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  • Involvement of the rostral agranular insular cortex in nicotine self-administration in rats.

Involvement of the rostral agranular insular cortex in nicotine self-administration in rats.

Behavioural brain research (2015-05-03)
Abhiram Pushparaj, Aaron S Kim, Martin Musiol, Jose M Trigo, Bernard Le Foll
ABSTRACT

Our prior work demonstrated the involvement of the caudal granular subregion of the insular cortex in a rat model of nicotine self-administration. Recent studies in various animal models of addiction for nicotine and other drugs have identified a role for the rostral agranular subregion (RAIC). The current research was undertaken to examine the involvement of the RAIC in a rat model of nicotine self-administration. We investigated the inactivating effects of local infusions of a γ-aminobutyric acid agonist mixture (baclofen/muscimol) into the RAIC on nicotine self-administration under a fixed-ratio 5 (FR-5) schedule and on reinstatement of nicotine seeking induced by nicotine-associated cues in rats. We also evaluated the effects of RAIC inactivation on food self-administration under an FR5 schedule as a control. Inactivation of the RAIC decreased nicotine, but not food, self-administration. RAIC inactivation also prevented the reinstatement, after extinction, of nicotine seeking induced by nicotine-associated cues. Our study indicates that the RAIC is involved in nicotine-taking and nicotine-seeking in rats. Modulating insular cortex function appears to be a promising approach for nicotine dependence treatment.

MATERIALS
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Product Description

Sigma-Aldrich
(±)-Baclofen, ≥98% (HPLC), solid