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Published on: April 28, 2014
Pneumococcal Colonization and the Nasopharyngeal Microbiota of Children in Botswana
Matthew S Kelly1,2, Michael G Surette3, Marek Smieja3,4,5,6
1From the Botswana-UPenn Partnership, Gaborone, Botswana.
Insights
Nasopharyngeal microbiota composition in children is linked to Streptococcus pneumoniae colonization. Understanding these interactions may lead to new strategies for preventing pneumococcal infections.
Area of Science:
- Microbiology
- Pediatrics
- Public Health
Background:
- Nasopharyngeal colonization by Streptococcus pneumoniae precedes infection.
- Understanding host-pathogen interactions in the nasopharynx is key to preventing pneumococcal disease.
- Childhood nasopharyngeal microbiota plays a critical role in susceptibility to S. pneumoniae.
Purpose of the Study:
- To investigate the relationship between nasopharyngeal microbiota composition and S. pneumoniae colonization in children.
- To identify factors associated with pneumococcal colonization in young children.
- To explore the potential of microbiota-based strategies for pneumonia prevention.
Main Methods:
- Collected nasopharyngeal swabs from 170 children aged 1-23 months in Botswana.
- Utilized polymerase chain reaction (PCR) for pathogen detection.
- Employed 16S rRNA gene sequencing and random forest models to analyze microbiota and identify associations.
Main Results:
- 56% of children were colonized with S. pneumoniae.
- Colonization was associated with older age, lack of home electricity, and wood fuel use.
- Pneumococcal colonization altered nasopharyngeal microbiota, increasing Moraxella and decreasing Corynebacterium and Staphylococcus.
- A decision tree model achieved 81% sensitivity and 85% specificity in predicting colonization.
Conclusions:
- Nasopharyngeal microbiota composition is significantly altered in children colonized with S. pneumoniae.
- Further research is needed to determine if modifying the nasopharyngeal microbiota can prevent pneumococcal colonization and subsequent infections.
- Microbiota-targeted interventions represent a potential novel strategy for pneumonia prevention.
Background:
Nasopharyngeal colonization precedes infections caused by Streptococcus pneumoniae. A more detailed understanding of interactions between S. pneumoniae and the nasopharyngeal microbiota of children could inform strategies to prevent pneumococcal infections.
Methods:
We collected nasopharyngeal swabs from children 1 to 23 months of age in Botswana between August 2012 and June 2016. We tested samples for S. pneumoniae and common respiratory viruses using polymerase chain reaction. We sequenced the V3 region of the bacterial 16S ribosomal RNA gene and used random forest models to identify clinical variables and bacterial genera that were associated with pneumococcal colonization.
Results:
Mean age of the 170 children included in this study was 8.3 months. Ninety-six (56%) children were colonized with S. pneumoniae. Pneumococcal colonization was associated with older age (P = 0.0001), a lack of electricity in the home (P = 0.02) and household use of wood as a cooking fuel (P = 0.002). Upper respiratory symptoms were more frequent in children with S. pneumoniae colonization (60% vs. 32%; P = 0.001). Adjusting for age, nasopharyngeal microbiota composition differed in colonized and noncolonized children (P = 0.001). S. pneumoniae colonization was associated with a higher relative abundance of Moraxella (P = 0.001) and lower relative abundances of Corynebacterium (P = 0.001) and Staphylococcus (P = 0.03). A decision tree model containing the relative abundances of bacterial genera had 81% sensitivity and 85% specificity for the determination of S. pneumoniae colonization status.
Conclusions:
S. pneumoniae colonization is associated with characteristic alterations of the nasopharyngeal microbiota of children. Prospective studies should determine if nasopharyngeal microbial composition alters the risk of pneumococcal colonization and thus could be modified as a novel pneumonia prevention strategy.
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