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Published on: August 7, 2017
Impact of Maternal Microbiota Composition on Neonatal Immunity and Early Childhood Allergies: A Systematic Review
Ayah Nabil Al Jehani1, Manal Shuaib1, Arwa Alsharif1
1College of Medicine and Surgery, Batterjee Medical College, Jeddah 21442, Saudi Arabia.
Insights
Maternal microbiota composition significantly impacts infant immunity and allergy risk. Factors like C-section birth and antibiotics increase risk, while breastfeeding and probiotics offer protection, influencing early-life health outcomes.
Area of Science:
- Microbiology
- Immunology
- Neonatal Health
Background:
- The maternal microbiota plays a crucial role in regulating neonatal immune development and early-life health.
- Understanding this relationship is vital for preventing allergies and promoting infant well-being.
Purpose of the Study:
- To systematically review how maternal microbiota composition influences newborn immunity and allergy risk.
- To identify specific microbes associated with altered allergy risk.
- To evaluate interventions for improving neonatal immune health via maternal microbiota modulation.
Main Methods:
- Systematic literature search across PubMed, MEDLINE, and Web of Science following PRISMA guidelines.
- Inclusion of randomized controlled trials (RCTs), cohort, and observational studies.
- Quality assessment using GRADE, RoB 2, Newcastle-Ottawa Scale, and MINORS.
Main Results:
- Cesarean delivery and maternal antibiotic use during pregnancy are linked to increased allergy risk.
- Breastfeeding, probiotic supplementation, and dietary changes in mothers show protective effects against allergies.
- Maternal stress negatively impacts microbiota composition and neonatal immune regulation; geographic variations exist.
Conclusions:
- Maternal microbiota composition is a significant determinant of neonatal immunity and early-life allergy development.
- Cesarean birth, antibiotic exposure, and maternal stress are adverse factors associated with altered neonatal immunity.
- Further research is needed to validate microbiota-targeted strategies and establish evidence-based guidelines for maternal and neonatal immune health.
Abstract:
Background: The maternal microbiota serve as a key regulator of neonatal immune development and early-life health outcomes. This systematic review aims to find out how the makeup of the maternal microbiota affects newborn immunity and the risk of allergies, identify which microbes are linked to a higher or lower chance of allergies, and assess treatments that could improve newborn immune health. Methods: We conducted a systematic search in PubMed, MEDLINE, and Web of Science, adhering to the PRISMA guidelines. We included randomized controlled trials (RCTs), cohort studies, and observational studies that looked at how the makeup of the maternal microbiota affects newborn immune responses or allergic outcomes in early life. We conducted a systematic search, and the quality of the studies was evaluated using the GRADE system and tools to check for bias (RoB 2, Newcastle-Ottawa Scale, MINORS). Results: We included a total of 74 studies. The main findings showed that having a cesarean delivery and using certain antibiotics during pregnancy increased the risk of allergies, while breastfeeding, taking probiotics, and changing the mother's diet helped to protect against allergies. Maternal stress had a negative association with the microbiota composition (OR = 1.9-2.4) and neonatal immune regulation. Moreover, the study noted significant geographic variation in the microbiota's influence, underscoring the importance of contextualized interventions. Conclusions: The composition of the maternal microbiota has a major impact on neonatal immunity and the risk of early-life allergy. Adverse factors include cesarean birth, antibiotic exposure, and maternal stress, all of which have been associated with alterations in neonatal immunity. More studies are required to validate promising microbiota-targeted strategies and develop evidence-based guidelines to improve maternal and neonatal immune health.
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