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Updated: Oct 15, 2025

Noninvasive Sampling of Mucosal Lining Fluid for the Quantification of In Vivo Upper Airway Immune-mediator Levels
Published on: August 7, 2017
Differential nasopharyngeal microbiota composition in children according to respiratory health status
Desiree Henares1,2, Pedro Brotons1,2,3, Mariona F de Sevilla2,4
1Institut de Recerca Sant Joan de Deu, Hospital Sant Joan de Deu, Barcelona, Spain.
Insights
The nasopharyngeal microbiota in children varies with respiratory health and infection severity. Specific bacterial and viral patterns can help diagnose severe acute respiratory infections (ARIs) non-invasively.
Area of Science:
- Microbiology
- Pediatric Infectious Diseases
- Genomics
Background:
- Acute respiratory infections (ARIs) are a major cause of childhood illness and mortality globally.
- The nasopharyngeal microbiota is implicated in susceptibility and severity of ARIs.
Purpose of the Study:
- To investigate the relationship between nasopharyngeal microbiota and respiratory health/disease in children.
- To assess the diagnostic utility of nasopharyngeal microbiota for differentiating respiratory health statuses.
Main Methods:
- Prospective case-control study involving children with invasive pneumococcal disease (IPD), upper respiratory tract infections (URTI), and healthy controls.
- Nasopharyngeal samples analyzed for pneumococcal DNA, viral DNA/RNA, and 16S rRNA gene sequencing.
- Microbiota composition correlated with ARI severity and diagnostic models were developed.
Main Results:
- Nasopharyngeal microbiota composition differed significantly across IPD, URTI, and healthy groups.
- IPD cases showed increased *Streptococcus pneumoniae*, invasive serotypes, and viral infections, with decreased *Dolosigranulum pigrum* and *Moraxella lincolnii*.
- Microbiota-based models accurately differentiated disease states.
Conclusions:
- A child's nasopharyngeal microbiota is closely linked to respiratory health and infection severity.
- Nasopharyngeal microbiota analysis shows potential for non-invasive diagnostics of severe ARIs.
Abstract:
Acute respiratory infections (ARIs) constitute one of the leading causes of antibiotic administration, hospitalization and death among children <5 years old. The upper respiratory tract microbiota has been suggested to explain differential susceptibility to ARIs and modulate ARI severity. The aim of the present study was to investigate the relation of nasopharyngeal microbiota and other microbiological parameters with respiratory health and disease, and to assess nasopharyngeal microbiota diagnostic utility for discriminating between different respiratory health statuses. We conducted a prospective case-control study at Hospital Sant Joan de Deu (Barcelona, Spain) from 2014 to 2018. This study included three groups of children <18 years with gradual decrease of ARI severity: cases with invasive pneumococcal disease (IPD) (representative of lower respiratory tract infections and systemic infections), symptomatic controls with mild viral upper respiratory tract infections (URTI), and healthy/asymptomatic controls according to an approximate case-control ratio 1:2. Nasopharyngeal samples were collected from participants for detection, quantification and serotyping of pneumococcal DNA, viral DNA/RNA detection and 16S rRNA gene sequencing. Microbiological parameters were included on case-control classification models. A total of 140 subjects were recruited (IPD=27, URTI=48, healthy/asymptomatic control=65). Children's nasopharyngeal microbiota composition varied according to respiratory health status and infection severity. The IPD group was characterized by overrepresentation of Streptococcus pneumoniae, higher frequency of invasive pneumococcal serotypes, increased rate of viral infection and underrepresentation of potential protective bacterial species such as Dolosigranulum pigrum and Moraxella lincolnii. Microbiota-based classification models differentiated cases from controls with moderately high accuracy. These results demonstrate the close relationship existing between a child's nasopharyngeal microbiota and respiratory health, and provide initial evidence of the potential of microbiota-based diagnostics for differential diagnosis of severe ARIs using non-invasive samples.
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