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Low Doses of Ketamine and Melatonin in Combination Produce Additive Antidepressant-like Effects in Mice

R. Estrada-Reyes, Daniel Quero-Chávez, C. Trueta, A. Miranda, Marcela Valdés-Tovar, Salvador Alarcón-Elizalde, Julián Oikawa-Sala, Jesús Argueta, L. A. Constantino-Jonapa, Jesús Muñoz-Estrada, M. Dubocovich, G. Benítez-King

International Journal of Molecular Sciences August 26, 2021 DOI: 10.3390/ijms22179225 (opens in new tab) via Semantic Scholar

Summary

AI-generated from the abstract

A combination of a non-effective dose of ketamine and melatonin (KET/MEL) increased neurogenesis and produced antidepressant-like effects in mice without altering locomotor activity, after both single and triple administration protocols. The authors strongly suggest that this combination could promote neurogenesis, revert neuronal atrophy, and induce antidepressant-like effects, potentially offering a treatment that avoids the psychomimetic side effects of ketamine alone.

Study at a glance

Characteristics Animal study Peer reviewed
Population Mice
Interventions Ketamine Melatonin
Dose non-effective dose of ketamine
Keywords Medicine
Key finding A combination of a non-effective dose of ketamine and melatonin increased neurogenesis and produced antidepressant-like effects without altering locomotor activity in mice.

Abstract

Major depressive disorder is a disabling disease with the number of affected individuals increasing each year. Current antidepressant treatments take between three to six weeks to be effective with forty percent of patients being resistant to treatment, making it necessary to search for new antidepressant treatments. Ketamine, a phencyclidine hydrochloride derivative, given intravenously, induces a rapid antidepressant effect in humans. In mice, it causes increased neurogenesis and antidepressant-like effects. However, it also produces psychomimetic effects in humans and in rodents increases the locomotor activity. In contrast, melatonin, a hormone secreted by the pineal gland and synthesized in extrapineal sites, increases new neuron formation and causes antidepressant-like effects in adult rodents with no collateral effects. Here, we assessed the effects of a non-effective dose of ketamine in combination with melatonin (KET/MEL), both on neurogenesis as well as on the antidepressant-like effect in mice. Our results showed that KET/MEL combination increased neurogenesis and produced antidepressant-like effects without altering locomotor activity after both single and triple administration protocols. Our data strongly suggest that KET/MEL combination could be used to simultaneously promote neurogenesis, reverting neuronal atrophy and inducing antidepressant-like effects.

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