Airway acidification impaired host defense against Pseudomonas aeruginosa infection by promoting type 1 interferon β response

铜绿假单胞菌 支气管扩张 内部收益率3 干扰素 免疫学 微生物学 医学 先天免疫系统 免疫系统 生物 细菌 内科学 遗传学
作者
Yang Liu,Ying-Zhou Xie,Yi‐Han Shi,Ling Yang,Xiaoyang Chen,Ling-Wei Wang,Jieming Qu,Dong Weng,Xiaojian Wang,Haipeng Liu,Baoxue Ge,Jin‐Fu Xu
出处
期刊:Emerging microbes & infections [Taylor & Francis]
卷期号:11 (1): 2132-2146 被引量:10
标识
DOI:10.1080/22221751.2022.2110524
摘要

Airway microenvironment played an important role in the progression of chronic respiratory disease. Here we showed that standardized pondus hydrogenii (pH) of exhaled breath condensate (EBC) of bronchiectasis patients was significantly lower than that of controls and was significantly correlated with bronchiectasis severity index (BSI) scores and disease prognosis. EBC pH was lower in severe patients than that in mild and moderate patients. Besides, acidic microenvironment deteriorated Pseudomonas aeruginosa (P. aeruginosa) pulmonary infection in mice models. Mechanistically, acidic microenvironment increased P. aeruginosa outer membrane vesicles (PA_OMVs) released and boosted it induced the activation of interferon regulatory factor3 (IRF3)-interferonβ (IFN-β) signalling pathway, ultimately compromised the anti-bacteria immunity. Targeted knockout of IRF3 or type 1 interferon receptor (IFNAR1) alleviated lung damage and lethality of mice after P. aeruginosa infection that aggravated by acidic microenvironment. Together, these findings identified airway acidification impaired host resistance to P. aeruginosa infection by enhancing it induced the activation of IRF3-IFN-β signalling pathway. Standardized EBC pH may be a useful biomarker of disease severity and a potential therapeutic target for the refractory P. aeruginosa infection. The study also provided one more reference parameter for drug selection and new drug discovery for bronchiectasis.
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