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Updated: Feb 8, 2026

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Published on: July 25, 2017
Disruption of maternal gut microbiota during gestation alters offspring microbiota and immunity
Donald D Nyangahu1,2, Katie S Lennard3, Bryan P Brown4,2
1Institute of Infectious Diseases and Molecular Medicine, Department of Pathology, Division of Immunology, University of Cape Town, Cape Town, South Africa.
Insights
Maternal gut microbiota significantly impacts infant immunity. Altering the mother's gut microbes during pregnancy or nursing affects the infant's immune system development and gut microbial composition.
Area of Science:
- Microbiology
- Immunology
- Neonatal Development
Background:
- Early life microbiota is crucial for immune and metabolic development.
- Maternal gut microbiota plays a key role in establishing the infant gut microbiota.
- The influence of maternal microbiota on infant immunity requires further investigation.
Purpose of the Study:
- To investigate the hypothesis that maternal gut microbiota during pregnancy and breastfeeding critically determines infant immunity.
- To analyze the effects of maternal vancomycin administration on maternal and infant adaptive immunity and gut microbiota.
Main Methods:
- Pregnant BALB/c dams were administered vancomycin during gestation (Mg), nursing (Mn), both (Mgn), or not at all (Mc).
- Maternal and offspring adaptive immunity and gut microbiota were analyzed post-delivery.
- Microbiota composition and immune cell populations (IgG, IgM, lymphocytes, CD4+ T cells, B cells) were assessed.
Main Results:
- Maternal vancomycin altered pup gut microbiota, showing lower alpha-diversity and distinct community structures.
- Vancomycin was not detected in maternal or offspring sera, indicating an indirect effect.
- Maternal milk showed increased IgG and IgM in vancomycin-treated groups (Mgn, Mn).
- Pup spleens exhibited increased lymphocyte numbers, including CD4+ T cells and B cells, in treated groups.
Conclusions:
- Perturbations to maternal gut microbiota directly influence neonatal adaptive immunity.
- Maternal gut microbial composition is a critical determinant of infant immune system development.
- The study highlights an indirect mechanism of maternal microbiota influence on neonatal colonization and immunity.
Background:
Early life microbiota is an important determinant of immune and metabolic development and may have lasting consequences. The maternal gut microbiota during pregnancy or breastfeeding is important for defining infant gut microbiota. We hypothesized that maternal gut microbiota during pregnancy and breastfeeding is a critical determinant of infant immunity. To test this, pregnant BALB/c dams were fed vancomycin for 5 days prior to delivery (gestation; Mg), 14 days postpartum during nursing (Mn), or during gestation and nursing (Mgn), or no vancomycin (Mc). We analyzed adaptive immunity and gut microbiota in dams and pups at various times after delivery.
Results:
In addition to direct alterations to maternal gut microbial composition, pup gut microbiota displayed lower α-diversity and distinct community clusters according to timing of maternal vancomycin. Vancomycin was undetectable in maternal and offspring sera, therefore the observed changes in the microbiota of stomach contents (as a proxy for breastmilk) and pup gut signify an indirect mechanism through which maternal intestinal microbiota influences extra-intestinal and neonatal commensal colonization. These effects on microbiota influenced both maternal and offspring immunity. Maternal immunity was altered, as demonstrated by significantly higher levels of both total IgG and IgM in Mgn and Mn breastmilk when compared to Mc. In pups, lymphocyte numbers in the spleens of Pg and Pn were significantly increased compared to Pc. This increase in cellularity was in part attributable to elevated numbers of both CD4+ T cells and B cells, most notable Follicular B cells.
Conclusion:
Our results indicate that perturbations to maternal gut microbiota dictate neonatal adaptive immunity.
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