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(R)-(-)-Ketamine: The Promise of a Novel Treatment for Psychiatric and Neurological Disorders.

Hana Shafique, Julie C Demers, Julia Biesiada, Lalit K Golani, Rok Cerne, Jodi L Smith, Marta Szostak, Jeffrey M. Witkin

International Journal of Molecular Sciences June 20, 2024 DOI: 10.3390/ijms25126804 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Review Peer reviewed
Topics Addiction Depression Ketamine Esketamine
Keywords Inflammation Rapid-acting antidepressant Mental health treatment Antidepressant therapy Ketamine research Psychiatric medicine
Citations 29
Key findings (R)-ketamine shows efficacy in animal models and clinical studies for treatment-resistant depression and bipolar depression, with fewer side effects and lower abuse potential than (S)-ketamine.

Abstract

NMDA receptor antagonists have potential for therapeutics in neurological and psychiatric diseases, including neurodegenerative diseases, epilepsy, traumatic brain injury, substance abuse disorder (SUD), and major depressive disorder (MDD). (S)-ketamine was the first of a novel class of antidepressants, rapid-acting antidepressants, to be approved for medical use. The stereoisomer, (R)-ketamine (arketamine), is currently under development for treatment-resistant depression (TRD). The compound has demonstrated efficacy in multiple animal models. Two clinical studies disclosed efficacy in TRD and bipolar depression. A study by the drug sponsor recently failed to reach a priori clinical endpoints but post hoc analysis revealed efficacy. The clinical value of (R)-ketamine is supported by experimental data in humans and rodents, showing that it is less sedating, does not produce marked psychotomimetic or dissociative effects, has less abuse potential than (S)-ketamine, and produces efficacy in animal models of a range of neurological and psychiatric disorders. The mechanisms of action of the antidepressant effects of (R)-ketamine are hypothesized to be due to NMDA receptor antagonism and/or non-NMDA receptor mechanisms. We suggest that further clinical experimentation with (R)-ketamine will create novel and improved medicines for some of the neurological and psychiatric disorders that are underserved by current medications.

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