Cytokines reprogram airway sensory neurons in asthma.

IF 7.5 1区 生物学 Q1 CELL BIOLOGY Cell reports Pub Date : 2024-12-24 Epub Date: 2024-12-10 DOI:10.1016/j.celrep.2024.115045
Theo Crosson, Shreyas Bhat, Jo-Chiao Wang, Clara Salaun, Eleanne Fontaine, Katiane Roversi, Herbert Herzog, Moutih Rafei, Rikard Blunck, Sebastien Talbot
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Abstract

Nociceptor neurons play a crucial role in maintaining the body's homeostasis by detecting and responding to potential environmental dangers. However, this function can be detrimental during allergic reactions, as vagal nociceptors contribute to immune cell infiltration, bronchial hypersensitivity, and mucus imbalance in addition to causing pain and coughing. Despite this, the specific mechanisms by which nociceptors acquire pro-inflammatory characteristics during allergic reactions are not yet fully understood. In this study, we investigate the changes in the molecular profile of airway nociceptor neurons during allergic airway inflammation and identify the signals driving such reprogramming. Using retrograde tracing and lineage reporting, we identify a specific class of inflammatory vagal nociceptor neurons that exclusively innervate the airways. In the ovalbumin mouse model of allergic airway inflammation, these neurons undergo significant reprogramming characterized by the upregulation of the neuropeptide Y (NPY) receptor Npy1r. A screening of cytokines and neurotrophins reveals that interleukin 1β (IL-1β), IL-13, and brain-derived neurotrophic factor (BDNF) drive part of this reprogramming. IL-13 triggers Npy1r overexpression in nociceptors via the JAK/STAT6 pathway. In parallel, NPY is released into the bronchoalveolar fluid of asthmatic mice, which limits the excitability of nociceptor neurons. Single-cell RNA sequencing of lung immune cells reveals that a cell-specific knockout of NPY1R in nociceptor neurons in asthmatic mice altered T cell infiltration. Opposite findings are observed in asthmatic mice in which nociceptor neurons are chemically ablated. In summary, allergic airway inflammation reprograms airway nociceptor neurons to acquire a pro-inflammatory phenotype, while a compensatory mechanism involving NPY1R limits the activity of nociceptor neurons.

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细胞因子重编程哮喘气道感觉神经元。
痛觉感受器神经元通过检测和响应潜在的环境危险,在维持机体稳态中起着至关重要的作用。然而,这种功能在过敏反应中可能是有害的,因为迷走神经伤害感受器除了引起疼痛和咳嗽外,还会导致免疫细胞浸润、支气管过敏和粘液失衡。尽管如此,在过敏反应中痛觉感受器获得促炎特性的具体机制尚不完全清楚。在这项研究中,我们研究了过敏性气道炎症期间气道伤害受体神经元分子谱的变化,并确定了驱动这种重编程的信号。使用逆行追踪和谱系报告,我们确定了一类特定的炎性迷走神经伤害感受器神经元,它们专门支配气道。在卵清蛋白小鼠变应性气道炎症模型中,这些神经元经历了显著的重编程,其特征是神经肽Y (NPY)受体Npy1r的上调。细胞因子和神经营养因子的筛选表明,白细胞介素1β (IL-1β), IL-13和脑源性神经营养因子(BDNF)驱动部分重编程。IL-13通过JAK/STAT6通路触发Npy1r在伤害感受器中的过表达。同时,NPY被释放到哮喘小鼠的支气管肺泡液中,这限制了伤害感受器神经元的兴奋性。肺免疫细胞的单细胞RNA测序显示,哮喘小鼠伤害感受器神经元中NPY1R的细胞特异性敲除改变了T细胞的浸润。在化学消融伤害感受器神经元的哮喘小鼠中观察到相反的结果。总之,过敏性气道炎症重编程气道伤害感受器神经元以获得促炎表型,而涉及NPY1R的代偿机制限制了伤害感受器神经元的活性。
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来源期刊
Cell reports
Cell reports CELL BIOLOGY-
CiteScore
13.80
自引率
1.10%
发文量
1305
审稿时长
77 days
期刊介绍: Cell Reports publishes high-quality research across the life sciences and focuses on new biological insight as its primary criterion for publication. The journal offers three primary article types: Reports, which are shorter single-point articles, research articles, which are longer and provide deeper mechanistic insights, and resources, which highlight significant technical advances or major informational datasets that contribute to biological advances. Reviews covering recent literature in emerging and active fields are also accepted. The Cell Reports Portfolio includes gold open-access journals that cover life, medical, and physical sciences, and its mission is to make cutting-edge research and methodologies available to a wide readership. The journal's professional in-house editors work closely with authors, reviewers, and the scientific advisory board, which consists of current and future leaders in their respective fields. The advisory board guides the scope, content, and quality of the journal, but editorial decisions are independently made by the in-house scientific editors of Cell Reports.
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