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Updated: Jul 13, 2025

Experimental Human Pneumococcal Carriage
Published on: February 15, 2013
Saliva as an alternative sample type for detection of pneumococcal carriage in young children
Anne L Wyllie1,2, Nynke Y Rots3, Alienke J Wijmenga-Monsuur3
1Paediatric Immunology and Infectious Diseases, Wilhelmina Children's Hospital, University Medical Center Utrecht, Utrecht, The Netherlands.
Insights
Detecting pneumococcal carriage in children is crucial. Nasopharyngeal swabs tested with qPCR are most sensitive, but saliva samples offer complementary detection of pneumococcal colonization.
Area of Science:
- Pediatric Infectious Diseases
- Microbiology
- Molecular Diagnostics
Background:
- Conventional culture of nasopharyngeal swabs is the standard for detecting pneumococcal carriage in children.
- Saliva has emerged as a sensitive method for pneumococcal colonization surveillance, particularly in older age groups.
- The sensitivity of saliva versus nasopharyngeal swabs for pneumococcal detection in young children, especially post-vaccination, requires further investigation.
Purpose of the Study:
- To compare the sensitivity of paired nasopharyngeal and saliva samples for detecting pneumococcal carriage in PCV7-vaccinated 24-month-old children.
- To evaluate both conventional culture and molecular (qPCR) methods for pneumococcal detection in these sample types.
- To determine the added value of saliva sampling for comprehensive pneumococcal carriage assessment.
Main Methods:
- Collected paired nasopharyngeal and saliva samples from 288 24-month-old children.
- Performed conventional diagnostic culture on all samples.
- Utilized qPCR on DNA extracted from culture growth to detect pneumococcal genes (piaB, lytA) and specific serotypes.
Main Results:
- qPCR on nasopharyngeal swabs detected the most carriers (65%), significantly more than conventional culture (60%) or qPCR on saliva (54%).
- Conventional culture was not feasible for saliva due to polymicrobial overgrowth.
- Saliva samples identified 15% of carriers missed by nasopharyngeal swabs, highlighting its complementary role.
Conclusions:
- qPCR testing of nasopharyngeal swabs is the most sensitive method for pneumococcal detection in infants.
- Saliva sampling, while less sensitive overall, captures a significant proportion of carriers missed by nasopharyngeal swabs.
- Saliva can serve as a valuable complementary tool for comprehensive pneumococcal carriage and serotype surveillance, especially in longitudinal studies.
Abstract:
For children, the gold standard for the detection of pneumococcal carriage is conventional culture of a nasopharyngeal swab. Saliva, however, has a history as one of the most sensitive methods for surveillance of pneumococcal colonization and has recently been shown to improve carriage detection in older age groups. Here, we compared the sensitivity of paired nasopharyngeal and saliva samples from PCV7-vaccinated 24-month-old children for pneumococcal carriage detection using conventional and molecular detection methods. Nasopharyngeal and saliva samples were collected from 288 24-month-old children during the autumn/winter, 2012/2013. All samples were first processed by conventional diagnostic culture. Next, DNA extracted from all plate growth was tested by qPCR for the presence of the pneumococcal genes piaB and lytA and a subset of serotypes. By culture, 161/288 (60 %) nasopharyngeal swabs tested positive for pneumococcus, but detection was not possible from saliva due to abundant polymicrobial growth on culture plates. By qPCR, 155/288 (54 %) culture-enriched saliva samples and 187/288 (65 %) nasopharyngeal swabs tested positive. Altogether, 219/288 (76 %) infants tested positive for pneumococcus, with qPCR-based carriage detection of culture-enriched nasopharyngeal swabs detecting significantly more carriers compared to either conventional culture (P<0.001) or qPCR detection of saliva (P=0.002). However, 32/219 (15 %) carriers were only positive in saliva, contributing significantly to the overall number of carriers detected (P=0.002). While testing nasopharyngeal swabs by qPCR proved most sensitive for pneumococcal detection in infants, saliva sampling could be considered as complementary to provide additional information on carriage and serotypes that may not be detected in the nasopharynx and may be particularly useful in longitudinal studies, requiring repeated sampling of study participants.
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