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Published on: January 22, 2016
Effect of methamphetamine neurotoxicity on learning-induced Arc mRNA expression in identified striatal efferent
David P Daberkow1, Matthew D Riedy, Raymond P Kesner
1Departments of Pharmacology and Toxicology, Psychology, and Program in Neuroscience, University of Utah, Salt Lake City, UT 84112, USA.
Abstract:
Methamphetamine abuse results in lasting, partial depletions of striatal dopamine and cognitive dysfunction. However, the effect of partial dopamine depletions on the expression of an effector immediate early gene, Arc (activity regulated, cytoskeletal-associated protein), known to be involved in synaptic modifications underlying learning and memory, has heretofore not been examined. Male Sprague-Dawley rats were pretreated with a neurotoxic regimen of methamphetamine or saline. Seven weeks later, rats were trained in a motor-response task on a T-maze for five days, and then underwent reversal training on day five. Rats were sacrificed 5 min after reaching criterion on the reversal task, and the brains were removed and processed using double-label fluorescent in situ hybridization for Arc and preproenkephalin (PPE) mRNA expression in the dorsomedial striatum. Rats pretreated with methamphetamine had an average (+/-SEM) 54.4+/-7.9% loss of dopamine in dorsomedial striatum. Interestingly, there was no difference in reversal trials to criterion in methamphetamine- vs. saline-pretreated rats. However, the expression of Arc mRNA in dorsomedial striatum was attenuated in methamphetamine-pretreated animals, particularly in PPE-negative neurons. Furthermore, the correlation between Arc mRNA expression in dorsomedial striatum and learning was abolished in methamphetamine-pretreated animals. These data suggest that methamphetamine-induced partial monoamine loss is associated with disrupted induction of the effector immediate early gene Arc during a behavioral task, particularly in PPE-negative (presumed striatonigral) neurons, as well as with disruption of the relation between Arc mRNA expression in dorsomedial striatum and reversal learning.
Insights
Methamphetamine exposure impairs the brain
Area of Science:
- Neuroscience
- Neurobiology
- Molecular Psychiatry
Background:
- Methamphetamine abuse causes lasting dopamine depletions and cognitive deficits.
- The immediate early gene Arc is crucial for synaptic plasticity, learning, and memory.
- The impact of methamphetamine-induced dopamine loss on Arc expression remained unexamined.
Purpose of the Study:
- To investigate the effect of partial dopamine depletions on Arc gene expression in the dorsomedial striatum.
- To determine if methamphetamine-induced dopamine loss disrupts the relationship between Arc expression and reversal learning.
Main Methods:
- Male Sprague-Dawley rats received methamphetamine or saline pretreatment.
- Following a 7-week recovery, rats were trained and tested on a T-maze reversal learning task.
- Brain tissue was analyzed using in situ hybridization for Arc and preproenkephalin (PPE) mRNA in the dorsomedial striatum.
Main Results:
- Methamphetamine pretreatment resulted in a significant loss of dopamine in the dorsomedial striatum.
- No behavioral differences were observed in reversal learning trials to criterion between groups.
- Arc mRNA expression was reduced in methamphetamine-exposed rats, particularly in PPE-negative neurons.
- The correlation between Arc mRNA levels and reversal learning was abolished in the methamphetamine group.
Conclusions:
- Methamphetamine-induced partial dopamine loss disrupts Arc gene induction during behavioral tasks.
- This disruption is particularly evident in presumed striatonigral (PPE-negative) neurons.
- Methamphetamine impairs the functional link between Arc expression in the dorsomedial striatum and reversal learning.
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