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Samels, S. B.

Publications and source records attributed to Samels, S. B..

3 recordsLinked to original sources

Hypocretin receptor 1 blockade early in abstinence reduces future demand for cocaine

Relapse to cocaine use after abstinence remains a significant challenge for treating cocaine use disorder. While the mechanisms of relapse are still under investigation, adaptations in mesolimbic dopamine systems may contribute to cocaine craving and propensity for relapse. Current pharmacological treatments targeting dopamine systems are often intolerable and may have abuse potential. Therefore, identifying novel pharmacological targets for cocaine use disorder is crucial. The hypocretin/orexin system has been shown to regulate cocaine-associated behavior and dopamine transmission. Our previous studies indicated that the hypocretin receptor 1 antagonist, RTIOX-276, reduced motivation for cocaine and attenuated dopamine responses to cocaine. Importantly, the effects of RTIOX-276 on dopamine transmission persisted for at least 24 hours, suggesting lasting effects of hypocretin receptor antagonism. Here, we hypothesized that a single RTIOX-276 treatment would reduce motivation for cocaine and normalize dopamine transmission after abstinence. Rats were pre-assessed for cocaine consumption and motivation using a within-session threshold schedule before intermittent access exposure to cocaine. Rats were subsequently treated with RTIOX-276 on the first day of a 7-day abstinence period, after which they were reassessed for cocaine consumption and motivation or examined for dopamine transmission using fast-scan cyclic voltammetry in nucleus accumbens core slices. We found that a single treatment with RTIOX-276 on the first day of abstinence reduced motivation for cocaine and normalized aberrant dopamine uptake observed following intermittent access to cocaine. These findings suggest that hypocretin receptor 1 may be a viable target for reducing motivation for cocaine through alterations in dopamine transmission in the nucleus accumbens.

neuroscience↗

Pituitary adenylate cyclase-activating polypeptide (PACAP) overexpression in the paraventricular nucleus of the thalamus alters motivated and affective behavior in female rats

BackgroundPituitary adenylate cyclase-activating polypeptide (PACAP) has been found to be involved in a wide range of motivated and affective behaviors. While the PACAP-38 isoform is more densely expressed than PACAP-27 in most of the brain, PACAP-27 is more highly expressed in the rodent paraventricular nucleus of the thalamus (PVT), where females also have greater expression than males. Notably, the role of PACAP-27 expression in cells of the PVT has not been explored. MethodsAdult, female Long-Evans rats were injected in the PVT with an AAV to increase expression of PACAP or a control AAV. They were then investigated for subsequent gene and peptide levels of PACAP in the PVT; ethanol drinking and preference; sucrose drinking and preference; or locomotor activity in a novel chamber, behavior in a light-dark box, behavior in a novelty suppression of feeding test, locomotor activity in a familiar activity chamber, and behavior in a forced swim test. ResultsGene expression of PACAP was significantly increased in the PVT by four weeks after injection with the PACAP AAV, and this resulted in a specific increase in levels of PACAP-27. Rats injected with the PACAP AAV demonstrated reduced drinking and preference for ethanol under the intermittent-access procedure compared to those injected with the control AAV. In contrast, rats injected with the PACAP AAV showed no significant difference in drinking or preference for sucrose, or in any affective behavior tested, except that they spent less time swimming in the forced swim test. ConclusionsIn light of the low overall level of expression of PACAP-27 in the brain, the ability of PACAP-27 in the PVT to control ethanol drinking, with minimal effects on other motivated or affective behaviors, supports the idea that compounds related to PACAP-27 should be investigated as potential therapeutics for the treatment of alcohol use disorder.

neuroscience↗

Devaluation of response-produced safety signals reveals circuits for goal-directed versus habitual avoidance in dorsal striatum

Active avoidance responses (ARs) are instrumental behaviors that prevent harm. Adaptive ARs may contribute to active coping, whereas maladaptive avoidance habits are implicated in anxiety and obsessive-compulsive disorders. The AR learning mechanism has remained elusive, as successful avoidance trials produce no obvious reinforcer. We used a novel outcome-devaluation procedure in rats to show that ARs are positively reinforced by response-produced feedback (FB) cues that develop into safety signals during training. Males were sensitive to FB-devaluation after moderate training, but not overtraining, consistent with a transition from goal-directed to habitual avoidance. Using chemogenetics and FB-devaluation, we also show that goal-directed vs. habitual ARs depend on dorsomedial vs. dorsolateral striatum, suggesting a significant overlap between the mechanisms of avoidance and rewarded instrumental behavior. Females were insensitive to FB-devaluation due to a remarkable context-dependence of counterconditioning. However, degrading the AR-FB contingency suggests that both sexes rely on safety signals to perform goal-directed ARs.

neuroscience↗