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Biology subjects

Drury, H. R.

Publications and source records attributed to Drury, H. R..

2 recordsLinked to original sources

Dorsomedial striatal neuroinflammation causes excessive goal-directed action control by disrupting homeostatic astrocyte function

Compulsive actions are typically thought to reflect the dominance of habits over goal-directed action. To address this, we mimicked the striatal neuroinflammation that is frequently exhibited in individuals with compulsive disorders in rats, by injecting the endotoxin lipopolysaccharide into the posterior dorsomedial striatum, and assessed the consequences for behavioural control. Surprisingly, this manipulation caused rats to acquire and maintain goal-directed actions under conditions that would otherwise produce habits. Immunohistochemical analyses indicated that these behaviours were a result of astrocytic proliferation. To probe this further, we chemogenetically activated the Gi-pathway in striatal astrocytes, which altered the firing properties of nearby medium spiny neurons and modulated goal-directed action control. Together, results show that striatal neuroinflammation is sufficient to bias action selection toward excessive goal-directed control via dysregulated astrocyte function. If translatable, our findings suggest that, contrary to conventional views, individuals with striatal neuroinflammation might be more prone to maladaptive goal-directed actions than habits, and future interventions should aim to restore appropriate action control.

animal behavior and cognition↗

Anatomical and functional studies of isolated vestibular neuroepithelia from Meniere's Disease patients

Surgical removal of vestibular end organs is a final treatment option for people with intractable Menieres Disease. We describe the use of surgically excised vestibular neuroepithelium from patients with Menieres Disease for 1) anatomical investigation of hair cell and nerve fibres markers using immunohistochemistry and 2) functional studies using electrophysiological recordings of voltage-activated currents. Our data shows considerable reduction in and disorganization of vestibular hair cells in the cristae ampullares while nerve fibres are in contact with remaining sensory receptors but appear thin in regions where hair cells are absent. Electrophysiological recordings of voltage-activated potassium currents from surviving hair cells demonstrate normal activity in both type I and type II vestibular hair cells. In addition, current-voltage plots from type I vestibular hair cells are consistent with the presence of a surrounding calyx afferent terminal. These data indicate surviving hair cells in Menieres Disease patients remain functional and capable of transmitting sensory information to the central nervous system. Determining functionality of vestibular receptors and nerves is critical for vestibular implant research to restore balance in people with Menieres Disease. Summary StatementThis study shows, that while there is significant hair cell loss in Menieres Disease patients, surviving type I and type II vestibular hair cells have normal voltage-activated conductances.

neuroscience↗