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Allichon, M.-C.

Publications and source records attributed to Allichon, M.-C..

2 recordsLinked to original sources

Voluntary oral fentanyl intake produces dose- and sex-dependent physical dependence in mice without overt affective disturbances

The ongoing opioid epidemic underscores the need for scalable and translational preclinical models of voluntary opioid intake and dependence. We therefore sought to establish and validate a voluntary two-bottle choice drinking-in-the-dark (DID) model of oral opioid intake in mice and to determine relationships between experimental parameters and behaviors during and after withdrawal. Male and female C57BL/6J mice were given daily access to two bottles during the dark phase for 24 drinking sessions over 5 weeks. Control mice received two bottles containing water. Experimental mice received one water bottle and one bottle containing oxycodone (0.1-1 mg/mL) or fentanyl (10-100 {micro}g/mL) under varying session durations and concentrations. On the final day, physical dependence was assessed using naloxone-precipitated withdrawal and then a behavioral battery to assess negative affect was performed in the following week. Mice voluntarily consumed both oxycodone and fentanyl without taste adulteration and maintained drug preference across most concentrations. Oxycodone intake produced minimal withdrawal symptoms. In contrast, fentanyl intake resulted in naloxone-precipitated withdrawal that was modulated by session duration and concentration. Four-hour sessions produced stronger withdrawal than two-hour sessions at equivalent concentrations. Escalating high-concentration fentanyl exposure revealed emerging sex differences, with females exhibiting greater intake and withdrawal at higher concentrations. Affective behavioral assays following withdrawal revealed minimal persistent alterations in any cohort. These findings establish key parameters for a scalable voluntary fentanyl model that produces dose- and session-dependent physical dependence in male and female mice. This paradigm provides a cost-effective and straightforward platform for future investigations of opioid use and dependence.

neuroscience↗

A role for prefrontal dopamine signaling in control of goal-directed actions

Impairments in behavioral flexibility commonly found across psychiatric disorders have often been attributed to a dysfunction of the medial prefrontal cortex (mPFC), notably in relation with altered dopamine transmission. However, how dopamine transmission shapes neuronal activity in the mPFC to allow adapting to a changing situation remains largely elusive. Here, we show that dopamine dynamics in the mPFC encode the value of instrumental actions, in particular during reversal learning. Such signal shapes the activity of mPFC dopaminoceptive neurons during reversal learning through the recruitment of heteromers formed by dopamine D1 and D2 receptors with NMDA receptors. In accordance, blockade of either D1/NMDA or D2/NMDA heteromers in the mPFC selectively impairs reversal of outcome identities but not learning and expression of initial action-outcome associations. Our findings provide mechanistic evidence for a central role of dopamine in the mPFC to allow updating goal-directed actions.

neuroscience↗