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Methamphetamine-induced neurotoxicity alters locomotor activity, stereotypic behavior, and stimulated dopamine
T L Wallace1, G A Gudelsky, C V Vorhees
1Neuroscience Graduate Program, University of Cincinnati, Cincinnati, Ohio 45267, USA.
Abstract:
The neurochemical evidence of methamphetamine (MA)-induced toxicity to dopaminergic nerve terminals is well documented; however, the functional consequences are not clearly defined. The present study was designed to investigate whether MA-induced dopamine depletions affect locomotor activity, stereotypic behavior, and/or extracellular dopamine concentrations in the neostriatum. Male rats were treated with a neurotoxic regimen of MA (10 mg/kg, i.p., every 2 hr for four injections) or vehicle and tested for functional effects 1 week later. Animals that had received the neurotoxic regimen of MA showed a reduction in both caudate nucleus and nucleus accumbens dopamine contents of 56 and 30%, respectively. Furthermore, MA-treated rats exhibited a significant attenuation in spontaneous activity, as well as a significant diminution in MA (low dose)-stimulated locomotor activity as compared to vehicle-treated rats. However, there were no differences in the MA (low dose)-induced increases in extracellular dopamine concentrations in the caudate nucleus or the nucleus accumbens core of either group. Interestingly, the acute administration of higher doses of MA elicited a significantly augmented stereotypic response and a significantly attenuated increase in the extracellular concentration of dopamine in the caudate nucleus of rats treated with a neurotoxic regimen of MA as compared to vehicle-treated animals. These data indicate that MA-induced neurotoxicity results in abnormal dopamine-mediated behaviors, as well as a brain region-specific impairment in stimulated dopamine release.
Insights
Methamphetamine (MA) neurotoxicity depletes dopamine in rats, impairing locomotor activity and altering stereotypic behaviors. This study reveals functional consequences of MA-induced dopamine depletions.
Area of Science:
- Neuroscience
- Pharmacology
- Neurotoxicology
Background:
- Methamphetamine (MA) neurotoxicity to dopaminergic nerve terminals is established.
- Functional consequences of MA-induced dopamine depletions remain unclear.
Purpose of the Study:
- Investigate the effects of MA-induced dopamine depletions on locomotor activity.
- Assess changes in stereotypic behavior following MA treatment.
- Examine extracellular dopamine concentrations in the neostriatum after MA exposure.
Main Methods:
- Male rats received a neurotoxic regimen of MA or vehicle.
- Functional effects were assessed 1 week post-treatment.
- Dopamine content, locomotor activity, stereotypic behavior, and extracellular dopamine were measured.
Main Results:
- MA treatment significantly reduced dopamine in the caudate nucleus and nucleus accumbens.
- MA-induced neurotoxicity attenuated spontaneous and low-dose MA-stimulated locomotor activity.
- High-dose MA elicited augmented stereotypic responses and attenuated dopamine release in MA-treated rats.
Conclusions:
- MA neurotoxicity leads to abnormal dopamine-mediated behaviors.
- Impaired stimulated dopamine release in a brain region-specific manner occurs after MA neurotoxicity.