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Published on: August 27, 2016
Acute and sensitized response to 3,4-methylenedioxymethamphetamine in rats: different behavioral profiles reflected
Joyce Colussi-Mas1, Susan Schenk
1School of Psychology, Victoria University of Wellington, Wellington, PO Box 600, New Zealand.
Abstract:
The behavioral profile in response to (+/-)-3,4-methylenedioxymethamphetamine (MDMA) is characterized by acute hyperlocomotion that is primarily restricted to the periphery of the open field, whereas behavioral sensitization to MDMA reflects a selective increase in activity in the central zone, suggesting that acute effects and sensitization might rely on neuroadaptations in different systems. This study was thus undertaken to determine whether specific changes in neuronal activation could be correlated with either the acute or sensitized behavioral responses to MDMA. Animals received five daily intraperitoneal (i.p.) injections of saline or MDMA (10 mg/kg). Two days later, animals that received saline were injected with saline or MDMA (5 or 10 mg/kg, i.p.). Animals pretreated with MDMA were injected with saline or MDMA (5 mg/kg, i.p.). Locomotor activity was measured in an open field, and neuronal activation was examined by immunodetection of Fos. Acute MDMA exposure produced a dose-dependent increase in locomotion in the peripheral zone of the open field that was related to an increase in Fos expression in the ventromedial shell of the nucleus accumbens, ventral pallidum, several hypothalamic nuclei and rhomboid thalamic nucleus. Following repeated, intermittent exposure to MDMA, drug-produced hyperactivity became sensitized but, unlike the effect of increasing dose, the increased response was due to increased activity and time spent in the central zone. Furthermore, the sensitized behavioral response was related to changes in Fos expression in the lateral shell of the nucleus accumbens, central nucleus of the amygdala and anteromedial part of the lateral habenula. This study identifies neural substrates that might specifically underlie the sensitized response to MDMA.
Insights
Acute and sensitized responses to MDMA involve distinct brain regions. Acute MDMA affects peripheral activity linked to nucleus accumbens shell and hypothalamus, while sensitization impacts central activity via amygdala and habenula.
Area of Science:
- Neuroscience
- Psychopharmacology
- Behavioral Science
Background:
- 3,4-methylenedioxymethamphetamine (MDMA) elicits distinct behavioral responses.
- Acute MDMA exposure causes peripheral hyperlocomotion, while sensitization leads to central hyperactivity.
- These differing behavioral patterns suggest distinct underlying neuroadaptations.
Purpose of the Study:
- To investigate the neural correlates of acute and sensitized behavioral responses to MDMA.
- To identify specific changes in neuronal activation associated with these distinct behavioral states.
Main Methods:
- Animals received repeated intraperitoneal (i.p.) injections of MDMA or saline.
- Locomotor activity was assessed in an open field.
- Neuronal activation was measured using Fos immunodetection.
Main Results:
- Acute MDMA exposure increased peripheral locomotion and Fos expression in the ventromedial shell of the nucleus accumbens, ventral pallidum, hypothalamus, and rhomboid thalamic nucleus.
- Sensitized MDMA response involved increased central activity and Fos expression in the lateral shell of the nucleus accumbens, amygdala, and lateral habenula.
Conclusions:
- Acute and sensitized behavioral responses to MDMA are mediated by distinct neural circuits.
- Specific brain regions, including the nucleus accumbens, amygdala, and habenula, play differential roles in MDMA's acute and long-term effects.
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