MrgprC11+ Jugular Neurons Control Airway Hyperresponsiveness in Allergic Airway Inflammation.

IF 5.9 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY American Journal of Respiratory Cell and Molecular Biology Pub Date : 2024-10-15 DOI:10.1165/rcmb.2024-0153OC
Yanyan Xing, Yeseul Nho, Katy Lawson, Yuyan Zhu, Alexandra E Ellison, Margaret Y Chang, William Hancock, Liang Han
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Abstract

The lung is densely innervated by sensory nerves, the majority of which are derived from the vagal sensory neurons. Vagal ganglia consist of two different ganglia, termed nodose and jugular ganglia, with distinct embryonic origins, innervation patterns, and physiological functions in the periphery. Since nodose neurons constitute the majority of the vagal ganglia, our understanding of the function of jugular nerves in the lung is very limited. This study aims to investigate the role of MrgprC11+ jugular sensory neurons in a mouse allergic asthma model. Our previous study has shown that MrgprC11+ jugular neurons mediate cholinergic bronchoconstriction. In this study, we found that in addition to MrgprC11, several other Mrgpr family members including MrgprA3, MrgprB4, and MrgprD are also specifically expressed in the jugular sensory neurons. MrgprC11+ jugular neurons exhibit dense innervation in the respiratory tract including the larynx, trachea, proximal, and distal bronchus. We also found that receptors for IL-4 and oncostatin M, two critical cytokines promoting allergic airway inflammation, are mainly expressed in jugular sensory neurons. Both IL-4 and oncostatin M can sensitize the neuronal responses of MrgprC11+ jugular neurons. Moreover, ablation of MrgprC11+ neurons significantly inhibited airway hyperresponsiveness in the asthmatic lung, demonstrating the critical role of MrgprC11+ neurons in controlling airway constriction. Our results emphasize the critical role of jugular sensory neurons in respiratory diseases.

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MrgprC11+颈静脉神经元控制过敏性气道炎症中的气道高反应性
肺部有密集的感觉神经支配,其中大部分来自迷走神经。迷走神经节由两个不同的神经节组成,分别称为结节和颈静脉神经节,它们的胚胎起源、神经支配模式和在外周的生理功能各不相同。由于结节神经元占迷走神经节的大部分,我们对颈静脉神经在肺部功能的了解非常有限。本研究旨在研究MrgprC11+颈静脉感觉神经元在小鼠过敏性哮喘模型中的作用。我们之前的研究表明,MrgprC11+ 颈静脉神经元介导胆碱能性支气管收缩。在这项研究中,我们发现除了MrgprC11之外,其他几个Mrgpr家族成员包括MrgprA3、MrgprB4和MrgprD也在颈静脉感觉神经元中特异性表达。MrgprC11+颈静脉神经元在呼吸道(包括喉、气管、支气管近端和远端)表现出密集的神经支配。我们还发现,促进过敏性气道炎症的两种关键细胞因子 IL-4 和 oncostatin M 的受体主要在颈静脉感觉神经元中表达。IL-4和oncostatin M都能敏化MrgprC11+颈静脉神经元的神经元反应。此外,MrgprC11+神经元的消融能显著抑制哮喘肺的气道高反应性,这证明了MrgprC11+神经元在控制气道收缩中的关键作用。我们的研究结果强调了颈静脉感觉神经元在呼吸系统疾病中的关键作用。
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来源期刊
CiteScore
11.20
自引率
3.10%
发文量
370
审稿时长
3-8 weeks
期刊介绍: The American Journal of Respiratory Cell and Molecular Biology publishes papers that report significant and original observations in the area of pulmonary biology. The focus of the Journal includes, but is not limited to, cellular, biochemical, molecular, developmental, genetic, and immunologic studies of lung cells and molecules.
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