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Wade, W. F.

Publications and source records attributed to Wade, W. F..

2 recordsLinked to original sources

Chemogenetic Inhibition of the Ventrolateral Orbitofrontal Cortex Disrupts Prediction Error and Salience-Guided Memory-Updating at the Hippocampal Engram Level

RationaleAdaptive behavior requires revising memories when outcomes deviate from expectations. The orbitofrontal cortex (OFC) is implicated in representing outcome expectancies, but its role in memory-updating, beyond value-based learning, remains unclear. ObjectivesWe tested whether the ventrolateral OFC (VLO) contributes to hippocampal-dependent memory-updating in the Objects in Updated Locations (OUL) task, where novelty-driven exploration provides a behavioral readout consistent with successful updating of spatial information MethodsUsing inhibitory DREADDs, in male and female (Swiss Webster and C57BL/6) mice, we suppressed VLO activity during the Updating session, when new object-location information was introduced. ResultsControl mice preferentially explored the updated object-location configuration during Updating and discriminated between updated and novel object-location configurations at Test, whereas VLO-inhibited mice did not. VLO inhibition when no updating demand was present did not alter exploration of novel object-location configurations or memory for the original spatial configuration at Test. ConclusionsThese results indicate that VLO activity is selectively required when novelty must be interpreted relative to prior experience, implicating this region in evaluating change rather than detecting it. To assess hippocampal ensemble dynamics, we tagged neuronal ensembles, in the dorsal dentate gyrus (dDG) recruited during Updating, followed by quantification of overlap between Updating-tagged cells and ensembles reactivated at Test. We found that VLO inhibition reduced reactivation of Updating-tagged dDG ensembles, paralleling the behavioral impairments observed in the OUL task. These findings support a role for the VLO in hippocampal-dependent memory-updating and extend OFC models beyond reward contexts to include predictive updating of spatial memory representations. Significance StatementUsing a spatial paradigm that distinguishes detection of changed information from incorporation of that information into an updated hippocampal representation, we found that ventrolateral orbitofrontal cortex (VLO) activity is required for memory-updating when new information is present. We found behavioral deficits accompanied by impairments in hippocampal ensemble representations, indicating VLO activity is necessary for memory-updating at the hippocampal engram level. Through this mechanism, the OFC supports the flexible updating of expected outcomes when environmental conditions shift, allowing for the re-evaluation of previously learned associations. These findings extend models of orbitofrontal cortex function beyond reward-guided behavior and identify a cortical contribution to predictive spatial memory processes. Disruption of this computation may contribute to the cognitive rigidity observed in neuropsychiatric disorders.

neuroscience↗

Artificial Reactivation of a Cocaine-Associated Engram in the Dorsal Dentate Gyrus Attenuates Cocaine Prime-Induced Reinstatement of Drug-Seeking

Relapse-prevention strategies aimed at reducing relapse following abstinence, primarily focus on reducing cravings that lead to drug-seeking triggered by stress, drug-related cues, or re-exposure to the drug. Because addictive drugs form persistent associative contextual memories, we investigated how reactivation of cocaine-related hippocampal memories influences subsequent drug-seeking. Here, we tagged dorsal dentate gyrus (dDG) memory ensembles involved in encoding either a first or fourth cocaine exposure (15mg/kg, i.p) in male and female c57BL/6 mice using a TetTag approach. Mice underwent cocaine conditioned place preference (CPP), extinction, and reinstatement. We assessed whether optical reactivation of tagged cocaine-related ensembles could substitute for a cocaine priming injection to reinstate CPP, whether reactivation altered cocaine-induced reinstatement, and if these effects differed depending on stage of drug exposure. We also compared these effects to reactivation of saline-associated ensembles. Cocaine produced robust locomotor activation during conditioning, and sensitization developed across repeated drug exposures. Reactivation of a cocaine-related engram alone did not reinstate CPP. However, reactivation of the first cocaine exposure engram attenuated cocaine-induced reinstatement. In contrast, reactivation of the fourth exposure engram did not confer this protective effect. Interestingly, reactivation of saline-associated ensembles also reduced cocaine-induced reinstatement specifically in females, suggesting dDG ensemble reactivation may modulate relapse-related behavior through interference or neuromodulatory disruption of cocaine-associated representations, consistent with our prior work. These findings raise the possibility that early contextual experiences form competing or destabilizing representations that interfere with later cocaine-seeking when reactivated. Females also displayed greater sensitivity to locomotor-inducing effects of cocaine memory reactivation, although this was dissociated from CPP. Together, these findings show that cocaine memories are distinct across drug experience and selective reactivation of dDG engrams can differentially influence drug-seeking.

animal behavior and cognition↗