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Updated: Oct 7, 2025

An Intestinal Gut Organ Culture System for Analyzing Host-Microbiota Interactions
Published on: June 30, 2021
Contribution of Gut Microbiota to Immune Tolerance in Infants
Constanza S Méndez1,2, Susan M Bueno2, Alexis M Kalergis2,3
1Carrera de Nutrición y Dietética, Departamento de Ciencias de la Salud, Facultad de Medicina, Pontificia Universidad Católica de Chile, Chile.
Insights
Food allergy prevalence is rising in children. Gut microbiota may explain this increase, but therapies targeting it require more human studies for efficacy in inducing allergen tolerance.
Area of Science:
- Immunology
- Microbiology
- Pediatrics
Background:
- Rising food allergy (FA) prevalence, particularly in children, is a growing concern.
- Differences in gut microbiota composition between allergic and healthy children suggest a link to FA development.
- Early-life environmental factors like birth mode and breastfeeding shape gut microbiota.
Purpose of the Study:
- To explore the role of gut microbiota in pediatric food allergies.
- To discuss immunological mechanisms regulating gut microbiota in FA.
- To review current evidence on microbiota-targeted therapies for inducing allergen tolerance.
Main Methods:
- Review of existing literature on gut microbiota, immunology, and food allergy.
- Analysis of immunomodulatory mechanisms involving Tregs, FOXP3, vitamin A, and butyrate.
- Evaluation of pre- and probiotic therapies for allergen tolerance.
Main Results:
- Gut microbiota composition is altered in children with FA.
- Immunomodulatory factors like Tregs, FOXP3, vitamin A, and butyrate play a role.
- Current evidence for microbiota-modulating therapies in human FA is limited and inconclusive.
Conclusions:
- Gut microbiota is a potential factor in pediatric food allergy.
- Further large-scale human studies are needed to validate microbiota-based therapies for allergen tolerance.
- Understanding microbiota regulation is key to developing effective FA treatments.
Abstract:
The prevalence of food allergy has increased in recent years, especially among the pediatric population. Differences in the gut microbiota composition between children with FA and healthy children have brought this topic into the spotlight as a possible explanation for the increase in FA. The gut microbiota characteristics are acquired through environmental interactions starting early in life, such as type of delivery during birth and breastfeeding. The microbiota features may be shaped by a plethora of immunomodulatory mechanisms, including a predominant role of Tregs and the transcription factor FOXP3. Additionally, a pivotal role has been given to vitamin A and butyrate, the main anti-inflammatory metabolite. These observations have led to the study and development of therapies oriented to modifying the microbiota and metabolite profiles, such as the use of pre- and probiotics and the determination of their capacity to induce tolerance to allergens that are relevant to FA. To date, evidence supporting these approaches in humans is scarce and inconclusive. Larger cohorts and dose-titration studies are mandatory to evaluate whether the observed changes in gut microbiota composition reflect medical recovery and increased tolerance in pediatric patients with FA. In this article, we discuss the establishment of the microbiota, the immunological mechanisms that regulate the microbiota of children with food allergies, and the evidence in research focused on its regulation as a means to achieve tolerance to food allergens.
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