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Pharmacokinetic, pharmacodynamic, and behavioural studies of deschloroketamine in Wistar rats.

Kristýna Štefková-mazochová, Hynek Danda, Wim Dehaen, Bronislav Jurásek, Klára Šíchová, Nikola Pinterová-Leca, Vladimír Mazoch, Barbora Hrčka Krausová, Bohdan Kysilov, Tereza Smejkalová, Ladislav Vyklický, Michal Kohout, Kateřina Hájková, Daniel Svozil, Rachel R Horsley, Martin Kuchař, Tomáš Páleníček

British journal of pharmacology January 1, 2022 DOI: 10.1111/bph.15680 via PubMed

Summary

AI-generated from the abstract

Deschloroketamine (DCK), a structural analogue of ketamine sold as a recreational drug, was tested in Wistar rats to examine its pharmacokinetics, acute effects, and addictive potential. DCK rapidly entered the brain, with peak levels at 30 minutes and sustained high levels for 2 hours. It blocks NMDA receptors similarly to ketamine, with the S-enantiomer more potent. DCK stimulated locomotion, induced place preference (a sign of reward), and strongly disrupted prepulse inhibition (PPI). Locomotor stimulation faded faster than PPI disruption. S-DCK had stronger stimulatory effects than R-DCK, but both equally disrupted PPI. DCK's behavioral and addictive profiles resemble ketamine's, with a slightly slower clearance, matching its reported longer duration. These findings clarify risks of illicit DCK use.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Wistar rats
Interventions Deschloroketamine S-DCK R-DCK
Dose 5, 10, and 30 mg·kg-1 for DCK; 10 mg·kg-1 for S-DCK and R-DCK
Keywords Nmda receptor Deschloroketamine Enantiomers Locomotion Pharmacokinetics
Citations 13
Key finding Deschloroketamine shows similar behavioral and addictive profiles to ketamine, with a slightly slower pharmacokinetic profile, and its S-enantiomer is more potent at NMDA receptors and in stimulating locomotion.

Abstract

Deschloroketamine (DCK), a structural analogue of ketamine, has recently emerged on the illicit drug market as a recreational drug with a modestly long duration of action. Despite it being widely used by recreational users, no systematic research on its effects has been performed to date. Pharmacokinetics, acute effects, and addictive potential in a series of behavioural tests in Wistar rats were performed following subcutaneous (s.c.) administration of DCK (5, 10, and 30 mg·kg-1 ) and its enantiomers S-DCK (10 mg·kg-1 ) and R-DCK (10 mg·kg-1 ). Additionally, activity at human N-methyl-d-aspartate (NMDA) receptors was also evaluated. DCK rapidly crossed the blood brain barrier, with maximum brain levels achieved at 30 min and remaining high at 2 h after administration. Its antagonist activity at NMDA receptors is comparable to that of ketamine with S-DCK being more potent. DCK had stimulatory effects on locomotion, induced place preference, and robustly disrupted PPI. Locomotor stimulant effects tended to disappear more quickly than disruptive effects on PPI. S-DCK had more pronounced stimulatory properties than its R-enantiomer. However, the potency in disrupting PPI was comparable in both enantiomers. DCK showed similar behavioural and addictive profiles and pharmacodynamics to ketamine, with S-DCK being in general more active. It has a slightly slower pharmacokinetic profile than ketamine, which is consistent with its reported longer duration of action. These findings have implications and significance for understanding the risks associated with illicit use of DCK.

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