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Published on: July 9, 2016
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.
Abstract:
We investigated the role of mu-opioid receptor (mu-OR) and dopamine receptor in the modulation of methamphetamine (METH)-induced expression of zif268 mRNA in the striatum of mice. Four groups of wild-type and mu-OR knockout mice were given a single daily intraperitoneal injection of saline (control; group 1) or METH (10mg/kg; groups 2-4) for 7 consecutive days. On day 11 (after 4 abstinent days), groups 1 and 2 were challenged with saline, group 3 was challenged with METH (10mg/kg), and group 4 was challenged with dopamine receptor antagonist haloperidol (0.06 mg/kg, subcutaneous injection) plus METH (10mg/kg). Two hours after the last saline or METH injection, mouse brain tissues were taken for zif268 mRNA analysis using in situ hybridization histochemistry. In comparison to corresponding saline control group (group 1), striatal zif268 mRNA levels were unchanged in group 2 and increased in group 3 in both wild-type and mu-OR knockout mice and without genotype difference. METH challenge-enhanced expression of zif268 mRNA was completely abolished by pre-administration of haloperidol (group 4) in mu-OR knockout mice but not in wild-type mice. The results suggest a crosstalk of the two neurotransmitter systems in modulation of METH-induced IEG expression, because only in mu-OR knockout mice in which dopamine receptors were blocked were METH-induced zif268 expression abolished. METH-induced zif268 expression was not altered in mu-OR knockout mice without blockade of dopamine receptors or wild-type mice with blockade of dopamine receptors.
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.
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