A brain-to-small intestine circuit mediates morphine-induced constipation in male mice.

Ma, Jun; Peng, Xiaoqi; Zhang, Mingjun; Gao, Wei; Yang, Xinlu; Wang, Zerui; Chai, Xiaoqing; Zhang, Zhi et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Opioid-induced constipation is one of the most common and persistent side effect of opioid analgesics, yet the underlying neural mechanism(s) remain unclear. Here we show morphine-induced constipation is mediated by a neural circuit from glutamatergic neurons in the paraventricular nucleus of hypothalamus (PVN<sup>Glu</sup>) to acetylcholinergic neurons in the dorsal motor nucleus of the vagus (DMV<sup>Ach</sup>), and subsequently to the small intestine in mice. Microendoscopic calcium imaging revealed morphine inhibits the PVN<sup>Glu</sup>→DMV<sup>Ach</sup>→small intestine circuit, and this is accompanied by decreased small intestinal motility. Chemogenetic activation of this circuit, as well as pharmacological inhibition or knockdown of the μ-opioid receptor (MOR) in PVN<sup>Glu</sup> neurons alleviates morphine-induced constipation. Conversely, artificial inhibition of this circuit mimics morphine-induced constipation in naïve mice. Moreover, we show that morphine suppresses tonic NMDA receptor-mediated currents in DMV<sup>Ach</sup> neurons. These findings reveal a brain-gut circuit underlying opioid-induced constipation and suggest potential therapeutic strategies to mitigate this debilitating side effect.

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