Cytokines reprogram airway sensory neurons in asthma.

Q4 Materials Science
Théo Crosson, Shreyas Bhat, Jo-Chiao Wang, Clara Salaun, Eleanne Fontaine, Katiane Roversi, Herbert Herzog, Moutih Rafei, Rikard Blunck, Sebastien Talbot
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引用次数: 0

Abstract

Nociceptor neurons play a crucial role in maintaining the body's homeostasis by detecting and responding to potential dangers in the environment. However, this function can be detrimental during allergic reactions, since vagal nociceptors can 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 aimed to investigate 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 identified a unique class of inflammatory vagal nociceptor neurons that exclusively innervate the airways. In the ovalbumin mouse model of airway inflammation, these neurons undergo significant reprogramming characterized by the upregulation of the NPY receptor Npy1r. A screening of cytokines and neurotrophins revealed that IL-1β, IL-13 and BDNF drive part of this reprogramming. IL-13 triggered Npy1r overexpression in nociceptors via the JAK/STAT6 pathway. In parallel, sympathetic neurons and macrophages release NPY in the bronchoalveolar fluid of asthmatic mice, which limits the excitability of nociceptor neurons. Single-cell RNA sequencing of lung immune cells has revealed that a cell-specific knockout of Npy1r in nociceptor neurons in asthmatic mice leads to an increase in airway inflammation mediated by T cells. Opposite findings were observed in asthmatic mice in which nociceptor neurons were chemically ablated. In summary, allergic airway inflammation reprograms airway nociceptor neurons to acquire a pro-inflammatory phenotype, while a compensatory mechanism involving NPY1R limits nociceptor neurons' activity.

细胞因子对哮喘中的气道感觉神经元进行了重编程。
痛觉神经元通过检测和应对环境中的潜在危险,在维持机体平衡方面发挥着至关重要的作用。然而,这种功能在过敏反应期间可能是有害的,因为迷走神经痛觉感受器除了引起疼痛和咳嗽外,还可能导致免疫细胞浸润、支气管过敏和粘液失衡。尽管如此,过敏反应期间痛觉感受器获得促炎特性的具体机制仍未完全明了。在这项研究中,我们旨在研究过敏性气道炎症期间气道痛觉感受器神经元的分子特征,并确定驱动这种重编程的信号。通过逆行追踪和系谱报告,我们发现了一类独特的专门支配气道的炎性迷走神经痛觉神经元。在卵清蛋白小鼠气道炎症模型中,这些神经元发生了显著的重编程,其特征是 NPY 受体 Npy1r 的上调。对细胞因子和神经营养素的筛选显示,IL-1β、IL-13 和 BDNF 驱动了这种重编程的一部分。IL-13通过JAK/STAT6途径在痛觉感受器中引发Npy1r过表达。与此同时,交感神经元和巨噬细胞在哮喘小鼠的支气管肺泡液中释放 NPY,从而限制了痛觉感受器神经元的兴奋性。肺部免疫细胞的单细胞 RNA 测序显示,哮喘小鼠痛觉神经元中 Npy1r 的细胞特异性敲除会导致由 T 细胞介导的气道炎症增加。而对哮喘小鼠的痛觉神经元进行化学消融后,则观察到了相反的结果。总之,过敏性气道炎症重编程气道痛觉神经元,使其获得促炎表型,而涉及 NPY1R 的补偿机制限制了痛觉神经元的活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Welding International
Welding International Materials Science-Metals and Alloys
CiteScore
0.70
自引率
0.00%
发文量
57
期刊介绍: Welding International provides comprehensive English translations of complete articles, selected from major international welding journals, including: Journal of Japan Welding Society - Japan Journal of Light Metal Welding and Construction - Japan Przeglad Spawalnictwa - Poland Quarterly Journal of Japan Welding Society - Japan Revista de Metalurgia - Spain Rivista Italiana della Saldatura - Italy Soldagem & Inspeção - Brazil Svarochnoe Proizvodstvo - Russia Welding International is a well-established and widely respected journal and the translators are carefully chosen with each issue containing a balanced selection of between 15 and 20 articles. The articles cover research techniques, equipment and process developments, applications and material and are not available elsewhere in English. This journal provides a valuable and unique service for those needing to keep up-to-date on the latest developments in welding technology in non-English speaking countries.
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