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Oral Biofilm Sampling for Microbiome Analysis in Healthy Children
Published on: December 31, 2017
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.
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.
Background:
Children with oropharyngeal dysphagia have impaired airway protection mechanisms and are at higher risk for pneumonia and other pulmonary complications. Aspiration of gastric contents is often implicated as a cause for these pulmonary complications, despite being supported by little evidence. The goal of this study is to determine the relative contribution of oropharyngeal and gastric microbial communities to perturbations in the lung microbiome of children with and without oropharyngeal dysphagia and aspiration.
Methods:
We conducted a prospective cohort study of 220 patients consecutively recruited from a tertiary aerodigestive center undergoing simultaneous esophagogastroduodenoscopy and flexible bronchoscopy. Bronchoalveolar lavage, gastric and oropharyngeal samples were collected from all recruited patients and 16S sequencing was performed. A subset of 104 patients also underwent video fluoroscopic swallow studies to assess swallow function and were categorized as aspiration/no aspiration. To ensure the validity of the results, we compared the microbiome of these aerodigestive patients to the microbiome of pediatric patients recruited to a longitudinal cohort study of children with suspected GERD; patients recruited to this study had oropharyngeal, gastric and/or stool samples available. The relationships between microbial communities across the aerodigestive tract were described by analyzing within- and between-patient beta diversities and identifying taxa which are exchanged between aerodigestive sites within patients. These relationships were then compared in patients with and without aspiration to evaluate the effect of aspiration on the aerodigestive microbiome.
Results:
Within all patients, lung, oropharyngeal and gastric microbiomes overlap. The degree of similarity is the lowest between the oropharynx and lungs (median Jensen-Shannon distance (JSD) = 0.90), and as high between the stomach and lungs as between the oropharynx and stomach (median JSD = 0.56 for both; p = 0.6). Unlike the oropharyngeal microbiome, lung and gastric communities are highly variable across people and driven primarily by person rather than body site. In patients with aspiration, the lung microbiome more closely resembles oropharyngeal rather than gastric communities and there is greater prevalence of microbial exchange between the lung and oropharynx than between gastric and lung sites (p = 0.04 and 4x10-5, respectively).
Conclusions:
The gastric and lung microbiomes display significant overlap in patients with intact airway protective mechanisms while the lung and oropharynx remain distinct. In patients with impaired swallow function and aspiration, the lung microbiome shifts towards oropharyngeal rather than gastric communities. This finding may explain why antireflux surgeries fail to show benefit in pediatric pulmonary outcomes.
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