin (SYN)-immunoreactive fibers were studied in the hippocampus (HIP) of both genotypes. The number of synapses, postsynaptic density thickness and the relation between the synaptic length across the synaptic cleft and the distance between the synaptic ends were evaluated in the HIP (dentate gyrus (DG) and CA1 fields) by electron microscopy. Brain-derived neurotrophic factor (BDNF), glucocorticoid receptor (NR3C1) gene expressions and mTOR/p70S6K signaling cascade were evaluated in the HIP and prefrontal cortex (PFC). Finally, the effects of acute administration of CB₂r-agonist JWH133 or CB2r-antagonist AM630 on memory consolidation were evaluated in WT mice by using the SDIA. The lack of CB₂r impaired aversive memory consolidation, reduced MAP2, NF200 and SYN-immunoreactive fibers and also reduced the number of synapses in DG of CB2KO mice. BDNF and NR3C1 gene expression were reduced in the HIP of CB2KO mice. An increase of p-p70S6K (T389 and S424) and p-AKT protein expression was observed in the HIP and PFC of CB2KO mice. Interestingly, administration of AM630 impaired aversive memory consolidation, whereas JWH133 enhanced it. Further functional and molecular assessments would have been helpful to further support our conclusions. These results revealed that CB₂r are involved in memory consolidation, suggesting that this receptor could be a promising target for developing novel treatments for different cognitive impairment-related disorders.
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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