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Updated: Jul 16, 2026

Murine Oropharyngeal Aspiration Model of Ventilator-associated and Hospital-acquired Bacterial Pneumonia
Published on: June 28, 2018
Molecular analysis of oral and respiratory bacterial species associated with ventilator-associated pneumonia
Farah K Bahrani-Mougeot1, Bruce J Paster, Shirley Coleman
1Department of Oral Medicine, Carolinas Medical Center, P.O. Box 32861, Charlotte, NC 28232, USA. farah.bahrani-mougeot@carolinas.org
Abstract:
Trauma intensive care unit (TICU) patients requiring mechanical respiratory support frequently develop ventilator-associated pneumonia (VAP). Oral and oropharyngeal bacteria are believed to be responsible for many cases of VAP, but definitive evidence of this relationship is lacking. Earlier studies used conventional culture-based methods for identification of bacterial pathogens, but these methods are insufficient, as some bacteria may be uncultivable or difficult to grow. The purpose of this study was to use a culture-independent molecular approach to analyze and compare the bacterial species colonizing the oral cavity and the lungs of TICU patients who developed VAP. Bacterial samples were acquired from the dorsal tongue and bronchoalveolar lavage fluid of 16 patients. Bacterial DNA was extracted, and the 16S rRNA genes were PCR amplified, cloned into Escherichia coli, and sequenced. The sequencing data revealed the following: (i) a wide diversity of bacterial species in both the oral and pulmonary sites, some of them novel; (ii) known and putative respiratory pathogens colonizing both the oral cavity and lungs of 14 patients; and (iii) a number of bacterial pathogens (e.g., Dialister pneumosintes, Haemophilus segnis, Gemella morbillorum, and Pseudomonas fluorescens) in lung samples that had not been reported previously at this site when culture-based methods were used. Our data indicate that the dorsal surface of the tongue serves as a potential reservoir for bacterial species involved in VAP. Furthermore, it is clear that the diversity of bacterial pathogens for VAP is far more complex than the current literature suggests.
Insights
The tongue
Area of Science:
- Microbiology
- Intensive Care Medicine
- Molecular Biology
Background:
- Mechanical ventilation in trauma intensive care units (TICU) often leads to ventilator-associated pneumonia (VAP).
- Oral bacteria are suspected VAP contributors, but definitive links are unproven.
- Conventional culture methods for bacterial identification are limited.
Purpose of the Study:
- To compare oral and lung bacterial communities in TICU patients with VAP using molecular methods.
- To identify bacterial reservoirs for VAP development.
Main Methods:
- Collected dorsal tongue and bronchoalveolar lavage samples from 16 TICU patients.
- Extracted bacterial DNA and amplified 16S rRNA genes.
- Utilized PCR, cloning in E. coli, and sequencing for bacterial identification.
Main Results:
- Identified diverse bacterial species, including novel ones, in both oral and lung samples.
- Found known and potential respiratory pathogens in 14 patients' oral and lung sites.
- Detected previously unreported VAP pathogens in lung samples using molecular analysis.
Conclusions:
- The dorsal tongue may act as a reservoir for VAP-associated bacteria.
- The spectrum of bacterial pathogens involved in VAP is more complex than previously understood.
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