The airway microbiome in asthma.

IF 9.8 1区 医学 Q1 CRITICAL CARE MEDICINE
Chest Pub Date : 2026-08-31 DOI:10.1016/j.chest.2026.08.032
Hollian Richardson, Jennifer Pollock, Rory Chan, James D Chalmers
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Abstract

Topic importance: Asthma is a heterogenous airways disease characterized by variable airflow limitation, airway inflammation and bronchial hyperresponsiveness. There is evidence to suggest that the airway microbiome plays an important role in asthma pathophysiology. Most microbiome studies have investigated the bacterial constituents of the microbiome and further studies are needed to investigate the role of the airway virome and mycobiome in asthma.

Review findings: Airway microbiome dysbiosis is associated with asthma development, disease severity and inflammatory endotypes. However, it remains unclear whether dysbiosis drives inflammation or is a result of inflammation. Haemophilus and Moraxella alongside rhinovirus and respiratory syncytial virus have been shown to be associated with the development of asthma in children. In established asthma, airway microbiome dysbiosis is associated with severity and risk of exacerbation. Distinct airway microbiome profiles are observed for the different inflammatory endotypes. Asthmatic patients with eosinophilic inflammation have higher microbial diversity similar to healthy individuals while neutrophilic inflammation is associated with reduced microbial diversity, higher bacterial load and a pathogen-dominated microbiome profile suggesting an important role for dysbiosis in asthma that is currently refractory to anti-T2 biologic therapy.

Summary: To understand the role of the microbiome in asthma, microbiome data must be integrated with other 'omic approaches' such as proteomics. Recent studies have used a multi-omic approach to investigate the microbiome and host interaction as well as identifying asthma endotypes and potential therapeutic targets. Antibiotics, probiotics, monoclonal antibodies, and diet could theoretically be used to therapeutically target the airway and gut microbiome in asthma.

哮喘的气道微生物群。
主题重要性:哮喘是一种异质性气道疾病,以可变气流限制、气道炎症和支气管高反应性为特征。有证据表明,气道微生物组在哮喘病理生理中起着重要作用。大多数微生物组研究都研究了微生物组的细菌成分,需要进一步研究气道病毒组和真菌组在哮喘中的作用。综述发现:气道微生物群失调与哮喘发展、疾病严重程度和炎症内型相关。然而,尚不清楚是生态失调驱动炎症还是炎症的结果。嗜血杆菌和莫拉菌以及鼻病毒和呼吸道合胞病毒已被证明与儿童哮喘的发展有关。在已确诊的哮喘中,气道微生物群失调与严重程度和恶化风险相关。不同的炎症内型观察到不同的气道微生物组谱。患有嗜酸性粒细胞炎症的哮喘患者具有与健康个体相似的更高的微生物多样性,而嗜中性粒细胞炎症与微生物多样性减少、细菌负荷增加和病原体主导的微生物组谱相关,这表明在目前抗t2生物治疗难治性哮喘的生态失调中起重要作用。摘要:为了了解微生物组在哮喘中的作用,微生物组数据必须与其他“组学方法”(如蛋白质组学)相结合。最近的研究已经使用多组学方法来研究微生物组和宿主的相互作用,以及确定哮喘内型和潜在的治疗靶点。从理论上讲,抗生素、益生菌、单克隆抗体和饮食可用于治疗哮喘患者的气道和肠道微生物群。
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
Chest
Chest 医学-呼吸系统
CiteScore
13.70
自引率
3.10%
发文量
3369
审稿时长
15 days
期刊介绍: At CHEST, our mission is to revolutionize patient care through the collaboration of multidisciplinary clinicians in the fields of pulmonary, critical care, and sleep medicine. We achieve this by publishing cutting-edge clinical research that addresses current challenges and brings forth future advancements. To enhance understanding in a rapidly evolving field, CHEST also features review articles, commentaries, and facilitates discussions on emerging controversies. We place great emphasis on scientific rigor, employing a rigorous peer review process, and ensuring all accepted content is published online within two weeks.
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