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