Skip to content

Dopamine receptor contribution to the action of PCP, LSD and ketamine psychotomimetics.

P Seeman, F Ko, T Tallerico

Molecular Psychiatry September 1, 2005 DOI: 10.1038/sj.mp.4001682 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics In vitro binding study Peer reviewed
Population Human cloned dopamine D2 receptors and rat striatal tissue
Topics Esketamine Ketamine LSD
Key points Phencyclidine, ketamine, dizocilpine, and LSD have higher affinity for the D2High receptor than for the NMDA receptor, indicating that their psychotomimetic effects involve D2 agonism.

Abstract

Although phencyclidine and ketamine are used to model a hypoglutamate theory of schizophrenia, their selectivity for NMDA receptors has been questioned. To determine the affinities of phencyclidine, ketamine, dizocilpine and LSD for the functional high-affinity state of the dopamine D2 receptor, D2High, their dissociation constants (Ki) were obtained on [3H]domperidone binding to human cloned dopamine D2 receptors. Phencyclidine had a high affinity for D2High with a Ki of 2.7 nM, in contrast to its low affinity for the NMDA receptor, with a Ki of 313 nM, as labeled by [3H]dizocilpine on rat striatal tissue. Ketamine also had a high affinity for D2High with a Ki of 55 nM, an affinity higher than its 3100 nM Ki for the NMDA sites. Dizocilpine had a Ki of 0.3 nM at D2High, but a Kd of 1.8 nM at the NMDA receptor. LSD had a Ki of 2 nM at D2High. Because the psychotomimetics had higher potency at D2High than at the NMDA site, the psychotomimetic action of these drugs must have a major contribution from D2 agonism. Because these drugs have a combined action on both dopamine receptors and NMDA receptors, these drugs, when given in vivo, test a combined hyperdopamine and hypoglutamate theory of psychosis.