旁分泌信号
胆碱能的
5-羟色胺能
免疫系统
串扰
嗜铬细胞
细胞生物学
生物
神经科学
信号
感觉系统
乙酰胆碱
受体
簇
血清素
吞噬作用
传入的
电池类型
毒蕈碱乙酰胆碱受体
神经递质
免疫学
纤毛
细胞信号
信号转导
肠上皮
5-羟色胺受体
机械反应
感觉神经
刺激(心理学)
调解人
伤害感受器
作者
Kouki K Touhara,Jinhao Xu,Joel Castro,Hong-Erh Liang,Guochuan Li,Mariana Brizuela,Andrea M. Harrington,Sonia Garcia-Caraballo,Tracey A. O’Donnell,Daniel Neumann,Nathan D. Rossen,Fei Deng,Gudrun Schober,Yulong Li,Richard M. Locksley,Stuart M. Brierley,David Julius
出处
期刊:Nature
[Nature Portfolio]
日期:2026-03-25
标识
DOI:10.1038/s41586-026-10281-5
摘要
Parasitic infections modulate both immune and sensory responses, but how these systems collaborate to elicit protective behaviours remains incompletely understood. The gut epithelium contains specialized sensory cells that detect pathogens and irritants. These include cholinergic tuft cells, which sense parasites and initiate type 2 immune responses1-3, as well as serotonergic enterochromaffin (EC) cells, which detect irritants and communicate with afferent nerve fibres to transmit nociceptive signals4-6. Here we show that paracrine signalling between these cells constitutes a mechanism for neuro-immune interaction and gut-brain communication. We find that tuft cells use two distinct mechanisms of acetylcholine (ACh) release despite lacking synaptic vesicles and excitable membranes. These include acute release in response to parasite-derived metabolites, followed by constitutive 'leak-like' release, which occurs with type 2 inflammation. Although both mechanisms can activate muscarinic receptors on crypt-residing EC cells, only the sustained mode of ACh release elicits levels of serotonin sufficient to stimulate vagal afferent neurons that suppress food intake. This two-phase paracrine signalling mechanism explains how parasitic infection progresses from an initial asymptomatic phase to symptomatic established disease, in which type 2 immune and sensory signalling pathways within the gut-brain axis collaborate to evoke protective behaviours.
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