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Updated: Mar 24, 2026

Probiotic Studies in Neonatal Mice Using Gavage
Published on: January 27, 2019
Probiotics in early life: a preventative and treatment approach
Ashkan Hashemi1, Christopher R Villa1, Elena M Comelli2
1Department of Nutritional Sciences, Faculty of Medicine, University of Toronto, Toronto, ON, Canada. elena.comelli@utoronto.ca.
Insights
Early life probiotic interventions can promote a healthy gut microbiota, preventing diseases linked to dysbiosis. These live microorganisms offer a promising strategy for long-term health programming in infants.
Area of Science:
- Microbiology
- Immunology
- Pediatrics
Background:
- Infant gut microbiota development is crucial for immune and metabolic health.
- Dysbiosis, or microbial imbalance, in early life is linked to various pathologies.
- Maternal factors significantly influence offspring's gut microbiota composition.
Purpose of the Study:
- To explore the role of probiotics in modulating infant gut microbiota.
- To investigate the potential of early life probiotic interventions for disease prevention.
- To understand the mechanisms behind probiotic benefits in early development.
Main Methods:
- Review of pre-clinical studies on probiotic administration in early life.
- Analysis of factors influencing infant gut microbiota (e.g., birth mode, feeding).
- Examination of specific probiotic strains' effects on gut health and immunity.
Main Results:
- Probiotics can improve microbial composition and intestinal maturation.
- Pre-clinical studies show reduced pathogenic load and enhanced immune response with probiotics.
- Specific probiotic strains demonstrate potential in mitigating necrotizing enterocolitis.
Conclusions:
- Early life is an optimal window for probiotic interventions to establish a healthy microbiota.
- Probiotics can serve as a strategy to 'program' health and prevent dysbiosis-related diseases.
- Interventions show promise for both healthy infants and those at risk of chronic conditions.
Abstract:
Microbial colonization of the infant gut plays a key role in immunological and metabolic pathways impacting human health. Since the maturation of the gut microbiota coincides with early life development, failure to develop a health compatible microbiota composition may result in pathology and disease in later life. Probiotics are live microorganisms that, when administered in adequate amounts, confer a health benefit on the host. Maternal transfer of microorganisms is possible during pregnancy and lactation, and the mother's diet and microbiota can influence that of her offspring. Furthermore, pre-term birth, Caesarean section birth, formula feeding, antibiotic use, and malnutrition have been linked to dysbiosis, which in turn is associated with several pathologies such as necrotizing enterocolitis, inflammatory bowel diseases, antibiotic associated diarrhea, colic, and allergies. Thus, early life should represent a preferred stage of life for probiotic interventions. In this context, they could be regarded as a means to 'program' the individual for health maintenance, in order to prevent pathologies associated with dysbiosis. In order to elucidate the mechanisms underlying the benefits of probiotic administration, pre-clinical studies have been conducted and found an array of positive results such as improved microbial composition, intestinal maturation, decreased pathogenic load and infections, and improved immune response. Moreover, specific probiotic strains administered during the perinatal period have shown promise in attenuating severity of necrotizing enterocolitis. The mechanisms elucidated suggest that probiotic interventions in early life can be envisaged for disease prevention in both healthy offspring and offspring at risk of chronic disease.
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