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Sheats, S. H.

Publications and source records attributed to Sheats, S. H..

2 recordsLinked to original sources

Anterior cingulate cortex activation of claustrum projection neuron subtypes is enhanced by alcohol

Cognitive impairment is a major component of Alcohol Use Disorder. Optimal cognitive performance requires anterior cingulate input activation of the claustrum, a subcortical nucleus that orchestrates cortical activity. Yet the impact of chronic alcohol exposure on the ability for the anterior cingulate cortex to drive activity of claustrum projection neuron subtypes is unknown. In adult male and female mice, we found that the majority of non-burst firing Type 1 claustrum projection neurons did not express the vesicular glutamate transporter 2 (VGLUT2), while the majority of burst firing Type 2 projection neurons were VGLUT2-expressing. Following chronic intermittent vaporized ethanol exposure (CIE), we found that both Type 1 and VGLUT2-non-expressing neurons exhibited increased responsivity to anterior cingulate cortex input activation that was mediated by increased postsynaptic membrane excitability. In contrast, Type 2 and VGLUT2-expressing projection neurons exhibited increased responsivity to anterior cingulate cortex input due to strengthened pre- and post-synaptic transmission mechanisms. Altogether, we uncovered a hyper-excitatory drive of the claustrum by the anterior cingulate cortex following chronic alcohol exposure. The data provide a foundational resource for the complex effects of chronic alcohol exposure on the claustrum, a critical cognitive control nucleus.

neuroscience↗

Perineuronal Net and Inhibitory Synapse Remodeling on Striatal Fast-spiking Interneurons by Chronic Alcohol Exposure

Alcohol use disorder is characterized by persistent drinking in the face of negative consequences. Such inflexible drinking requires dorsolateral striatum fast-spiking interneurons, which comprise roughly 1% of all striatal neurons. How chronic ethanol exposure affects fast-spiking interneuron physiology is poorly understood. We discover in mice that chronic ethanol exposure induced a dramatic loss of GABAergic, but not glutamatergic, synapses onto dorsolateral striatum fast-spiking interneuron somata and proximal dendrites where perineuronal nets, a subdivision of the extracellular matrix, are enriched. We found that chronic ethanol exposure degraded these perineuronal nets and that enzymatically degrading perineuronal nets similarly reduced GABAergic transmission onto dorsolateral striatum fast-spiking interneurons. Modeling the effect of alcohol, we find that silencing extrinsic GABAergic projections to the dorsolateral striatum increased voluntary ethanol consumption. Taken together, these data suggest chronic alcohol exposure remodels perineuronal nets and inhibitory synapses on fast-spiking interneurons to facilitate alcohol drinking.

neuroscience↗