Publication: COX-2 Inhibition Antagonizes Intra-Accumbens 2-Arachidonoylglycerol-Mediated Reduction in Ethanol Self-Administration in Rats.
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Identifiers
Date
2020-10-03
Authors
Pavon, Francisco J
Polis, Ilham
Stouffer, David G
Roberto, Marisa
Martin-Fardon, Remi
RodrIguez de Fonseca, Fernando
Parsons, Loren H
Serrano, Antonia
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
Wiley
Abstract
Ethanol (EtOH) self-administration is particularly sensitive to the modulation of CB1 signaling in the nucleus accumbens (NAc) shell, and EtOH consumption increases extracellular levels of the endogenous cannabinoid CB1 receptor agonist 2-arachidonoyl glycerol (2-AG) in this brain region. Stimulation of CB1 receptor with agonists increases EtOH consumption, suggesting that EtOH-induced increases in 2-AG might sustain motivation for EtOH intake. In order to further explore this hypothesis, we analyzed the alterations in operant EtOH self-administration induced by intra-NAc shell infusions of 2-AG itself, the CB1 inverse agonist SR141716A, the 2-AG clearance inhibitor URB602, anandamide, and the cyclooxygenase-2 (COX-2) inhibitor nimesulide. Surprisingly, self-administration of 10% EtOH was dose-dependently reduced by either intra-NAc shell SR141716A or 2-AG infusions. Similar effects were found by intra-NAc shell infusions of URB602, suggesting again a role for accumbal 2-AG on the modulation of EtOH intake. Intra-NAc shell anandamide did not alter EtOH self-administration, pointing to a specific role for 2-AG in the modulation of EtOH self-administration. Finally, the inhibitory effect of intra-NAc shell 2-AG on EtOH intake was significantly reversed by pretreatment with nimesulide, suggesting that oxidative metabolites of 2-AG might mediate these inhibitory effects on operant self-administration. We propose that 2-AG signaling in the NAc exerts an inhibitory influence on EtOH consumption through a non-CB1 receptor mechanism involving the COX-2 pathway.
Description
MeSH Terms
Alcohol drinking
Animals
Arachidonic acids
Biphenyl compounds
Cyclooxygenase 2 inhibitors
Dose-Response relationship, drug
Endocannabinoids
Glycerides
Male
Nucleus accumbens
Polyunsaturated alkamides
Rats
Rats, Wistar
Receptor, cannabinoid, CB1
Rimonabant
Self administration
Sulfonamides
Animals
Arachidonic acids
Biphenyl compounds
Cyclooxygenase 2 inhibitors
Dose-Response relationship, drug
Endocannabinoids
Glycerides
Male
Nucleus accumbens
Polyunsaturated alkamides
Rats
Rats, Wistar
Receptor, cannabinoid, CB1
Rimonabant
Self administration
Sulfonamides
DeCS Terms
Alcamidas poliinsaturadas
Animales
Compuestos de bifenilo
Consumo de bebidas alcohólicas
Endocannabinoides
Glicéridos
Inhibidores de la ciclooxigenasa 2
Núcleo accumbens
Ratas wistar
Receptor cannabinoide CB1
Rimonabant
Sulfonamidas
Ácidos araquidónicos
Animales
Compuestos de bifenilo
Consumo de bebidas alcohólicas
Endocannabinoides
Glicéridos
Inhibidores de la ciclooxigenasa 2
Núcleo accumbens
Ratas wistar
Receptor cannabinoide CB1
Rimonabant
Sulfonamidas
Ácidos araquidónicos
CIE Terms
Keywords
2-Arachidonoyl glycerol, Cyclooxygenase-2, Ethanol, Nucleus accumbens
Citation
Pavon FJ, Polis I, Stouffer DG, Roberto M, Martin-Fardon R, Rodriguez de Fonseca F, et al. COX-2 Inhibition Antagonizes Intra-Accumbens 2-Arachidonoylglycerol-Mediated Reduction in Ethanol Self-Administration in Rats. Alcohol Clin Exp Res. 2020 Nov;44(11):2158-2165