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Updated: Jan 19, 2026

A Non-invasive and Technically Non-intensive Method for Induction and Phenotyping of Experimental Bacterial Pneumonia in Mice
Published on: September 28, 2016
Exploring the microbiota of upper respiratory tract during the development of pneumonia in a mouse model
Yoshitomo Morinaga1,2, Yuki Take1, Daisuke Sasaki1
1Department of Laboratory Medicine, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Nagasaki, Japan.
Abstract:
The alteration of the microbial community in the upper respiratory tract (URT) can contribute to the colonization and invasion of respiratory pathogens. However, there are no studies regarding whether the characteristics of the URT microbiota can be affected by infections in lower respiratory tract (LRT). To elucidate the microbial profiles of the URT during pneumonia, the oral, nasal, and lung microbiota was evaluated at the early phase in a murine pneumonia model by direct intratracheal inoculation of Klebsiella pneumoniae. The meta 16S rRNA sequencing of bronchoalveolar lavage fluid after K. pneumoniae inoculation presented alterations in the beta diversity of the microbes, but not in the alpha diversity. At this point, a significant increase in microbial alpha diversity was observed in the oral cavity, but not in the nasal cavity. The significant increase was observed in the family Carnobacteriaceae and family Enterococcaceae. These results suggest that characterizing the microbial community of the respiratory tract may not just involve a simple downstream relationship from the URT to the LRT. The health status of the LRT may influence the oral microbiota. Thus, evaluation of the oral microbiota may contribute towards monitoring lung health; the oral microbiota may act as a diagnostic marker of pneumonia.
Insights
Pneumonia caused by Klebsiella pneumoniae infection alters lung microbial diversity. Oral microbiota changes may serve as an early diagnostic marker for pneumonia, indicating a link between lower and upper respiratory tract health.
Area of Science:
- Microbiology
- Immunology
- Genomics
Background:
- Upper respiratory tract (URT) microbial alterations can lead to pathogen colonization.
- The impact of lower respiratory tract (LRT) infections on URT microbiota is not well understood.
Purpose of the Study:
- To investigate changes in oral, nasal, and lung microbiota during early-stage pneumonia.
- To determine if LRT infections influence URT microbial profiles.
Main Methods:
- A murine model of pneumonia was established via intratracheal inoculation of Klebsiella pneumoniae.
- Meta-16S rRNA sequencing was used to analyze bronchoalveolar lavage fluid, oral, and nasal samples.
Main Results:
- Pneumonia induced significant alterations in lung microbial beta diversity, but not alpha diversity.
- Oral microbial alpha diversity significantly increased, with notable changes in Carnobacteriaceae and Enterococcaceae families.
- Nasal microbial diversity remained largely unaffected.
Conclusions:
- The relationship between URT and LRT microbiota is bidirectional, not solely downstream.
- Oral microbiota composition may be influenced by LRT health status.
- Oral microbiota could serve as a potential diagnostic marker for pneumonia and lung health monitoring.
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