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Fernandes, G. J. D.

Publications and source records attributed to Fernandes, G. J. D..

2 recordsLinked to original sources

The Role of Insular Anterior Parvalbumin GABAergic Interneurons in Impulsivity-Related and Alcohol-Seeking Behaviors

Alcohol use is a major global health concern, particularly during adolescence, a developmental period characterized by heightened impulsivity, a known risk factor for alcohol misuse. The insular cortex is critically involved in interoceptive processing and impulsivity regulation, and its activity is powerfully shaped by parvalbumin (PV)-expressing GABAergic interneurons. We hypothesized that developmental differences in PV interneuron activity within the insular cortex contribute to impulsivity-related behaviors and alcohol consumption. To investigate this, male C57BL/6 mice were assessed at two developmental stages: adolescence (postnatal day 28) and young adulthood (postnatal day 64). Impulsivity was measured using the Omission-Contingency Learning (OCL) task, while alcohol intake and preference were evaluated using a two-bottle choice paradigm. Adolescent mice displayed higher impulsivity and greater alcohol consumption than adults. Double immunofluorescence labeling (Fos+/NeuN+ and Fos+/PV+) showed that increased impulsivity was associated with reduced activation of PV interneurons in the insular cortex. Chemogenetic activation of PV interneurons in adult PV-Cre mice reduced impulsivity in the OCL task and decreased alcohol intake. These findings indicate that insular PV interneurons play a modulatory role in impulsive behavior and alcohol consumption, suggesting a potential therapeutic target for impulse-control and alcohol-use disorders.

neuroscience↗

Astrocytes control cocaine-induced synaptic plasticity and reward through the matricellular protein hevin

Drug addiction involves profound modifications of neuronal plasticity in the nucleus accumbens, which may engage various cell types. Here, we report prominent effects of cocaine on calcium signals in astrocytes characterized by in vivo fiber photometry. Astrocyte calcium signals in the nucleus accumbens are sufficient and necessary for the acquisition of cocaine seeking behavior. We identify the astrocyte-secreted matricellular protein hevin as an effector of the action of cocaine and calcium signals on reward and neuronal plasticity.

neuroscience↗