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

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.