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Unique Effects of (R)-Ketamine Compared to (S)-Ketamine on EEG Theta Power in Rats.

Dóra Pothorszki, Szabolcs Koncz, Dóra Török, Noémi Papp, György Bagdy

Pharmaceuticals (Basel, Switzerland) February 1, 2024 DOI: 10.3390/ph17020194 via PubMed

Summary

AI-generated from the abstract

In rats, (R)-ketamine, but not (S)-ketamine, dose-dependently increases EEG theta power during wakefulness and REM sleep for 23 hours. Theta rhythm originates in the hippocampus and is linked to cognitive functions, attention, and decreased anxiety. This effect on a hippocampal function not affected by (S)-ketamine may relate to neural plasticity and memory encoding.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Wistar rats
Interventions (R)-ketamine (S)-ketamine
Dose 7.5, 15, 30 mg/kg i.p. for (R)-ketamine; 7.5 and 15 mg/kg i.p. for (S)-ketamine
Duration 23 hours
Topics Esketamine Ketamine Neuroplasticity
Keywords Rem sleep Antidepressant Cognition Electroencephalography
Citations 7
Key finding (R)-ketamine dose-dependently increased EEG theta power during wakefulness and REM sleep for 23 hours, while (S)-ketamine did not.

Abstract

Differences in the pharmacological effects of (S)-ketamine and (R)-ketamine are at the focus of research. Clinical data and our rat studies confirmed the antidepressant effect of (S)- but not (R)-ketamine, with similar differences in quantitative electroencephalogram (EEG) and sleep effects. In contrast, studies mainly on mice showed some stronger, preferable effects of (R)-ketamine. EEG theta (5-9 Hz) rhythm originates from the hippocampus, and its power is associated with cognitive functions, attention, and decreased anxiety. To find a brain parameter that is not associated with the antidepressant effect of drugs and may confirm potent in vivo effects of (R)-ketamine in rats, theta EEG power-inducing effects of the two enantiomers were measured and compared for 23 h. EEG-equipped Wistar rats were treated with (R)-ketamine (7.5, 15, 30 mg/kg i.p.), (S)-ketamine (7.5 and 15 mg/kg i.p.), or vehicle at the beginning of the passive phase. Frontoparietal EEG, electromyogram, and motor activity were recorded. (R)-ketamine but not (S)-ketamine dose-dependently increased EEG theta power during wakefulness and rapid eye movement (REM) sleep for 23 h. These results suggest that (R)-ketamine has an effect on a hippocampal function that was not affected by (S)-ketamine and may be associated with neural plasticity and memory encoding.

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