Environmental enrichment selectively restores brain metabolic activity during cocaine abstinence
Belujon, P.; Lardeux, V.; Dugast, E.; Serriere, S.; Busson, J.; Bodard, S.; Tauber, C.; Galineau, L.; Solinas, M.
Show abstract
BackgroundEnvironmental enrichment (EE) is a promising strategy to promote recovery from addiction, but its neurobiological mechanisms remain poorly understood. This study investigates how exposure to EE during abstinence dynamically affects brain neuroadaptations induced by voluntary intake of cocaine. MethodsUsing longitudinal 18FDG microPET imaging, we examined brain metabolic activity in rats following extended access cocaine self-administration. After establishing escalation of cocaine intake, rats were housed in either enriched or standard environments during a four-week abstinence period. Brain metabolic activity was assessed after one and four weeks of abstinence. ResultsCocaine self-administration produced widespread decreases in cortical metabolic activity, particularly in regions involved in executive function (orbitofrontal cortex, anterior cingulate) and interoception (insula), while increasing activity in emotional and motivational circuits (nucleus accumbens, amygdala, mesencephalon). EE selectively normalized these alterations through temporally distinct mechanisms: rapidly restoring nucleus accumbens and amygdala function while gradually affecting prefrontal cortical activity. After four weeks, rats housed in enriched environments showed significantly normalized metabolic activity in the orbitofrontal cortex and dorsolateral striatum compared to those in standard housing, with persistent changes in anterior cingulate cortex and ventral posterior hippocampus. ConclusionsOur findings reveal circuit-specific and temporally distinct effects of environmental enrichment on cocaine-induced brain alterations. These insights could inform the development of more targeted therapeutic approaches for addiction recovery.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Incentive Salience, not Psychomotor Sensitization or Tolerance, Drives Escalation of Cocaine Self-Administration in Heterogeneous Stock Rats 96%
- Facilitating mGluR4 activity reverses the long-term deleterious consequences of chronic morphine exposure 95%
- Muscarinic M1 receptor stimulation prevents and reverses addiction-related effects of cocaine 95%
Similar papers in this journal
- Trace amine-associated receptor gene polymorphism increases drug craving 94%
- Ethanol-induced conditioned taste aversion and associated neural activation in male rats: Impact of age and adolescent intermittent ethanol exposure 93%
- Longer chronic cannabis use in humans is associated with impaired implicit motor learning and supranormal resting state cortical activity 92%
Similar papers in this journal
- Comparative analysis of the modulation of perineuronal nets in the prefrontal cortex of rats during protracted withdrawal from cocaine, heroin and sucrose self-administration 96%
- Hypocretin receptor 1 blockade early in abstinence reduces future demand for cocaine 95%
- Voluntary and forced exposure to ethanol vapor produces similar escalation of alcohol drinking but differential recruitment of brain regions related to stress, habit, and reward in male rats. 95%
Similar papers in this journal
- Cocaine-induced loss of LTD and social impairments are restored by fatty acid amide hydrolase inhibition 95%
- Nandrolone alters the behavioral response to cocaine as well as striatal and cortical dopamine receptors of prepubertal male rats. 95%
- Voluntary alcohol intake alters the motivation to seek intravenous oxycodone and neuronal activation during the reinstatement of oxycodone and sucrose seeking 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.