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Updated: Aug 3, 2025

Reinstatement of Drug-seeking in Mice Using the Conditioned Place Preference Paradigm
Published on: June 7, 2018
Amelioration of Nicotine-Induced Conditioned Place Preference Behaviors in Mice by an FABP3 Inhibitor
Wenbin Jia1,2, Ichiro Kawahata2, An Cheng1,2
1Department of Pharmacology, Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai 980-8578, Japan.
Abstract:
We previously demonstrated that fatty acid-binding protein 3 null (FABP3-/-) mice exhibit resistance to nicotine-induced conditioned place preference (CPP). Here, we confirm that the FABP3 inhibitor, MF1 ((4-(2-(1-(2-chlorophenyl)-5-phenyl-1H-pyrazol-3-yl)phenoxy) butanoic acid), successfully reduces nicotine-induced CPP scores in mice. MF1 (0.3 or 1.0 mg/kg) was orally administered 30 min before nicotine, and CPP scores were assessed in the conditioning, withdrawal, and relapse phases. MF1 treatment decreased CPP scores in a dose-dependent manner. Failure of CPP induction by MF1 (1.0 mg/kg, p.o.) was associated with the inhibition of both CaMKII and ERK activation in the nucleus accumbens (NAc) and hippocampal CA1 regions. MF1 treatment reduced nicotine-induced increases in phosphorylated CaMKII and cAMP-response element-binding protein (CREB)-positive cells. Importantly, the increase in dopamine D2 receptor (D2R) levels following chronic nicotine exposure was inhibited by MF1 treatment. Moreover, the quinpirole (QNP)-induced increase in the level of CaMKII and ERK phosphorylation was significantly inhibited by MF1 treatment of cultured NAc slices from wild type (WT) mice; however, QNP treatment had no effect on CaMKII and ERK phosphorylation levels in the NAc of D2R null mice. Taken together, these results show that MF1 treatment suppressed D2R/FABP3 signaling, thereby preventing nicotine-induced CPP induction. Hence, MF1 can be used as a novel drug to block addiction to nicotine and other drugs by inhibiting the dopaminergic system.
Insights
Fatty acid-binding protein 3 (FABP3) inhibitor MF1 blocks nicotine addiction by suppressing dopamine D2 receptor signaling. This novel drug candidate reduces nicotine-induced conditioned place preference (CPP) and may treat substance use disorders.
Area of Science:
- Neuroscience
- Pharmacology
- Addiction Research
Background:
- Fatty acid-binding protein 3 (FABP3) plays a role in nicotine addiction.
- FABP3 knockout mice show resistance to nicotine-induced conditioned place preference (CPP).
Purpose of the Study:
- To investigate the efficacy of a FABP3 inhibitor, MF1, in blocking nicotine-induced CPP.
- To elucidate the molecular mechanisms underlying MF1's anti-addiction effects.
Main Methods:
- Oral administration of MF1 (0.3 or 1.0 mg/kg) before nicotine exposure in mice.
- Assessment of CPP scores during conditioning, withdrawal, and relapse phases.
- Analysis of CaMKII, ERK, and CREB activation in the nucleus accumbens (NAc) and hippocampus.
- Investigation of dopamine D2 receptor (D2R) levels and quinpirole (QNP) effects in wild-type and D2R null mice.
Main Results:
- MF1 dose-dependently reduced nicotine-induced CPP scores.
- MF1 inhibited CaMKII and ERK activation in the NAc and hippocampus.
- MF1 decreased nicotine-induced increases in phosphorylated CaMKII, CREB, and D2R levels.
- MF1 blocked QNP-induced signaling in wild-type mice but not in D2R null mice.
Conclusions:
- MF1 suppresses D2R/FABP3 signaling, preventing nicotine-induced CPP.
- MF1 shows potential as a novel therapeutic agent for nicotine and other substance use disorders by targeting the dopaminergic system.
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