Related Experiment Video
Updated: Jun 28, 2026

A Conditioned Place Preference Protocol for Measuring Incubation of Craving in Rats
Published on: November 6, 2018
Mirtazapine treatment after conditioning with methamphetamine alters subsequent expression of place preference
Amy A Herrold1, Fei Shen, Martin P Graham
1Neuroscience Program, Loyola University Chicago Medical Center, Maywood, IL 60153, USA. amy_herrold@rush.edu
Abstract:
Methamphetamine (MP) is a widely abused psychostimulant. There are currently no FDA approved pharmacotherapies for the MP addict. The antidepressant, mirtazapine (Mirt) is a high affinity antagonist at several monoaminergic receptors that are affected by MP. This study evaluated the potential of Mirt as a therapeutic agent for MP addiction and described associated changes in neuronal signaling. A single pairing conditioned place preference (CPP) paradigm was utilized as a behavioral measure of MP-induced effects. Rats learned to associate unique environmental cues with the effects of 1.0 mg/kg (i.p.) MP (day 1) or saline (day 2). Mirt (5.0 mg/kg i.p.) was given in the home cage on day 3 and CPP was assessed on day 4. To evaluate signaling events that correlate with this behavior, brain tissue of these rats were dissected for immunoblot assays of extracellular signal-regulated kinase (ERK) and a transcriptional regulator, cAMP response element-binding protein (CREB) after the CPP test. During the CPP test, rats conditioned with MP spent more time in the environment associated with MP. Importantly, rats given Mirt did not express CPP. MP-induced CPP was associated with a decrease in phosphorylated CREB (pCREB) in the ventral tegmental area, and decreased phosphorylated ERK and pCREB in the nucleus accumbens and treatment with Mirt did not reverse these changes. No changes in signaling proteins were obtained from rats similarly treated with MP and Mirt, without exposure to cues of the conditioning paradigm. Overall, a post-conditioning treatment with Mirt can nullify MP-induced associative learning. However, additional studies are needed to ascertain the molecular events underlying this effect of Mirt.
Insights
Mirtazapine (Mirt) can block methamphetamine (MP) addiction-related behaviors in rats by disrupting associative learning. However, it did not reverse MP-induced changes in key neuronal signaling pathways like ERK and CREB.
Area of Science:
- Neuroscience
- Pharmacology
- Addiction Research
Background:
- Methamphetamine (MP) addiction lacks FDA-approved treatments.
- Mirtazapine (Mirt), an antidepressant, antagonizes monoaminergic receptors affected by MP.
Purpose of the Study:
- To evaluate mirtazapine (Mirt) as a potential therapeutic agent for methamphetamine (MP) addiction.
- To investigate associated changes in neuronal signaling pathways.
Main Methods:
- A conditioned place preference (CPP) paradigm was used to measure MP-induced effects in rats.
- Rats received MP or saline, followed by Mirt administration.
- Immunoblot assays assessed extracellular signal-regulated kinase (ERK) and cAMP response element-binding protein (CREB) in brain tissue.
Main Results:
- MP-conditioned rats showed increased preference for MP-associated environments.
- Mirt administration prevented the expression of MP-induced CPP.
- MP-induced CPP correlated with decreased phosphorylated CREB (pCREB) in the ventral tegmental area and decreased phosphorylated ERK and pCREB in the nucleus accumbens.
- Mirt treatment did not reverse these observed neurochemical changes.
Conclusions:
- Post-conditioning mirtazapine (Mirt) treatment can abolish methamphetamine (MP)-induced associative learning.
- The molecular mechanisms underlying Mirt's effect on MP addiction require further investigation.
More Related Videos
10:28Assessment of Cocaine-induced Behavioral Sensitization and Conditioned Place Preference in Mice
Published on: February 18, 2016
08:22Stereotaxic Microinjection of Viral Vectors Expressing Cre Recombinase to Study the Role of Target Genes in Cocaine Conditioned Place Preference
Published on: July 30, 2013