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- Title
Effects of morphine on place conditioning and ERK phosphorylation in the nucleus accumbens of psychogenetically selected Roman low- and high-avoidance rats.
- Authors
Rosas, Michela; Porru, Simona; Sabariego, Marta; Piludu, Maria Antonietta; Giorgi, Osvaldo; Corda, Maria G.; Acquas, Elio
- Abstract
Rationale: Extracellular signal-regulated kinase (ERK) phosphorylation is critical for neuronal and behavioural functions; in particular, phosphorylated ERK (pERK) expression in the nucleus accumbens (Acb) of the rat is stimulated by addictive drugs with the exception of morphine, which decreases accumbal ERK phosphorylation in the Sprague-Dawley and Wistar rats. The psychogenetically selected Roman low- (RLA) and high-avoidance (RHA) rats differ behaviourally and neurochemically in many responses to addictive drugs. In particular, morphine elicits a greater increment in locomotor activity and in dopamine transmission in the Acb of RHA vs RLA rats. However, the effects of morphine on place conditioning (conditioned place preference (CPP)) and ERK phosphorylation in the Roman lines remain unknown. Objectives and methods: To characterize in the Roman lines the reinforcing properties of morphine (i.e. morphine-elicited CPP acquisition) and the relationship between these properties and its effects on ERK phosphorylation in the Acb, the behavioural effects of morphine were evaluated in a place-conditioning apparatus and ERK phosphorylation was assessed by immunohistochemistry in the shell and core subregions of the Acb of rats both acutely administered with morphine or undergoing conditioning. Results: Morphine elicited CPP in both Roman lines and decreased pERK expression in the Acb of RLA but not RHA rats. Such decrease was prevented by conditioning. Conclusions: These findings indicate that the selective breeding of the Roman lines has generated a divergence, in terms of morphine-elicited pERK expression but not of morphine-elicited CPP, between RLA and RHA rats and sustain the observation that changes in pERK expression in the Acb are not a requisite for the reinforcing effects of morphine.
- Subjects
MORPHINE; EXTRACELLULAR signal-regulated kinases; PHOSPHORYLATION; NUCLEUS accumbens; BEHAVIOR genetics; AVOIDANCE (Psychology); LABORATORY rats; PSYCHOLOGY
- Publication
Psychopharmacology, 2018, Vol 235, Issue 1, p59
- ISSN
0033-3158
- Publication type
Article
- DOI
10.1007/s00213-017-4740-4