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Kruyer, A.

Publications and source records attributed to Kruyer, A..

2 recordsLinked to original sources

Accumbens D2-MSN hyperactivity drives behavioral supersensitivity

Antipsychotic-induced behavioral supersensitivity is a problematic consequence of long-term treatment with antipsychotic drugs and is characterized by emergence of refractory symptoms and dyskinesias. The underlying mechanisms are unknown, and no rational approaches exist to prevent or reverse antipsychotic-induced supersensitivity. Here we describe major adaptations impacting populations of striatal medium spiny neurons (MSNs) during the development of behavioral supersensitivity and reveal a prominent role played by D2 receptor expressing MSNs. We show that enhanced D2-MSN activity underlies several symptoms spanning from psychostimulant sensitization, to antipsychotic treatment resistance and drug addiction. Our data warn against severe adverse events following antipsychotic treatment discontinuation and offer insight that may inform therapeutic approaches to overcome antipsychotic-induced supersensitivity.

neuroscience

Heroin Cues Reveal Astroglial Heterogeneity in the Nucleus Accumbens Core

Opioid use disorder (OUD) produces detrimental personal and societal consequences. Astrocytes are a major cell group in the brain that receives little attention in mediating OUD. We determined how astrocytes and the astroglial glutamate transporter, GLT-1, in the nucleus accumbens core adapt and contribute to heroin seeking in rats. Seeking heroin, but not sucrose, produced two transient forms of plasticity in different astroglial subpopulations. Increased morphological proximity to synapses occurred in one subpopulation and increased extrasynaptic GLT-1 expression in another. Augmented synapse proximity by astroglia occurred selectively at D2-dopamine receptor expressing dendrites, while changes in GLT-1 were not neuron-subtype specific. Importantly, mRNA-antisense inhibition of either morphological or GLT-1 plasticity promoted cue-induced heroin seeking. We show that heroin cues induce two distinct forms of transient plasticity in separate astroglial subpopulations that dampen heroin relapse. TEASERDifferent subpopulations of astrocytes engage with accumbens synapses to dampen heroin relapse.

animal behavior and cognition