An excitatory lateral hypothalamic circuit orchestrating pain behaviors in mice.

Siemian, Justin N; Arenivar, Miguel A; Sarsfield, Sarah; Borja, Cara B; Erbaugh, Lydia J; Eagle, Andrew L; Robison, Alfred J; Leinninger, Gina et al. · Elife · 2021

basic_science · Level V

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Abstract

Understanding how neuronal circuits control nociceptive processing will advance the search for novel analgesics. We use functional imaging to demonstrate that lateral hypothalamic parvalbumin-positive (LH<sup>PV</sup>) glutamatergic neurons respond to acute thermal stimuli and a persistent inflammatory irritant. Moreover, their chemogenetic modulation alters both pain-related behavioral adaptations and the unpleasantness of a noxious stimulus. In two models of persistent pain, optogenetic activation of LH<sup>PV</sup> neurons or their ventrolateral periaqueductal gray area (vlPAG) axonal projections attenuates nociception, and neuroanatomical tracing reveals that LH<sup>PV</sup> neurons preferentially target glutamatergic over GABAergic neurons in the vlPAG. By contrast, LH<sup>PV</sup> projections to the lateral habenula regulate aversion but not nociception. Finally, we find that LH<sup>PV</sup> activation evokes additive to synergistic antinociceptive interactions with morphine and restores morphine antinociception following the development of morphine tolerance. Our findings identify LH<sup>PV</sup> neurons as a lateral hypothalamic cell type involved in nociception and demonstrate their potential as a target for analgesia.

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