Altered Middle Ear Microbiome in Children With Chronic Otitis Media With Effusion and Respiratory Illnesses

Allison R Kolbe1, Eduardo Castro-Nallar2, Diego Preciado3

  • 1Department of Biostatistics and Bioinformatics, Milken Institute School of Public Health, Computational Biology Institute, The George Washington University, Washington, DC, United States.

Insights

The middle ear fluid microbiome in children with chronic otitis media with effusion differs in diversity and composition in those with a history of lower airway disease. This suggests a link between middle ear and respiratory tract health.

Area of Science:

  • Microbiology
  • Pediatric Otolaryngology
  • Genomics

Background:

  • Chronic otitis media with effusion (COME) is a prevalent childhood condition impacting hearing and learning.
  • Understanding the middle ear fluid (MEF) microbiome is crucial for COME pathogenesis.
  • The influence of respiratory disorders on the MEF microbiome is largely unknown.

Purpose of the Study:

  • To characterize the MEF microbiome in pediatric COME patients with high taxonomic resolution.
  • To investigate the functional capacity of the MEF microbiome.
  • To analyze MEF microbiome variations in relation to lower airway disease history.

Main Methods:

  • 16S rRNA gene sequencing and amplicon sequence variant (ASV) pipeline analysis of MEF samples from 50 children with COME.
  • Detailed taxonomic classification (species and genus level).
  • Functional role prediction and comparative analysis based on lower airway disease history (asthma, bronchiolitis).

Main Results:

  • Achieved species and genus level taxonomic resolution of the MEF microbiome.
  • MEF microbiome functional capacity was uniform across patients despite taxonomic diversity.
  • MEF microbiome diversity was reduced in children with a history of lower airway disease.
  • Significant differences in phylogenetic beta-diversity (weighted UniFrac) were observed based on lower airway disease status.
  • Specific genera (Haemophilus, Moraxella, Staphylococcus, Alloiococcus, Turicella) showed differential abundance linked to lower airway disease.

Conclusions:

  • The study provides the first detailed taxonomic and functional characterization of the pediatric COME MEF microbiome.
  • Findings suggest a significant association between lower airway disease and alterations in the MEF microbiome.
  • Results support a potential link between COME and respiratory illnesses, warranting further investigation into the interconnectedness of middle ear and respiratory tract microbiomes.