Neuropeptide Y neurons mediate opioid-induced itch by disinhibiting GRP-GRPR microcircuits in the spinal cord.

Zeng, Qian; Li, Yitong; Wu, Yifei; Wu, Jiawei; Xu, Kangtai; Chen, Yiming; Rao, Yunfei; Li, Nan et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Itch is a common side effect of opioid analgesics. The specific neurons mediating opioid-induced itch are still debated, and the mechanistic neuronal circuits remain elusive. Here, we show that the μ-opioid receptors (MOR) on neuropeptide Y (NPY)<sup>+</sup> inhibitory interneurons mediate opioid-induced itch at the spinal cord level in mice. The MOR gene Oprm1 is expressed in NPY<sup>+</sup> neurons in the spinal dorsal horn, and specific deletion of Oprm1 in NPY<sup>+</sup> interneurons abolishes intrathecal morphine-induced itch. Furthermore, gastrin-releasing peptide (GRP)<sup>+</sup> neurons are the direct downstream targets of NPY<sup>+</sup> neurons. Mechanistically, morphine inhibits the neuronal excitability of NPY<sup>+</sup> interneurons and reduces inhibitory synaptic inputs on GRP<sup>+</sup> neurons, causing disinhibition of GRP<sup>+</sup> neurons and further activation of gastrin-releasing peptide receptor (GRPR)<sup>+</sup> neurons. The NPY/neuropeptide Y receptor 1(NPY1R) system is essential for regulating GRP<sup>+</sup> neurons in opioid-induced itch. These findings reveal that intrathecal opioids act on MOR on NPY<sup>+</sup> inhibitory neurons in the spinal dorsal horn, which subsequently disinhibit GRP-GRPR microcircuits, triggering the itch response.

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