Abstract
Different neuroleptics caused dopamine receptor blockade (antagonism against methylphenidate-induced compulsive gnawing) for varying lengths of time. When the receptor blockade had expired, supersensitivity to dopamine agonists (occurrence of apomorphine-induced compulsive gnawing and enhancement of methylphenidate-induced gnawing) developed and persisted for varying periods of time. The degree and duration of supersensitivity was related to the degree and duration of the preceding receptor blockade. Inhibition of catecholamine or 5-HT synthesis had no influence on development of supersensitivity. Stimulation with a dopamine agonist, apomorphine, during the period of the development of supersensitivity did not modify the enhanced receptor supersensitivity. A cholinergic-dopaminergic balance was shown to be involved in the manifestation of compulsive behavior during the supersensitivity phase. Tolerance to the dopamine antagonistic effect of a neuroleptic also developed after a single neuroleptic treatment, most likely due to increased sensitivity of the receptors for the dopamine agonist. It is concluded, that the dopamine receptor blockade induced by a single dose of a neuroleptic agent is a dynamic phenomenon which in the course of time is replaced by an increased sensitivity of the receptors to dopamine agonists. Noradrenergic or 5-HT neuron systems do not seem to be involved in the neuroleptic-induced supersensitivity, whereas a dopaminergic-cholinergic balance is operative in the supersensitivity situation.
MeSH Terms
Animals
Apomorphine/pharmacology
Dopamine/metabolism
Drug Tolerance
Humans
Male
Methylphenidate/antagonists & inhibitors,pharmacology
Mice
Neurotransmitter Agents/metabolism
Receptors, Drug/drug effects
Stereotyped Behavior/drug effects
Tranquilizing Agents/pharmacology
Chemicals
Neurotransmitter Agents
Receptors, Drug
Tranquilizing Agents
Methylphenidate
Apomorphine
Dopamine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Christensen A V
Fjalland B
Nielsen I M
References (22)
22 references, click to expand
-
Methylphenidate antagonism of haloperidol, interaction with cholinergic and anticholinergic drugs.
Psychopharmacologia. 1974 Jan 11;34(2):111-8
PMID: 4856368
-
Amphetamine-induced dopaminergic hypersensitivity in guinea pigs. Implications in psychosis and human movement disorders.
Arch Gen Psychiatry. 1975 Jun;32(6):725-32
PMID: 1130936
-
[Apomorphine synergism (inducedgnawing in mice) as a test for the differentiation of psychotropic substances].
Arch Int Pharmacodyn Ther. 1962 Jul 1;138:302-10
PMID: 13920554
-
Neuroleptic-induced hypersensitivity of striatal dopamine receptors in the rat as a model of tardive dyskinesias. Effects of clozapine, haloperidol, loxapine and chlorpromazine.
Psychopharmacologia. 1975;41(2):97-104
PMID: 1171492
-
Long-term effects of teflutixol on the synthesis and endogenous levels of mouse brain catecholamines.
J Neurochem. 1975 Nov;25(5):681-6
PMID: 1194924
-
Enhancement of methylphenidate-induced stereotypies by repeated administration of neuroleptis.
Psychopharmacologia. 1974 Jan 11;34(2):105-9
PMID: 4856367
-
Antagonism of methylphenidate-induced stereotyped gnawing in mice.
Acta Pharmacol Toxicol (Copenh). 1972;31(5):488-96
PMID: 4678829
-
An experimental model of tardive dyskinesia.
J Neural Transm. 1972;33(3):235-46
PMID: 4674512
-
Tolerance phenomena with neuroleptics catalepsy, apomorphine stereotypies and striatal dopamine metabolism in the rat after single and repeated administration of loxapine and haloperidol.
Eur J Pharmacol. 1973 Jun;22(3):287-94
PMID: 4738903
-
Behavioural supersensitivity to apomorphine following chronic treatment with drugs which interfere with the synaptic function of catecholamines.
Neuropharmacology. 1974 Nov;13(10-11):927-40
PMID: 4474641
-
Pharmacology of neuroleptics upon repeated administration.
Psychopharmacologia. 1974 Jan 11;34(2):95-104
PMID: 4856370
-
Antischizophrenic drugs and brain cholinergic receptors. Affinity for muscarinic sites predicts extrapyramidal effects.
Arch Gen Psychiatry. 1974 Jul;31(1):58-61
PMID: 4152054
-
Increased sensitivity to dopaminergic agents after chronic neuroleptic treatment.
J Pharmacol Exp Ther. 1975 Apr;193(1):88-94
PMID: 166158
-
Adrenergic effect of chronic administration of neuroleptics.
Nature. 1967 Jun 17;214(5094):1210-2
PMID: 6066102
-
Comparative studies of various amphetamine analogues demonstrating different interactions with the metabolism of the catecholamines in the brain.
Eur J Pharmacol. 1971;14(1):47-59
PMID: 4396660
-
Influence of flupenthixol and flupenthixol-decanoate on methylphenidate and apomorphine-induced compulsive gnawing in mice.
Psychopharmacologia. 1974 Jan 11;34(2):119-26
PMID: 4856369
-
Anti-muscarinic properties of neuroleptics and drug-induced Parkinsonism.
Nature. 1974 Apr 12;248(449):596-7
PMID: 4150951
-
[Pharmacological studies on the effect of neuroleptics in animals after single and repeated application].
Arzneimittelforschung. 1968 Dec;18(12):1491-5
PMID: 4388325
-
Potentiation of apomorphine effect (compulsive gnawing behaviour) in mice.
Acta Pharmacol Toxicol (Copenh). 1967;25:Suppl 4:63
PMID: 5630956
-
Central effects of anticholergic drugs measured by the apomorphine gnawing test in mice.
Acta Pharmacol Toxicol (Copenh). 1970;28(1):1-16
PMID: 5467751
-
Serotonergic and antiserotonergic influences on apomorphine-induced stereotyped behaviour.
Acta Pharmacol Toxicol (Copenh). 1975 Feb;36(2):155-60
PMID: 1079682
-
Modification of certain central nervous effects of haloperidol during long-term treatment in the mouse and rat.
Psychopharmacologia. 1969;16(3):223-33
PMID: 5391697