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Updated: Sep 12, 2025

Assessing Respiratory Immune Responses to Haemophilus Influenzae
Published on: June 29, 2021
Haemophilus influenzae in bronchiectasis
Alessandro De Angelis1,2, Martina Marchello3,4, Angela Tramontano5,6
1Department of Biomedical Sciences, Humanitas University, Milan, Italy.
None:
Bronchiectasis is a chronic respiratory disease characterised by irreversible bronchial dilation, persistent productive cough and alternating periods of clinical stability and exacerbations. The distorted airways impair mucus clearance, making them susceptible to recurrent infections and chronic inflammation. Haemophilus influenzae is a common pathogen in bronchiectasis according to international registries. It employs several virulence mechanisms, including adhesion, intracellular invasion/survival, biofilm formation and evasion of antibiotic treatments, to establish infection. These mechanisms allow H. influenzae to persist in the respiratory tract and evade host immune defences. Although its role is well-documented in other airway diseases, the impact of H. influenzae in bronchiectasis remains incompletely understood. International guidelines do not recommend eradication therapy for H. influenzae upon first isolation, while this intervention is advised for Pseudomonas aeruginosa in such cases. Long-term immunomodulatory treatment with macrolides is an option for patients with bronchiectasis with chronic H. influenzae infection and frequent exacerbations, though it carries the risk of promoting antibiotic resistance and a Pseudomonas-enriched airway microbiome. Studies indicate significant negative interactions between P. aeruginosa and H. influenzae, suggesting a competitive relationship that can influence microbiome dynamics and potentially affect clinical outcomes. Currently, there is insufficient evidence to support vaccination against nontypeable H. influenzae in chronic airways disease. Despite its frequent detection in respiratory samples, the precise role of H. influenzae in bronchiectasis-related morbidity and disease progression is not fully understood and warrants further investigation. This review examines the impact of H. influenzae on bronchiectasis pathophysiology and progression, comparing its role in other chronic respiratory diseases.
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