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February 2, 2026Advanced Science0 citationsOpen Access

Neural Circuits between Nodose Ganglion and Pulmonary Neuroendocrine Cells Regulate Lung Inflammatory Responses

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JCJie ChenSXShitao XieZLZhekai Lin

Key Points

  • The aim is to understand the role of vagal nerve circuits in lung inflammatory responses to airborne pathogens.
  • Used transcriptomics to analyze gene expression
  • Applied tissue clearance imaging for visualization
  • Employed electrophysiology to assess nerve activity
  • Utilized cell-specific knockout models for mechanistic insights
  • Identified synapses between vagal sensory endings and pulmonary neuroendocrine cells
  • Vagal nerve endings primarily detect endotoxins via TRPA1 receptor
  • Increased neuropeptide production (e.g., αCGRP) in nodose ganglia following endotoxin exposure
  • Established a feed-forward loop that amplifies inflammation in response to endotoxins

Abstract

ABSTRACT The lungs interface directly with the external environment, exposing them to airborne pathogens like endotoxins. We investigated whether the vagus nerve, which innervates the lungs‐detects such pathogens. Using transcriptomics, tissue clearance imaging, electrophysiology, and cell‐specific knockout models, we discovered that vagal sensory endings synapse with pulmonary neuroendocrine cells (PNECs). These nerve endings detect bacterial endotoxins primarily through the pain receptor TRPA1, not via Toll‐like receptor 4 (TLR4). This detection triggers electrical excitation in vagal neurons and upregulates neuropeptide (e.g., αCGRP) production in the nodose ganglia. Released αCGRP then acts back on PNECs, stimulating their neuropeptide synthesis and proliferation. This creates a feed‐forward loop that amplifies endotoxin‐induced lung inflammation. Our findings reveal a critical neural circuit between the nodose ganglion and PNECs that regulates pulmonary inflammatory responses.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/6980fbbec1c9540dea80d867https://doi.org/10.1002/advs.202507512
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