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PMID: 2940101 Published · ppublish English Journal Article Review

Neurophysiological evidence that D-1 dopamine receptor blockade attenuates postsynaptic but not autoreceptor-mediated effects of dopamine agonists.

European journal of pharmacology ·Vol. 123 ·No. 2 ·1986-04-16 ·Pages 237-51

Carlson JH, Bergstrom DA, Walters JR

Abstract

The putatively selective D-1 dopamine receptor antagonist SCH 23390 was used to study the role of the D-1 dopamine receptor in mediating the pre- and postsynaptic effects of dopamine agonists in the basal ganglia. SCH 23390 (1 mg/kg) had no significant effect on the tonic activity of substantia nigra dopamine neurons in 47% of the 19 cells studied, while the firing rates of 53% of the cells were increased. SCH 23390 did not shift the dose response of these cells to apomorphine, whereas the selective D-2 antagonist, YM-09151-2 completely blocked apomorphine's inhibitory effects on nigral dopamine cell activity. These results suggest that SCH 23390 does not interact with the D-2 dopamine autoreceptors, but does excite a subpopulation of dopamine neurons presumably through postsynaptic actions. In contrast to its inability to modify the effects of apomorphine on dopamine autoreceptors, SCH 23390 partially to fully reversed the effects of apomorphine on globus pallidus and substantia nigra pars reticulata cell activity and significantly attenuated the effects of apomorphine, pergolide, quinpirole (LY 171555) and d-amphetamine on firing rates of globus pallidus neurons. The D-1 antagonist alone had no significant effect on tonic globus pallidus neuronal activity. SCH 23390 was more potent than haloperidol in its ability to attenuate the effects of apomorphine on pallidal activity, but unlike haloperidol, was unable to totally inhibit these effects, suggesting that the two antagonists block the excitatory effects of apomorphine on pallidal cell firing rates by different mechanisms. The serotonin2 receptor antagonist, ketanserin, had no effect on pallidal or dopamine cell activity, indicating that the effects of SCH 23390 were not mediated through interactions with serotonin2 receptors. These results suggest that D-1 receptor blockade attenuates the postsynaptic, but not autoreceptor-mediated effects of dopamine agonists.

MeSH Terms
Animals Apomorphine/pharmacology Basal Ganglia/drug effects,physiology Benzazepines/pharmacology Dextroamphetamine/pharmacology Dopamine Antagonists Electrophysiology Ergolines/pharmacology Globus Pallidus/drug effects,physiology Haloperidol/pharmacology Ketanserin Neurons/drug effects,physiology Pergolide Piperidines/pharmacology Quinpirole Rats Receptors, Dopamine/drug effects,physiology Substantia Nigra/drug effects,physiology
Chemicals
Benzazepines Dopamine Antagonists Ergolines Piperidines Receptors, Dopamine Quinpirole Pergolide Ketanserin Haloperidol Apomorphine Dextroamphetamine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Carlson J H
Bergstrom D A
Walters J R
Article Info
Journal
European journal of pharmacology
Abbr.
Eur J Pharmacol
ISSN
0014-2999
Published
1986-04-16
Pages
237-51
Language
English
Region
Netherlands
NLM ID
1254354
Subset
IM
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