A diencephalic circuit for opioid analgesia but not positive reinforcement
Waung, M. W.; Maanum, K. A.; Driscoll, J. R.; O'Brien, C.; Bryant, S.; Mansourian, K.; Morales, M.; Barker, D. J.; Margolis, E. B.
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Mu opioid receptor (MOR) agonists are potent analgesics, but also cause sedation, respiratory depression, and addiction risk. The epithalamic lateral habenula (LHb) signals aversive states including pain and we found it is a potent site for MOR-agonist analgesia. Importantly, LHb MOR activation is not reinforcing in the absence of noxious input. The LHb receives excitatory inputs from multiple sites including the ventral tegmental area, lateral hypothalamus, entopeduncular nucleus, and the lateral preoptic area of the hypothalamus (LPO). Here we report that LHb-projecting glutamatergic LPO neurons are excited by noxious stimulation and are preferentially inhibited by MOR selective agonists. Critically, optogenetic stimulation of LHb-projecting LPO neurons produces an aversive state that is relieved by LHb MOR activation, and optogenetic inhibition of LHb-projecting LPO neurons relieves the aversiveness of ongoing pain. Therefore, targeting this MOR sensitive forebrain circuit can relieve pain yet lower the risk of misuse by pain free individuals.
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