Rothia mucilaginosa is an anti-inflammatory bacterium in the respiratory tract of patients with chronic lung disease.
Charlotte RigautsJuliana AizawaSteven L TaylorGeraint B RogersMatthias GovaertsPaul CosLisa OstynSarah SimsEva VandeplasscheMozes SzeYves DondelingerLars VereeckeHeleen Van AckerJodie L SimpsonLucy BurrAnne WillemsMichael M TunneyCristina CiganaAlessandra BragonziTom CoenyeAurélie CrabbéPublished in: The European respiratory journal (2021)
Chronic airway inflammation is the main driver of pathogenesis in respiratory diseases, such as severe asthma, chronic obstructive pulmonary disease (COPD), cystic fibrosis (CF), and bronchiectasis. While the role of common pathogens in airway inflammation is widely recognized, the influence of other microbiota members is still poorly understood. Here, we show that Rothia mucilaginosa, a common resident of the oral cavity that is also often detectable in the lower airways in chronic disease, has an inhibitory effect on pathogen- and LPS-induced pro-inflammatory responses, both in vitro (3-D cell culture model) and in vivo (mouse model). Furthermore, in a cohort of adults with bronchiectasis, the abundance of Rothia spp. was negatively correlated with pro-inflammatory markers (IL-8, IL-1β) and matrix metalloproteinases (MMP-1, MMP-8 and MMP-9) in sputum. Mechanistic studies revealed that R. mucilaginosa inhibits NF-κB pathway activation by reducing the phosphorylation of IκB-α and consequently the expression of NF-κB target genes. These findings indicate that the presence of R. mucilaginosa in the lower airways potentially mitigates inflammation, which could in turn influence severity and progression of chronic respiratory disorders.
Keyphrases
- cystic fibrosis
- lps induced
- respiratory tract
- lung function
- anti inflammatory
- chronic obstructive pulmonary disease
- inflammatory response
- pseudomonas aeruginosa
- mouse model
- cell migration
- oxidative stress
- poor prognosis
- signaling pathway
- genome wide
- pi k akt
- single cell
- cell proliferation
- candida albicans
- gene expression
- quality improvement
- nuclear factor
- drug induced
- living cells
- binding protein
- long non coding rna
- multidrug resistant
- protein kinase
- dna methylation
- wastewater treatment
- pulmonary tuberculosis
- single molecule
- emergency medicine