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R-ketamine: a rapid-onset and sustained antidepressant without psychotomimetic side effects

Chun Yang, Yukihiko Shirayama, J-C Zhang, Qian Ren, Wei Yao, Min Ma, Chao Dong, Kenji Hashimoto

Translational Psychiatry September 1, 2015 DOI: 10.1038/tp.2015.136 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Experimental study Peer reviewed
Population Mice
Interventions R-ketamine S-ketamine
Topics Ketamine Esketamine
Keywords Psychotomimetic Antidepressant Nucleus accumbens Pharmacology Prefrontal cortex Brain-derived neurotrophic factor Hippocampus Nmda receptor Neurotrophic factors Central nervous system Cognition
Citations 600
Post-publication review 3 comments on PubPeer (opens in new tab) · last active February 2023
Key findings R-ketamine shows greater antidepressant potency and longer-lasting effects than S-ketamine, without psychotomimetic side effects, mediated by increased BDNF-TrkB signaling and synaptogenesis in the prefrontal cortex and hippocampus.

Abstract

Although the efficacy of racemate ketamine, a rapid onset and sustained antidepressant, for patients with treatment-resistant depression was a serendipitous finding, clinical use of ketamine is limited, due to psychotomimetic side effects and abuse liability. Behavioral and side-effect evaluation tests were applied to compare the two stereoisomers of ketamine. To elucidate their potential therapeutic mechanisms, we examined the effects of these stereoisomers on brain-derived neurotrophic factor (BDNF)-TrkB signaling, and synaptogenesis in selected brain regions. In the social defeat stress and learned helplessness models of depression, R-ketamine showed a greater potency and longer-lasting antidepressant effect than S-ketamine (esketamine). Furthermore, R-ketamine induced a more potent beneficial effect on decreased dendritic spine density, BDNF-TrkB signaling and synaptogenesis in the prefrontal cortex (PFC), CA3 and dentate gyrus (DG) of the hippocampus from depressed mice compared with S-ketamine. However, neither stereoisomer affected these alterations in the nucleus accumbens of depressed mice. In behavioral tests for side effects, S-ketamine, but not R-ketamine, precipitated behavioral abnormalities, such as hyperlocomotion, prepulse inhibition deficits and rewarding effects. In addition, a single dose of S-ketamine, but not R-ketamine, caused a loss of parvalbumin (PV)-positive cells in the prelimbic region of the medial PFC and DG. These findings suggest that, unlike S-ketamine, R-ketamine can elicit a sustained antidepressant effect, mediated by increased BDNF-TrkB signaling and synaptogenesis in the PFC, DG and CA3. R-ketamine appears to be a potent, long-lasting and safe antidepressant, relative to S-ketamine, as R-ketamine appears to be free of psychotomimetic side effects and abuse liability.

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