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Updated: Oct 12, 2025

Murine Oropharyngeal Aspiration Model of Ventilator-associated and Hospital-acquired Bacterial Pneumonia
Published on: June 28, 2018
Airway microbiome dynamics and relationship to ventilator-associated infection in intubated pediatric patients
Keiko M Tarquinio1, Todd Karsies2, Steven L Shein3
1Division of Pediatric Critical Care, Children's Healthcare of Atlanta, Emory University, Atlanta, Georgia, USA.
Insights
The airway microbiome in intubated children shows decreasing diversity with longer ventilation and higher scores for ventilator-associated infection. No specific microbiome patterns were linked to diagnosed ventilator-associated infections.
Area of Science:
- Pediatric critical care medicine
- Microbiome research
- Respiratory health
Background:
- Limited understanding of the airway microbiome in mechanically ventilated children.
- Need to characterize longitudinal changes and associations with clinical factors.
Purpose of the Study:
- To characterize the airway microbiome in intubated, mechanically ventilated children.
- To investigate associations with clinical variables and ventilator-associated infection (VAI).
Main Methods:
- Prospective collection of serial tracheal aspirate samples from children under 3 years old.
- 16S ribosomal RNA gene sequencing to analyze bacterial microbiome composition.
- Correlation with demographics, diagnoses, clinical parameters, outcomes, and Ventilator-Associated InfectioN (VAIN) scores.
Main Results:
- Proteobacteria was the dominant phylum, followed by Firmicutes and Actinobacteria.
- Alpha diversity negatively correlated with intubation duration and VAIN score.
- Specific taxa changes observed with increasing VAIN scores, but no distinct pattern for clinically diagnosed VAI.
Conclusions:
- Decreasing airway microbiome alpha diversity is associated with increased intubation duration and VAIN score.
- No specific microbiome signature identified for clinically diagnosed ventilator-associated infections in this pediatric cohort.
Background:
Little is known about the airway microbiome in intubated mechanically ventilated children. We sought to characterize the airway microbiome longitudinally and in association with clinical variables and possible ventilator-associated infection (VAI).
Methods:
Serial tracheal aspirate samples were prospectively obtained from mechanically ventilated subjects under 3 years old from eight pediatric intensive care units in the United States from June 2017 to July 2018. Changes in the tracheal microbiome were analyzed by sequencing bacterial 16S ribosomal RNA gene relative to subject demographics, diagnoses, clinical parameters, outcomes, antibiotic treatment, and the Ventilator-Associated InfectioN (VAIN) score.
Results:
A total of 221 samples from 58 patients were processed and 197 samples met the >1000 reads criteria (89%), with an average of 43,000 reads per sample. The median number of samples per subject was 3 (interquartile range [IQR]: 2-5), with a median VAIN score of 2 (IQR: 1-3). Proteobacteria was the highest observed phyla throughout the intubation period, followed by Firmicutes and Actinobacteria. Alpha diversity was negatively associated with days of intubation (p = .032) and VAIN score (p = .016). High VAIN scores were associated with a decrease of Mycobacterium obuense, and an increase of Streptococcus peroris, Porphyromonadaceae family (unclassified species), Veillonella atypica, and several other taxa. No specific pattern of microbiome composition related to clinically diagnosed VAIs was observed.
Conclusions:
Our data demonstrate decreasing alpha diversity with increasing VAIN score and days of intubation. No specific microbiome pattern was associated with clinically diagnosed VAI.
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