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Published on: December 31, 2017
A population-based study on associations of stool microbiota with atopic diseases in school-age children
Chen Hu1, Evelien R van Meel2, Carolina Medina-Gomez3
1The Generation R Study Group, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands; Department of Dermatology, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands.
Insights
Gut microbiota diversity in school-aged children is linked to atopic disease risk. Specific bacterial species and metabolic pathways in the gut microbiome correlate with conditions like eczema and inhalant allergies.
Area of Science:
- Microbiome research
- Pediatric allergy and immunology
- Gut microbiome and health
Background:
- Reduced gut microbiota diversity in infancy is linked to early-life atopic diseases.
- Associations between gut microbiota and atopic diseases at school age remain unclear.
Purpose of the Study:
- To investigate the relationship between gut microbiota characteristics (diversity, abundance, function) and atopic diseases in school-aged children.
- To identify specific microbial taxa and metabolic pathways associated with allergic conditions.
Main Methods:
- Cross-sectional study of 1440 ten-year-old children within a prospective cohort.
- 16S rRNA gene sequencing of stool samples to analyze taxonomic and functional microbiota composition.
- Assessment of physician-diagnosed eczema, allergy, asthma, allergic sensitization via skin prick tests, and lung function via spirometry.
Main Results:
- Gut microbiota alpha-diversity showed a trend towards decreased eczema risk (OR 0.98).
- Specific bacteria (Lachnospiraceae, Ruminococcaceae, Christensenellaceae) were associated with reduced risks of eczema and inhalant allergy.
- Certain functional pathways (heme and terpenoid biosynthesis) correlated with lower risks of inhalant allergy and asthma.
Conclusions:
- Gut microbiota diversity, composition, and function are associated with atopic diseases in school-aged children.
- Inhalant allergy showed the most consistent association with gut microbiota characteristics.
- Findings highlight the potential role of the gut microbiome in the development and persistence of allergic diseases.
Background:
Infants with less diverse gut microbiota seem to have higher risks of atopic diseases in early life, but any associations at school age are unclear.
Objectives:
This study sought to examine the associations of diversity, relative abundance, and functional pathways of stool microbiota with atopic diseases in school-age children.
Methods:
We performed a cross-sectional study within an existing population-based prospective cohort among 1440 children 10 years of age. On stool samples, 16S ribosomal RNA gene sequencing was performed, and taxonomic and functional tables were produced. Physician-diagnosed eczema, allergy, and asthma were measured by questionnaires, allergic sensitization by skin prick tests, and lung function by spirometry.
Results:
The α-diversity of stool microbiota was associated with a decreased risk of eczema (odds ratio [OR], 0.98; 95% CI, 0.97, 1.00), and β-diversity was associated with physician-diagnosed inhalant allergy (R2 = 0.001; P = .047). Lachnospiraceae, Ruminococcaceae_UCG-005, and Christensenellaceae_R-7_group species were associated with decreased risks of eczema, inhalant allergic sensitization, and physician-diagnosed inhalant allergy (OR range, 0.88-0.94; 95% CI range, 0.79-0.96 to 0.88-0.98), while Agathobacter species were associated with an increased risk of physician-diagnosed inhalant allergy (OR, 1.23; 95% CI, 1.08-1.42). Functional pathways related to heme and terpenoid biosynthesis were associated with decreased risks of physician-diagnosed inhalant allergy and asthma (OR range, 0.89-0.86; 95% CI range, 0.80-0.99 to 0.73-1.02). No associations of stool microbiota with lung function were observed.
Conclusions:
The diversity, relative abundance and functional pathways of stool microbiota were most consistently associated with physician-diagnosed inhalant allergy in school-age children and less consistently with other atopic diseases.
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