Type 2 cytokines act on enteric sensory neurons to regulate neuropeptide-driven host defense.

Barilla, Rocky M; Berard, Clara; Sun, Linyu; Sandhu, Sumiti; Zaghouani, Sarah; Iyer, Krishna S; Altun, Gizem; Su, Chien-Wen et al. · Science · 2025

basic_science · Level V

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Abstract

Enteric nervous system (ENS)-derived neuropeptides modulate immune cell function, yet our understanding of how inflammatory cues directly influence enteric neuron responses during infection is considerably lacking. Here, we characterized a primary enteric sensory neuron (PSN) subset producing the neuropeptides neuromedin U (NMU) and calcitonin gene-related peptide β (CGRPβ) and coexpressing receptors for the type 2 cytokines interleukin-4 (IL-4) and IL-13. Type 2 cytokines amplified NMU and CGRPβ expression in PSNs both in vitro and in vivo, and this was abrogated by PSN-specific <i>Il13ra1</i> deletion. Deletion of <i>Il13ra1</i> in PSNs impaired host defense to the gastrointestinal helminth <i>Heligmosomoides polygyrus</i> and blunted muscularis immune responses. Co-administration of NMU23 and CGRPβ rescued helminth clearance deficits and restored anti-helminth immunity, highlighting the essential bidirectional neuroimmune cross-talk regulating intestinal type 2 inflammation.

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