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Updated: Jun 27, 2025

Basophil Activation Test for Allergy Diagnosis
Published on: May 31, 2021
The age-specific microbiome of children with milk, egg, and peanut allergy
Punita Ponda1, Jane E Cerise2, Brianne Navetta-Modrov3
1Northwell, New Hyde Park, New York; Division of Allergy and Immunology, Cohen Children's Medical Center, New Hyde Park, New York.
Insights
Gut microbiome dysbiosis is linked to food allergies, particularly in older children with peanut allergy. Differences in gut bacteria are less pronounced in younger children, suggesting age is crucial for interventions.
Area of Science:
- Microbiome research
- Immunology
- Pediatric allergy
Background:
- Gut microbiota plays a role in immune regulation and may precede food allergy development.
- Previous studies have not adequately compared microbiomes across different age groups and clinical phenotypes.
Purpose of the Study:
- To compare the gut microbiome composition of children with food allergy (categorized by age: <3 years and 3-18 years) against age-matched healthy controls.
- To identify specific microbial differences associated with food allergy in different pediatric age groups.
Main Methods:
- A prospective, cross-sectional study involving 70 children (56 with food allergy, 14 controls) recruited between 2014-2019.
- 16S ribosomal RNA sequencing was used to analyze stool microbial DNA.
- Alpha and beta diversity were compared between food allergy and control groups, stratified by age, with differential abundance analysis performed.
Main Results:
- While younger children with food allergy showed similar alpha diversity to controls, beta diversity differed significantly by age (P = .001).
- Differential abundance of specific taxa, including Clostridia, was observed in younger children with food allergy.
- Older children with food allergy, especially those with peanut allergy, exhibited significant differences in both a priori and non-a priori taxa.
Conclusions:
- Gut dysbiosis is associated with food allergy, with the most pronounced differences seen in older children with peanut allergy.
- Fewer gut microbiota differences were found between younger children with and without food allergy.
- These findings suggest that age, particularly under 3 years, is a critical factor for considering therapeutic interventions like oral immunotherapy for food allergies.
Background:
Immune regulation by gut microbiota is affected by dysbiosis and may precede food allergy onset. Prior studies lacked comparisons stratified by age and clinical phenotype.
Objective:
To assess the microbiome of children with food allergy (<3 years, 3-18 years) compared with similar aged children without food allergy.
Methods:
A real-world prospective cross-sectional study performed from 2014 to 2019 recruited children highly likely to have milk, egg, or peanut allergy defined by history and serum IgE or confirmed by food challenge. 16S ribosomal RNA sequencing identified stool microbial DNA. Alpha and beta diversity was compared between groups with food allergy and healthy controls stratified by age. Differential abundance for non a priori taxa was accepted at absolute fold-change greater than 2 and q value less than 0.05.
Results:
A total of 70 patients were included (56 with food allergy and 14 healthy controls). Groups were not significantly different in age, gender at birth, race, mode of delivery, breastfeeding duration, or antibiotic exposure. Younger children with food allergy had similar alpha diversity compared with controls. Beta diversity was significantly different by age (P = .001). There was differential abundance of several a priori (P < .05) taxa (including Clostridia) only in younger children. Both a priori (including Coprococcus and Clostridia) and non a priori (q < 0.05) Acidobacteria_Gp15, Aestuariispira, Tindallia, and Desulfitispora were significant in older children with food allergy, especially with peanut allergy.
Conclusion:
Dysbiosis associates with food allergy, most prominent in older children with peanut allergy. Younger children with and without food allergy have fewer differences in gut microbiota. This correlates with clinical observations of persistence of peanut allergy and improved efficacy and safety of oral immunotherapy in younger children. Age younger than 3 years should be considered when initiating therapeutic interventions.
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