Molecular pathways underlying lung-brain axis signaling in asthma: Relevance for psychopathology and neuroinflammation

神经科学 神经炎症 炎症 免疫学 医学 精神病理学 肺功能 哮喘 信号转导 生物 内科学 细胞生物学 精神科
作者
Kimberly A. Dill‐McFarland,Matthew C. Altman,Stéphane Esnault,Nizar N. Jarjour,William W. Busse,Melissa A. Rosenkranz
出处
期刊:The Journal of Allergy and Clinical Immunology [Elsevier]
卷期号:153 (1): 111-121 被引量:21
标识
DOI:10.1016/j.jaci.2023.07.025
摘要

Background

Accumulating evidence indicates that asthma has systemic effects and affects brain function. Although airway inflammation is proposed to initiate afferent communications with the brain, the signaling pathways have not been established.

Objective

We sought to identify the cellular and molecular pathways involved in afferent lung-brain communication during airway inflammation in asthma.

Methods

In 23 adults with mild asthma, segmental bronchial provocation with allergen (SBP-Ag) was used to provoke airway inflammation and retrieve bronchoalveolar lavage fluid for targeted protein analysis and RNA sequencing to determine gene expression profiles. Neural responses to emotional cues in nodes of the salience network were assessed with functional magnetic resonance imaging at baseline and 48 hours after SBP-Ag.

Results

Cell deconvolution and gene coexpression network analysis identified 11 cell-associated gene modules that changed in response to SBP-Ag. SBP-Ag increased bronchoalveolar lavage eosinophils and expression of an eosinophil-associated module enriched for genes related to TH17-type inflammation (eg, IL17A), as well as cell proliferation in lung and brain (eg, NOTCH1, VEGFA, and LIF). Increased expression of genes in this module, as well as several TH17-type inflammation–related proteins, was associated with an increase from baseline in salience network reactivity.

Conclusions

Our results identify a specific inflammatory pathway linking asthma-related airway inflammation and emotion-related neural function. Systemically, TH17-type inflammation has been implicated in both depression and neuroinflammation, with impacts on long-term brain health. Thus, our data emphasize that inflammation in the lung in asthma may have profound effects outside of the lung that may be targetable with novel therapeutic approaches.
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