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Prefrontal gamma-aminobutyric acid type A receptor insertion controls cue-induced relapse to nicotine seeking
Bart R Lubbers1, Yvar van Mourik2, Dustin Schetters2
1Department of Molecular and Cellular Neurobiology, Center for Neurogenomics & Cognitive Research, Neuroscience Campus Amsterdam, VU University Amsterdam.
Background:
Current smoking cessation therapies offer limited success, as relapse rates remain high. Nicotine, which is the major component of tobacco smoke, is thought to be primarily responsible for the addictive properties of tobacco. However, little is known about the molecular mechanisms underlying nicotine relapse, hampering development of more effective therapies. The objective of this study was to elucidate the role of medial prefrontal cortex (mPFC) glutamatergic and gamma-aminobutyric acid (GABA)ergic receptors in controlling relapse to nicotine seeking.
Methods:
Using an intravenous self-administration model, we studied glutamate and gamma-aminobutyric acid receptor regulation in the synaptic membrane fraction of the rat mPFC following extinction and cue-induced relapse to nicotine seeking. Subsequently, we locally intervened at the level of GABAergic signaling by using a mimetic peptide of the GABA receptor associated protein-interacting domain of GABA type A (GABAA) receptor subunit γ2 (TAT-GABAγ2) and muscimol, a GABAA receptor agonist.
Results:
Alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid and N-methyl-D-aspartate receptors were not regulated after the 30-min relapse test. However, GABAA receptor subunits α1 and γ2 were upregulated, and interference with GABAA receptor insertion in the cell membrane using the TAT-GABAγ2 peptide in the dorsal mPFC, but not the ventral mPFC, significantly increased responding during relapse. Increasing GABAA transmission with muscimol in the dorsal and ventral mPFC attenuated relapse.
Conclusions:
These data indicate that cue-induced relapse entails a GABAergic plasticity mechanism that limits nicotine seeking by restoring inhibitory control in the dorsal mPFC. GABAA receptor-mediated neurotransmission in the dorsal mPFC constitutes a possible future therapeutic target for maintaining smoking abstinence.
Insights
Relapse to nicotine seeking involves changes in GABAergic signaling in the medial prefrontal cortex. Targeting these GABA receptors in the dorsal mPFC may offer new therapies for smoking cessation.
Area of Science:
- Neuroscience
- Addiction Research
- Molecular Pharmacology
Background:
- Smoking cessation therapies have limited success due to high relapse rates.
- Nicotine addiction is driven by its addictive properties, but relapse mechanisms are poorly understood.
- Understanding molecular mechanisms of nicotine relapse is crucial for developing effective therapies.
Purpose of the Study:
- To investigate the role of medial prefrontal cortex (mPFC) glutamatergic and GABAergic receptors in controlling nicotine seeking relapse.
- To elucidate the molecular mechanisms underlying cue-induced relapse to nicotine.
Main Methods:
- Utilized a rat intravenous self-administration model to study receptor regulation in the mPFC.
- Examined glutamate and GABA receptor regulation in synaptic membranes post-extinction and during relapse.
- Intervened with GABAergic signaling using a GABA receptor peptide (TAT-GABAγ2) and a GABA receptor agonist (muscimol).
Main Results:
- GABAA receptor subunits α1 and γ2 were upregulated during nicotine relapse.
- Interfering with GABAA receptor insertion in the dorsal mPFC increased relapse behaviors.
- Enhancing GABAA transmission with muscimol attenuated relapse in both dorsal and ventral mPFC.
Conclusions:
- Cue-induced nicotine relapse involves GABAergic plasticity in the dorsal mPFC, restoring inhibitory control.
- GABAA receptor-mediated neurotransmission in the dorsal mPFC is a potential therapeutic target for smoking abstinence.
- Findings highlight the importance of GABAergic signaling in the mPFC for addiction relapse.
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