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Phencyclidine and related compounds evoked [3H]dopamine release from rat mesencephalic cell cultures by a mechanism independent of the phencyclidine receptor, sigma binding site, or dopamine uptake site.

H Mount, P Boksa, I Chaudieu, R Quirion

Canadian journal of physiology and pharmacology September 1, 1990 DOI: 10.1139/y90-180 via PubMed

Summary

AI-generated from the abstract

At high concentrations (≥100 μM), the drugs phencyclidine (PCP), TCP, and MK-801 triggered dopamine release from cultured rat mesencephalon cells. This release did not depend on calcium, was not blocked by tetrodotoxin, and was not stereoselective for certain drug enantiomers. A sigma ligand and a potassium channel blocker also induced release, but a dopamine uptake inhibitor did not affect spontaneous or TCP-evoked release. The findings suggest that PCP-like compounds cause dopamine release through a mechanism not involving PCP receptors, sigma sites, calcium or sodium channels, or the dopamine transporter, possibly by blocking voltage-regulated potassium channels.

Study at a glance

Characteristics In vitro experimental study Peer reviewed
Population Dissociated cell cultures of rat mesencephalon
Interventions Phencyclidine (PCP) N-(1-(2-thienyl)-cyclohexyl)piperidine (TCP) MK-801 1 3-di(2-tolyl)guanidine 4-aminopyridine dexoxadrol levoxadrol N-allylnormetazocine (SKF 10 GBR 12909
Key finding Dopamine release by PCP-like compounds in rat mesencephalic cells appears not to be mediated by PCP receptors, sigma binding sites, calcium or sodium channels, or the dopamine uptake site, but may involve blockade of voltage-regulated potassium channels.

Abstract

At concentrations greater than or equal to 100 microM, phencyclidine (PCP), N-(1-(2-thienyl)-cyclohexyl)piperidine (TCP), and MK-801 induced [3H]dopamine release from dissociated cell cultures of rat mesencephalon. This release was Ca2+ independent and tetrodotoxin insensitive. Tetrodotoxin (2 microM) itself had no effect on spontaneous release of [3H]dopamine. [3H]Dopamine release was induced by 1,3-di(2-tolyl)guanidine, a sigma ligand, and by 4-aminopyridine (1-3 mM), a K+ channel blocker. No stereoselectivity was observed for [3H]dopamine release evoked by the dioxadrol enantiomers, dexoxadrol, and levoxadrol, or by enantiomers of N-allylnormetazocine (SKF 10,047). The selective dopamine uptake inhibitor 1-(2-[bis(4-fluorophenyl)methoxy]ethyl)-4-(3-phenylpropyl)piperazine dihydrochloride (GBR 12909) did not affect spontaneous or TCP-evoked [3H]dopamine release. Together, these data suggest that the dopamine-releasing effects of PCP-like compounds on the mesencephalic cells were not mediated by actions at the PCP receptor or sigma binding site, Ca2+, or Na+ channels, or at the high affinity dopamine uptake site. It remains conceivable that blocking actions of PCP-like compounds at voltage-regulated K+ channels may at least partly explain the response. These results are discussed in comparison with findings in intact brain.

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