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Updated: Jul 17, 2026

Reinstatement of Drug-seeking in Mice Using the Conditioned Place Preference Paradigm
Published on: June 7, 2018
Rewarding effects and reinstatement of MDMA-induced CPP in adolescent mice
Manuel Daza-Losada1, Bruno Ribeiro Do Couto, Carmen Manzanedo
1Facultad de Psicología, Departamento de Psicobiología, Unidad de Investigación Psicobiología de las Drogodependencias, Universitat de Valencia, Valencia, Spain.
Abstract:
Although the rewarding effects of 3,4-methylenedioxy-metamphetamine (MDMA) have been demonstrated in self-administration and conditioned place preference (CPP) procedures, its addictive potential (ie, the vulnerability to relapse, measured by its ability to induce reinstatement of an extinguished response), remains poorly understood. In this study, the effects of MDMA (5, 10, and 20 mg/kg) on the acquisition, extinction and reinstatement of CPP were evaluated in mice, using two different protocols during acquisition of CPP. In the first experiment, animals were trained using a two-session/day schedule (MDMA and saline for 4 consecutive days), whereas in the second experiment, they were trained using an alternating day schedule (MDMA and saline each 48 h). After extinction, the ability of drug priming to reinstate CPP was evaluated. In Experiment 1, MDMA did not significantly increase the time spent in the drug-paired compartment during the post-conditioning (Post-C) test, although the preference was evident a week afterwards, lasting between 2 and 21 weeks. No reinstatement was observed after MDMA priming. In Experiment 2, all doses produced CPP in Post-C, which lasted between 1 and 4 weeks. MDMA induces reinstatement at doses up to 4 times lower than those used in conditioning. The analyses of brain monoamines revealed that the daily schedule of treatment induces a non-dose-dependent decrease in dopamine and serotonin (5-HT) in the striatum, whereas the alternating schedule produces a dose-dependent decrease of 5-HT in the cortex. These results demonstrate that MDMA produces long-lasting rewarding effects and reinstatement after extinction, suggesting the susceptibility of this drug to induce addiction.
Insights
3,4-methylenedioxy-metamphetamine (MDMA) causes long-lasting rewarding effects and can trigger relapse after withdrawal, indicating its addictive potential. This study explored MDMA
Area of Science:
- Neuroscience
- Pharmacology
- Addiction Research
Background:
- The addictive potential of 3,4-methylenedioxy-metamphetamine (MDMA) is not fully understood, particularly its ability to induce relapse.
- Previous studies demonstrated MDMA's rewarding effects but lacked comprehensive assessment of its addictive properties.
Purpose of the Study:
- To investigate the long-term rewarding effects and relapse-inducing potential of MDMA in mice.
- To evaluate how different dosing schedules affect MDMA's impact on conditioned place preference (CPP) and monoamine levels.
Main Methods:
- Mice were trained to associate a compartment with MDMA using two different acquisition protocols: daily and alternating-day dosing.
- Conditioned place preference (CPP) was assessed post-conditioning, followed by extinction and drug-primed reinstatement tests.
- Brain monoamine levels (dopamine, serotonin) in the striatum and cortex were analyzed.
Main Results:
- MDMA produced long-lasting CPP, persisting for weeks, particularly under the alternating-day schedule.
- The alternating-day schedule induced reinstatement of CPP at significantly lower doses than those used for conditioning.
- Daily MDMA administration decreased dopamine and serotonin in the striatum, while the alternating schedule decreased cortical serotonin.
Conclusions:
- MDMA exhibits significant long-lasting rewarding effects and can induce relapse, suggesting a considerable risk of addiction.
- The dosing schedule critically influences MDMA's neurochemical effects and its potential to cause relapse.
- These findings highlight the addictive liability of MDMA and the importance of understanding its neurobiological underpinnings.

