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Kuhn, C.

Publications and source records attributed to Kuhn, C..

2 recordsLinked to original sources

Rapastinel Accelerates Loss of Withdrawal Signs after Repeated Morphine and Blunts Relapse to Conditioned Place Preference

The purpose of the present study was to evaluate the efficacy of rapastinel, an allosteric modulator of NMDA receptor function, to accelerate the loss of opioid withdrawal symptoms and blunt or prevent relapse to morphine conditioned place preference (CPP) in rats. Two studies were conducted. In study 1, adult and adolescent male and female rats were treated with increasing doses of morphine (5 mg/kg, bid to 25 mg/kg bid) for 5 days. On day 6 animals were treated with naloxone (1 mg/kg) and withdrawal was assessed. They were then treated with saline or rapastinel (5 mg/kg) on days 6 and 8, and withdrawal assessed on day 9. Rapastinel treated animals exhibited significantly lower levels of withdrawal signs on day 9. No sex or age differences were observed. In Study 2, CPP for morphine was established in adult rats (males and females) by 4 daily pairings with saline and morphine (am/pm alternation). They were tested for CPP on day 5, and then treated with rapastinel (5 mg/kg) or saline daily on days 6-10 of extinction. On day 11 they received a final dose of rapastinel or saline followed by extinction. On day 12, animals received 1 mg/kg of morphine and were tested for relapse. Rapastinel did not affect extinction of CPP, but rapastinel-treated animals spent significantly less time in the previously morphine-paired side than saline-treated animals during the relapse trial. These findings of accelerated loss of withdrawal signs and blunted relapse to CPP suggest that rapastinel could provide an adjunctive therapy for opioid dependence during initiation of pharmacotherapy for opioid dependence.

pharmacology and toxicology↗

The central nucleus of the amygdala and gustatory cortex assess affective valence during CTA learning and expression in male and female rats

This study evaluated behavior (Boost(R) intake, LiCl-induced behaviors, ultrasonic vocalizations (USVs), task performance) and c-Fos activation during conditioned taste aversion (CTA), the reinforced task (Boost(R) task) and control task (cage only) to understand how male and female rats balance the relative danger or safety of a stimulus in learning and performing a task. Females drank more Boost(R) than males but showed similar aversive behaviors after LiCl treatment. Males produced 55 kHz USVs (indicating positive valence) when anticipating Boost(R) and inhibited these calls after pairing with LiCl. Females produced 55 kHz USVs based on their estrous cycle but were more likely to make 22 kHz USVs than males (indicating negative valence) after pairing with LiCl. c-Fos responses were similar in males and females after Boost(R) or LiCl. Females engaged the gustatory cortex and ventral tegmental area more than males during the Boost(R) task and males engaged the amygdala more than females in both the reinforcing and devalued tasks. Network analysis of correlated c-Fos responses across brain regions identified two unique networks characterizing the Boost(R) and LiCl (CTA) tasks, in both of which the VTA played a central role. RNAscope identified a population of D1-receptor expressing cells in the CeA that responded to Boost(R) and D2 receptor-expressing cells that responded to LiCl. The present study suggests that males and females differentially process the affective valence of a stimulus to produce the same goal-directed behavior.

animal behavior and cognition↗