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Published on: February 23, 2014
Non-diphtheriae Corynebacterium species are associated with decreased risk of pneumococcal colonization during
Matthew S Kelly1,2, Catherine Plunkett3, Yahe Yu4
1Botswana-University of Pennsylvania Partnership, Gaborone, Botswana. matthew.kelly@duke.edu.
Abstract:
Streptococcus pneumoniae (pneumococcus) is a leading cause of severe infections among children and adults. Interactions between commensal microbes in the upper respiratory tract and S. pneumoniae are poorly described. In this study, we sought to identify interspecies interactions that modify the risk of S. pneumoniae colonization during infancy and to describe development of the upper respiratory microbiome during infancy in a sub-Saharan African setting. We collected nasopharyngeal swabs monthly (0-6 months of age) or bimonthly (6-12 months of age) from 179 mother-infant dyads in Botswana. We used 16S ribosomal RNA gene sequencing to characterize the nasopharyngeal microbiome and identified S. pneumoniae colonization using a species-specific PCR assay. We detect S. pneumoniae colonization in 144 (80%) infants at a median age of 71 days and identify a strong negative association between the relative abundance of the bacterial genera Corynebacterium within the infant nasopharyngeal microbiome and the risk of S. pneumoniae colonization. Using in vitro cultivation experiments, we demonstrate growth inhibition of S. pneumoniae by secreted factors from strains of several Corynebacterium species isolated from these infants. Finally, we demonstrate that antibiotic exposures and the winter season are associated with a decline in the relative abundance of Corynebacterium within the nasopharyngeal microbiome, while breastfeeding is associated with an increase in the Corynebacterium relative abundance. Our findings provide novel insights into the interspecies interactions that contribute to colonization resistance to S. pneumoniae and suggest that the nasopharyngeal microbiome may be a previously unrecognized mechanism by which environmental factors influence the risk of pneumococcal infections during childhood. Moreover, this work lays the foundation for future studies seeking to use targeted manipulation of the nasopharyngeal microbiome to prevent infections caused by S. pneumoniae.
Insights
Certain Corynebacterium bacteria in the infant nose may protect against Streptococcus pneumoniae colonization. Environmental factors like antibiotics and breastfeeding influence these protective bacteria, impacting pneumococcal infection risk.
Area of Science:
- Microbiology
- Immunology
- Pediatrics
Background:
- Streptococcus pneumoniae (pneumococcus) is a major cause of childhood infections.
- Interactions between upper respiratory tract microbes and S. pneumoniae are not well understood.
- Infant nasopharyngeal microbiome development and its role in colonization resistance require further investigation.
Purpose of the Study:
- Identify interspecies interactions affecting S. pneumoniae colonization risk in infants.
- Characterize upper respiratory microbiome development in infants in sub-Saharan Africa.
- Investigate factors influencing the abundance of protective bacteria.
Main Methods:
- Collected monthly/bimonthly nasopharyngeal swabs from 179 mother-infant dyads (0-12 months) in Botswana.
- Used 16S rRNA gene sequencing for microbiome analysis and species-specific PCR for S. pneumoniae detection.
- Conducted in vitro experiments to assess growth inhibition of S. pneumoniae by Corynebacterium species.
Main Results:
- S. pneumoniae colonization was detected in 80% of infants by a median age of 71 days.
- Higher abundance of Corynebacterium in the infant nasopharyngeal microbiome was strongly associated with reduced S. pneumoniae colonization risk.
- Antibiotic exposure and winter season decreased Corynebacterium abundance, while breastfeeding increased it.
Conclusions:
- Corynebacterium species inhibit S. pneumoniae growth in vitro, suggesting a role in colonization resistance.
- Environmental factors (antibiotics, season, breastfeeding) modulate the nasopharyngeal microbiome, influencing pneumococcal colonization.
- Targeted manipulation of the nasopharyngeal microbiome may offer a novel strategy for preventing pneumococcal infections in children.
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