Basic & Clinical Pharmacology & Toxicology · 2018 · 10 citations · 52 references
Extrasynaptic δ subunit-containing γ-aminobutyric acid type A receptors (δ-GABA<sub>A</sub> Rs) are emerging as targets for a number of neuropsychopharmacological drugs, including the direct GABA site agonist gaboxadol and neuroactive steroids. Among other regions, these δ-GABA<sub>A</sub> Rs are functionally expressed in the ventral tegmental area (VTA), the cell body region of mesocorticolimbic dopamine (DA) system important for motivated behaviours, and in the target region, the nucleus accumbens. Gaboxadol and neurosteroids induce VTA DA neuron plasticity ex vivo, by inhibiting the VTA GABA neurons, and aversive place conditioning, which are absent in the δ-GABA<sub>A</sub> R knockout mice (δ-KO). It is not known whether δ-GABA<sub>A</sub> Rs are important for the effects of other drugs, such as opioids (that also inhibit GABA neurons) and stimulants (that primarily elevate monoamine levels). Here, we used δ-KO mice and conditioned place preference (CPP) test to study the rewarding effects of morphine (20 mg/kg), methamphetamine (1 mg/kg) and mephedrone (5 mg/kg). Morphine-induced nociception was also assessed using tail-flick and hot-plate tests. We found that the δ-KO mice failed to express morphine-induced CPP, but that they were more sensitive to morphine-induced analgesia in the tail-flick test. In contrast, stimulant-induced CPP in the δ-KO mice was similar to that in the wild-type controls. Thus, the conditioned rewarding effect by opioids, but not that of stimulants, was impaired in the absence of δ-GABA<sub>A</sub> Rs. Further studies are warranted to assess the potential of δ-GABA<sub>A</sub> R antagonists as possible targets for reducing morphine reward and potentiating morphine analgesia.
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Input-specific control of reward and aversion in the ventral tegmental area
Stephan Lammel, Byung Kook Lim, Ran Chen et al. · Nature · 2012 · 1.3K citations · Full text
Neurobiological Mechanism, Cognitive Science, Reward Processing +15
Drugs of Abuse and Stress Trigger a Common Synaptic Adaptation in Dopamine Neurons
Daniel Saal, Yan Dong, Antonello Bonci et al. · Neuron · 2003 · 1.1K citations · Full text