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Fear extinction rescuing effects of dopamine and L-DOPA in the ventromedial prefrontal cortex
Fear extinction rescuing effects of dopamine and L-DOPA in the ventromedial prefrontal cortex
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Fear extinction rescuing effects of dopamine and L-DOPA in the ventromedial prefrontal cortex
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Fear extinction rescuing effects of dopamine and L-DOPA in the ventromedial prefrontal cortex
Fear extinction rescuing effects of dopamine and L-DOPA in the ventromedial prefrontal cortex

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Fear extinction rescuing effects of dopamine and L-DOPA in the ventromedial prefrontal cortex
Fear extinction rescuing effects of dopamine and L-DOPA in the ventromedial prefrontal cortex
Journal Article

Fear extinction rescuing effects of dopamine and L-DOPA in the ventromedial prefrontal cortex

2024
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Overview
The ventromedial prefrontal cortex (vmPFC; rodent infralimbic cortex (IL)), is posited to be an important locus of fear extinction-facilitating effects of the dopamine (DA) bio-precursor, L-DOPA, but this hypothesis remains to be formally tested. Here, in a model of impaired fear extinction (the 129S1/SvImJ inbred mouse strain; S1), we monitored extracellular DA dynamics via in vivo microdialysis in IL during fear extinction and following L-DOPA administration. Systemic L-DOPA caused sustained elevation of extracellular DA levels in IL and increased neuronal activation in a subpopulation of IL neurons. Systemic L-DOPA enabled extinction learning and promoted extinction retention at one but not ten days after training. Conversely, direct microinfusion of DA into IL produced long-term fear extinction (an effect that was insensitive to ɑ-/ß-adrenoreceptor antagonism). However, intra-IL delivery of a D1-like or D2 receptor agonist did not facilitate extinction. Using ex vivo multi-electrode array IL neuronal recordings, along with ex vivo quantification of immediate early genes and DA receptor signalling markers in mPFC, we found evidence of reduced DA-evoked mPFC network responses in S1 as compared with extinction-competent C57BL/6J mice that were partially driven by D1 receptor activation. Together, our data demonstrate that locally increasing DA in IL is sufficient to produce lasting rescue of impaired extinction. The finding that systemic L-DOPA increased IL DA levels, but had only transient effects on extinction, suggests L-DOPA failed to reach a threshold level of IL DA or produced opposing behavioural effects in other brain regions. Collectively, our findings provide further insight into the neural basis of the extinction-promoting effects of DA and L-DOPA in a clinically relevant animal model, with possible implications for therapeutically targeting the DA system in anxiety and trauma-related disorders.