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Environmental enrichment enhances the antidepressant effect of ketamine and ameliorates spatial memory deficits in adult rats.

Deren Aykan, Mert Genc, Gunes Unal

Pharmacology, biochemistry, and behavior July 1, 2024 DOI: 10.1016/j.pbb.2024.173790 via PubMed

Summary

AI-generated from the abstract

Combining environmental enrichment with ketamine produces a synergistic antidepressant effect in adult male Wistar rats. Environmental enrichment also reversed spatial memory deficits caused by ketamine in the Morris water maze. Enhanced neuronal activity was observed in the habenula of rats housed in an enriched environment alone after the probe trial, but not in enriched animals that also received ketamine. The findings suggest that sensory-motor stimulation can boost ketamine's antidepressant properties while reducing cognitive side effects, pointing to the potential of pairing pharmacological and environmental interventions for mood disorders.

Study at a glance

Characteristics Randomized controlled trial Peer reviewed
Population Adult male Wistar rats
Interventions environmental enrichment ketamine
Dose 20 mg/kg, IP
Duration 50 days housing, including 13-day behavioral testing period
Topics Ketamine
Keywords Behavioral despair C-fos Environmental enrichment Habenula Spatial memory
Citations 8
Key finding Environmental enrichment combined with ketamine produced a synergistic antidepressant effect and ameliorated ketamine-induced spatial memory deficits in rats.

Abstract

Ketamine is a rapid-acting antidepressant associated with various cognitive side effects. To mitigate these side effects while enhancing efficacy, it can be co-administered with other antidepressants. In our study, we adopted a similar strategy by combining ketamine with environmental enrichment, a potent sensory-motor paradigm, in adult male Wistar rats. We divided the animals into four groups based on a combination of housing conditions and ketamine versus vehicle injections. The groups included those housed in standard cages or an enriched environment for 50 days, which encompassed a 13-day-long behavioral testing period. Each group received either two doses of ketamine (20 mg/kg, IP) or saline as a vehicle. We tested the animals in the novel object recognition test (NORT), forced swim test (FST), open field test (OFT), elevated plus maze (EPM), and Morris water maze (MWM), which was followed by ex vivo c-Fos immunohistochemistry. We observed that combining environmental enrichment with ketamine led to a synergistic antidepressant effect. Environmental enrichment also ameliorated the spatial memory deficits caused by ketamine in the MWM. There was enhanced neuronal activity in the habenula of the enrichment only group following the probe trial of the MWM. In contrast, no differential activity was observed in enriched animals that received ketamine injections. The present study showed how environmental enrichment can enhance the antidepressant properties of ketamine while reducing some of its side effects, highlighting the potential of combining pharmacological and sensory-motor manipulations in the treatment of mood disorders.

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