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Differential effects of amphetamine and phencyclidine on the expression of growth-associated protein GAP-43.

S Vukosavic, S Ruzdijic, R Veskov, L Rakic, S Kanazir

Neuroscience research June 1, 2001 DOI: 10.1016/s0168-0102(01)00222-x via PubMed

Summary

AI-generated from the abstract

Chronic treatment with amphetamine reduced GAP-43 mRNA expression in rats, an effect that persisted for up to 14 days after the last dose, suggesting a neurotoxic effect. In contrast, phencyclidine increased GAP-43 mRNA expression, detectable from early treatment until 21 days after the last dose, indicating activation of pathways involved in remodeling. Haloperidol did not significantly change GAP-43 mRNA expression.

Study at a glance

Characteristics Controlled animal study Peer reviewed
Population Rats
Interventions Amphetamine Phencyclidine Haloperidol
Dose 5 mg/kg
Duration 7-day treatment (twice daily), with sacrifice at 2, 5, or 7 days of treatment and after 7, 14, or 21 days of recovery
Key finding Amphetamine decreased and phencyclidine increased GAP-43 mRNA expression in rats, while haloperidol had no significant effect.

Abstract

The purpose of the present study was to test changes in the expression of growth-associated protein (GAP-43) after chronic treatment with two different psychotomimetic drugs: amphetamine and phencyclidine. Rats were treated chronically for 7 days (twice daily) with 5 mg/kg of amphetamine and phencyclidine and sacrificed after 2, 5 or 7 days of treatment, and following 7, 14 or 21 days of recovery after full treatment (7 days). Separate groups of rats were treated on the same regiment with haloperidol, and control group was treated with vehicle. To determine the effects of different psychotomimetic drugs on the expression of GAP-43 we have used Northern blotting and quantitative in situ hybridization. Treatment with amphetamine induced decrease of GAP-43 mRNA expression, that was detected also during recovery period, up to 14 days after the last day of 7 days treatments. On the contrary, PCP induced increase of GAP-43 mRNA expression, that was detectable from the first days of treatment until 21 days after the last day of treatment. Treatment with haloperidol did not produce significant changes in GAP-43 mRNA expression. It can be suggested that GAP-43 upregulation upon phencyclidine treatment occurs as a result of functional activation of pathways able to participate in remodeling, while amphetamine showed neurotoxic effect, decreasing expression of GAP-43 mRNA.

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