Aerodigestive sampling reveals altered microbial exchange between lung, oropharyngeal, and gastric microbiomes in

Claire Duvallet1,2, Kara Larson3, Scott Snapper4

  • 1Department of Biological Engineering, MIT, Cambridge, Massachusetts, United States of America.

Plos One
|May 21, 2019
PubMed

Insights

In children with dysphagia and aspiration, the lung microbiome resembles the oropharynx, not the stomach. This suggests aspiration, not gastric reflux, may drive lung issues in these patients.

Area of Science:

  • Microbiome research
  • Pediatric aerodigestive health
  • Pulmonary complications in children

Background:

  • Children with oropharyngeal dysphagia face higher risks of pulmonary complications like pneumonia.
  • Aspiration of gastric contents is often suspected but lacks strong evidence as a cause for these complications.
  • Understanding the microbial origins of lung issues in pediatric dysphagia is crucial.

Purpose of the Study:

  • To investigate the distinct contributions of oropharyngeal and gastric microbial communities to lung microbiome changes in children with and without dysphagia and aspiration.
  • To determine how aspiration impacts the aerodigestive tract microbiome.

Main Methods:

  • Prospective cohort study of 220 pediatric patients undergoing aerodigestive procedures.
  • Collected bronchoalveolar lavage, gastric, and oropharyngeal samples for 16S sequencing.
  • Utilized video fluoroscopic swallow studies to assess aspiration and compared microbiomes across aerodigestive sites.

Main Results:

  • Lung, oropharyngeal, and gastric microbiomes show overlap, with distinct similarities between stomach/lungs and oropharynx/stomach.
  • Lung and gastric microbiomes are highly variable between individuals.
  • In aspirating patients, lung microbiome composition shifts towards oropharyngeal rather than gastric communities, with increased microbial exchange between the lung and oropharynx.

Conclusions:

  • In children with impaired swallow function and aspiration, the lung microbiome composition is significantly influenced by the oropharynx, not the stomach.
  • This finding challenges the role of gastric contents in driving lung microbiome alterations in aspirating children.
  • The results may explain the limited efficacy of antireflux surgeries for pediatric pulmonary outcomes.
Abstract

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