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The Involvement of the Serotonergic System in Ketamine and Fluoxetine Combination-induced Cognitive Impairments in Mice.

Emre Uyar, Meral Erdinç, İlker Kelle, Levent Erdinç, Uğur Şeker, Yusuf Nergiz

The Eurasian journal of medicine June 1, 2024 DOI: 10.5152/eurasianjmed.2024.23219 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Animal experiment Peer reviewed
Sample size 64
Population Male BALB/c mice
Interventions Ketamine Fluoxetine p-Chlorophenylalanine Methiothepin
Topics Esketamine Ketamine Serotonin
Keywords Psychopharmacology Mental health Drug interactions Memory research
Key findings Low-dose ketamine combined with fluoxetine disrupts memory consolidation and induces neurodegeneration, suggesting increased serotonergic transmission mediates these effects.

Abstract

Glutamatergic N-methyl-D-aspartate (NMDA) receptors play vital roles in memory formation. Changes in the activity of these receptors influence memory processes. Ketamine is a noncompetitive NMDA receptor antagonist drug with promising mood-altering and pain-reducing effects in low doses. These effects are believed to be related to altered serotonergic transmission. The present study investigated the involvement of the serotonergic system in low-dose ketamine administrations' effects on memory acquisition, consolidation, and retrieval processes. Sixty-four male BALB/c mice were used in this experiment and separated into 8t groups. Mice were treated subchronically with a selective serotonin reuptake inhibitor, fluoxetine, and a serotonin depletion agent, p-chlorophenylalanine (pCPA). A serotonin antagonist, methiothepin, and ketamine were acutely administered 60 minutes before or after the behavioral tests. A passive avoidance (PA) test measured emotional memory acquisition, consolidation, and retrieval processes. Hippocampi malondialdehyde (MDA) levels were analyzed, and histopathological examinations were performed. Ketamine alone did not significantly affect memory encoding processes in the PA test, while the ketamine-fluoxetine combination disrupted memory consolidation. Fluoxetine negatively affected the memory acquisition process, which was normalized during the consolidation and retrieval trials. Drug applications did not significantly alter hippocampal MDA levels. In all ketamine-applied groups, histopathologic alterations were evident. Low-dose ketamine administration induces neurodegeneration, and it also impairs memory functions when combined with fluoxetine, indicating increased serotonergic transmission may be involved in the memory-impairing and neurotoxic effects of ketamine.