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D I Margolin

Publications and source records attributed to D I Margolin.

20 records · Page 2Linked to original sources

Amphetamine-induced dopaminergic hypersensitivity in guinea pigs. Implications in psychosis and human movement disorders.

Following chronic amphetamine pretreatment, guinea pigs demonstrate an increased sensitivity to both d-amphetamine sulfate- and apomorphine hydrochloride-induced stereotyped behavior. This observation suggests that chronic exposure to high doses of a dopamine agonist (d-amphetamine) alters the response of the brain to the subsequent administration of both indirect (d-amphetamine) and direct (apomorphine) dopamine agonists. This altered response may be due to the development of dopamine receptor site hypersensitivity. Clinical evidence suggests that a similar agonist-induced hypersensitivity may play a role in the development of dyskinetic movement disorders and psychoses in humans following the chronic use of such dopamine agonists as amphetamine and levodopa.

Amphetamine↗

Supersensitivity to d-amphetamine- and apomorphine-induced stereotyped behavior induced by chronic d-amphetamine administration.

Guinea pigs exhibit an increased sensitivity to both d-amphetamine- and apomorphine-induced stereotyped behavior following chronic pretreatment with d-amphetamine. This chronic agonist or "innervation" supersensitivity is believed to be a reflection of an increased sensitivity of dopamine receptor sites within the corpus striatum to dopaminergic agonists. The appearance of dyskinetic movement disorders in humans following the chronic use of levodopa or amphetamine may be a manifestation of similarly increased dopamine receptor site sensitivity within the striatum. It is suggested that the animal model of "innervation" supersensitivity may be useful in the investigation of these human movement disorders.

Animals↗