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Updated: Jan 1, 2026

Murine Oropharyngeal Aspiration Model of Ventilator-associated and Hospital-acquired Bacterial Pneumonia
Published on: June 28, 2018
Dynamics of microbiota during mechanical ventilation in aspiration pneumonia
Ken Otsuji1,2, Kazumasa Fukuda3, Midori Ogawa3
1Department of Microbiology, School of Medicine, University of Occupational and Environmental Health, Japan, Kitakyushu, Japan. otsujiken@clnc.uoeh-u.ac.jp.
Background:
The emergence of multi-drug resistant pathogens is an urgent health-related problem, and the appropriate use of antibiotics is imperative. It is often difficult to identify the causative bacteria in patients with aspiration pneumonia because tracheal aspirate contains contaminants of oral bacteria. We investigated the dynamics of microbiota in mechanically ventilated patients with aspiration pneumonia to develop a treatment strategy.
Methods:
Twenty-two intubated patients with aspiration pneumonia were recruited. Saliva and tracheal aspirate of the subjects were collected at three time points: (A) within 2 h after intubation, (B) just before administration of antibiotics, and (C) 48-72 h after administration of antibiotics. The microbiota in each specimen was analyzed by using the 16S rRNA gene clone library sequencing method. Bacterial floras of the samples were analyzed by principal component analysis.
Results:
Principal component analysis based on the composition of genus revealed that although the changes of microbiota in the saliva from (A) to (B) were not clear, the composition of anaerobes in the tracheal aspirate (B) was lower than (A). In fact, the reduction of anaerobes, not in the saliva but in the tracheal aspirate from (A) to (B), was confirmed by incident rate ratios estimated by a multilevel Poisson regression model (p < 0.001). The extent of decrease in anaerobes was fully dependent on the time difference between the sampling of tracheal aspirate (A) and (B)-in particular, over 3 h of mechanical ventilation. This indicates that the alterations of microbiota (involving the reduction of anaerobes in the lower respiratory tract) occurred during mechanical ventilation prior to the administration of antibiotics. After the administration of antibiotics, Enterobacter spp., Corynebacterium spp., Pseudomonas aeruginosa, Klebsiella pneumoniae, Staphylococcus aureus, and Granulicatera adiacens were predominantly detected in the tracheal aspirate (C).
Conclusion:
The microbiota of the lower respiratory tract changes dynamically during mechanical ventilation and during the administration of antibiotics in intubated patients with aspiration pneumonia. Antibiotics should be selected on the premise that dynamic changes in microbiota (involved in the reduction of anaerobes) may occur during the mechanical ventilation in these patients.
Insights
Mechanical ventilation alters lower respiratory tract microbiota in aspiration pneumonia patients, reducing anaerobes before antibiotic treatment. This dynamic change impacts antibiotic selection strategies for better patient outcomes.
Area of Science:
- Microbiology
- Critical Care Medicine
- Infectious Diseases
Background:
- Multi-drug resistant pathogens pose a significant global health threat, necessitating judicious antibiotic use.
- Accurate bacterial identification in aspiration pneumonia is challenging due to oral flora contamination in tracheal aspirates.
- Understanding respiratory tract microbiota dynamics is crucial for effective treatment strategies.
Purpose of the Study:
- To investigate the dynamic changes in microbiota within the lower respiratory tract of mechanically ventilated patients diagnosed with aspiration pneumonia.
- To inform the development of optimized antibiotic treatment strategies based on observed microbial shifts.
Main Methods:
- Twenty-two intubated patients with aspiration pneumonia were enrolled.
- Saliva and tracheal aspirate samples were collected at three time points: pre-intubation, pre-antibiotics, and 48-72 hours post-antibiotics.
- Microbiota composition was analyzed using 16S rRNA gene sequencing and principal component analysis.
Main Results:
- Tracheal aspirates showed a significant reduction in anaerobes during mechanical ventilation, prior to antibiotic administration (p < 0.001).
- This anaerobic reduction correlated with the duration of mechanical ventilation, particularly exceeding 3 hours.
- Post-antibiotic treatment, the tracheal aspirate was dominated by Enterobacter spp., Corynebacterium spp., Pseudomonas aeruginosa, Klebsiella pneumoniae, Staphylococcus aureus, and Granulicatera adiacens.
Conclusions:
- The lower respiratory tract microbiota undergoes dynamic alterations during mechanical ventilation in intubated aspiration pneumonia patients.
- A significant reduction in anaerobes occurs during mechanical ventilation, independent of initial antibiotic treatment.
- Antibiotic selection must account for these pre-treatment microbial shifts to ensure therapeutic efficacy.
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