Methamphetamine-induced expression of zif268 mRNA is prevented by haloperidol in mice lacking mu-opioid receptor

Lu-Tai Tien1, Ing-Kang Ho, Tangeng Ma

  • 1School of Medicine, Fu-Jen Catholic University, Hsin-Chuang, Taipei County, Taiwan.

Neurotoxicology
|February 27, 2010
PubMed

Insights

Methamphetamine (METH) increases zif268 mRNA in mouse striatum. Blocking dopamine receptors abolished this effect in mu-opioid receptor knockout mice, suggesting neurotransmitter system crosstalk.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Molecular Biology

Background:

  • Methamphetamine (METH) is a psychostimulant drug with significant abuse potential.
  • Methamphetamine affects multiple neurotransmitter systems, including dopamine and opioid pathways.
  • Zif268 mRNA is an immediate-early gene (IEG) induced by neuronal activity.

Purpose of the Study:

  • To investigate the roles of mu-opioid receptor (mu-OR) and dopamine receptors in METH-induced zif268 mRNA expression in the mouse striatum.
  • To explore potential crosstalk between mu-OR and dopamine systems in response to METH.

Main Methods:

  • Wild-type and mu-OR knockout mice received daily METH injections for 7 days.
  • Mice were challenged with saline, METH, or METH plus a dopamine receptor antagonist (haloperidol).
  • Zif268 mRNA levels in the striatum were analyzed using in situ hybridization histochemistry.

Main Results:

  • METH administration increased striatal zif268 mRNA levels in both wild-type and mu-OR knockout mice.
  • Pre-treatment with haloperidol abolished METH-induced zif268 mRNA expression specifically in mu-OR knockout mice.
  • Blocking dopamine receptors did not affect METH-induced zif268 expression in wild-type mice.

Conclusions:

  • There is a functional interaction between mu-opioid and dopamine receptor systems in regulating METH-induced zif268 mRNA expression.
  • Dopamine receptor blockade is critical for abolishing METH's effect on zif268 expression in the absence of mu-OR signaling.