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Acute and long-term effects of a single dose of MDMA on aggression in Dark Agouti rats

Eszter Kirilly, Anita Benkő, Linda Ferrington, Rómeó D. Andó, Paul A. Kelly, György Bagdy

The International Journal of Neuropsychopharmacology August 1, 2005 DOI: 10.1017/s146114570500581x via OpenAlex

Summary

AI-generated from the abstract

A single dose of MDMA (15 mg/kg) in male Dark Agouti rats caused lasting damage to the serotonin system, shown by 30–60% reductions in paroxetine binding in the forebrain and decreased brain glucose metabolism in aggression-related areas. Despite this neurotoxicity, aggressive behaviors (biting, boxing, wrestling) were not significantly different from controls three weeks later, and the acute anti-aggressive effects of MDMA and two 5-HT1B receptor agonists remained intact. The findings suggest that aggressive behavior and the acute anti-aggressive action of MDMA are preserved even with substantial serotonergic damage, at least under the social isolation conditions of the resident-intruder test.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Male Dark Agouti rats
Interventions MDMA CGS-12066A CP-94 253
Dose 15 mg/kg i.p. for MDMA; 5 mg/kg i.p. for CGS-12066A and CP-94,253
Duration Single dose with testing 21 days later; acute effects also assessed
Topics MDMA Serotonin
Keywords Hallucinogen Paroxetine Psychology
Citations 26
Key finding Aggressive behavior and the acute anti-aggressive effects of MDMA and 5-HT1B agonists remained intact three weeks after a single dose of MDMA, despite significant damage to the serotonergic system.

Abstract

MDMA causes selective depletion of serotonergic terminals in experimental animals and the consequent decrease in synaptic 5-HT may, inter alia, increase impulsivity. To study the effects of MDMA upon brain function, the behaviour of male Dark Agouti rats exposed to MDMA (15 mg/kg i.p.), two 5-HT1B agonists (CGS-12066A and CP-94,253, both 5 mg/kg i.p.) or saline were investigated in the resident-intruder test. Studies were performed in drug-naive rats and also in rats exposed to MDMA (15 mg/kg i.p.) 21 d earlier. In parallel experiments the functional neuroanatomy of MDMA effects were assessed using 2-deoxyglucose imaging of local cerebral metabolic rate of glucose utilization (LCMRGlu) and neurotoxicity was assessed by measuring [3H]paroxetine binding. There was no significant difference in aggressive behaviour (biting, boxing, wrestling and their latencies) between drug-naive rats and rats previously exposed to MDMA 21 d earlier, despite reduced social behaviour, decreased LCMRGlu in several brain areas involved in aggression, and reductions in paroxetine binding by 30-60% in the forebrain. CGS-12066A, CP-94,253 and acute MDMA produced marked decreases in aggressive behaviours, especially in biting, boxing and kicking found in drug-naive rats. In animals previously exposed to the drug, acute anti-aggressive effects of MDMA were, in general, preserved as were MDMA-induced increases in LCMRGlu. Our studies provide evidence that in the resident-intruder test, where social isolation is a requirement, aggressive behaviour and acute anti-aggressive effects of MDMA and 5-HT1B receptor agonists remain intact 3 wk after a single dose of the drug despite significant damage to the serotonergic system.

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