scholarly journals The Basolateral Amygdala to Nucleus Accumbens Core Circuit Mediates the Conditioned Reinforcing Effects of Cocaine-Paired Cues on Cocaine Seeking

Author(s):  
Mickaël Puaud ◽  
Alejandro Higuera-Matas ◽  
Paul Brunault ◽  
Barry J. Everitt ◽  
David Belin
2020 ◽  
Author(s):  
Mickaël Puaud ◽  
Alejandro Higuera-Matas ◽  
Paul Brunault ◽  
Barry J. Everitt ◽  
David Belin

AbstractIndividuals addicted to cocaine spend much of their time foraging for the drug. Pavlovian drug-associated conditioned stimuli exert a major influence on the initiation and maintenance of drug seeking often long into abstinence, especially when presented response-contingently, acting as conditioned reinforcers that bridge delays to drug use. The acquisition of cue-controlled cocaine seeking has been shown to depend on functional interactions between the basolateral amygdala (BLA) and the core of the nucleus accumbens (NAcC). However, the precise neuronal circuits underlying the acquisition of cue-controlled cocaine seeking behaviour have not been elucidated. Here we used a projection-specific Cre-dependent DREADD-mediated causal approach to test the hypothesis that the direct projections from the BLA to the NAcC are required for the acquisition of cue-controlled cocaine seeking behaviour. In Sprague Dawley rats with cre-mediated expression of the inhibitory DREADD Hm4Di in the NAcC projecting BLA neurons, treatment with CNO, but not vehicle, selectively prevented the impact of cocaine-associated conditioned reinforcement on cocaine seeking under a second-order schedule of reinforcement. This effect was attributable to the chemogenetic inhibition of the NAcC projecting BLA neurons as it was reversible, and absent in CNO-treated rats expressing an empty control virus. In contrast, chemogenetic inhibition of the anterior insula, which receives collateral projections from NAcC projecting BLA neurons, was without effect. These data demonstrate that the acquisition of cue-controlled cocaine seeking that depends on the conditioned reinforcing effects of cocaine cues require activity in the direct projections from the basolateral amygdala to the nucleus accumbens core.


2017 ◽  
Vol 7 (1) ◽  
Author(s):  
Xue-Jiao Gao ◽  
Kai Yuan ◽  
Lu Cao ◽  
Wei Yan ◽  
Yi-Xiao Luo ◽  
...  

2020 ◽  
Author(s):  
Allison R. Bechard ◽  
Carly N. Logan ◽  
Javier Mesa ◽  
Yasmin Padovan‐Hernandez ◽  
Harrison Blount ◽  
...  

2021 ◽  
Author(s):  
Amy Chan ◽  
Alexis Willard ◽  
Sarah Mulloy ◽  
Noor Ibrahim ◽  
Allegra Sciaccotta ◽  
...  

This study investigated the potential therapeutic effects of the FDA-approved drug metformin on cue-induced reinstatement of cocaine seeking. Metformin (dimethyl-biguanide) is a first-line treatment for type II diabetes that, among other mechanisms, is involved in the activation of adenosine monophosphate activated protein kinase (AMPK). Cocaine self-administration and extinction is associated with decreased levels of phosphorylated AMPK within the nucleus accumbens core (NAcore). Previously it was shown that increasing AMPK activity in the NAcore decreased cue-induced reinstatement of cocaine seeking. Decreasing AMPK activity produced the opposite effect. The goal of the present study was to determine if metformin in the NAcore reduces cue-induced cocaine seeking in adult male and female Sprague Dawley rats. Rats were trained to self-administer cocaine followed by extinction prior to cue-induced reinstatement trials. Metformin microinjected in the NAcore attenuated cue-induced reinstatement in male and female rats. Importantly, metformin's effects on cocaine seeking were not due to a general depression of spontaneous locomotor activity. In female rats, metformin's effects did generalize to a reduction in cue-induced reinstatement of sucrose seeking. These data support a potential role for metformin as a pharmacotherapy for cocaine use disorder, but warrant caution given the potential for metformin's effects to generalize to a natural reward in female rats.


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