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Updated: Nov 9, 2025

Applying Advanced In Vitro Culturing Technology to Study the Human Gut Microbiota
Published on: February 15, 2019
Early Life Microbiota Colonization at Six Months of Age: A Transitional Time Point
Benedetta Raspini1, Mirco Vacca2, Debora Porri1
1Department of Public Health, Experimental and Forensic Medicine, Dietetics and Clinical Nutrition Laboratory, University of Pavia, Pavia, Italy.
Insights
Infant gut microbiota development is influenced by multiple factors, not just one. Early life microbial composition results from a complex interplay between maternal and infant characteristics.
Area of Science:
- Microbiology
- Pediatrics
- Developmental Biology
Background:
- Early life gut microbiota plays a crucial role in infant metabolism, immunity, and neurodevelopment.
- Disruptions in infant gut microbiota are linked to increased risks of early and later-life diseases.
- Understanding perinatal influences on infant gut microbiota is vital for health outcomes.
Purpose of the Study:
- To explore prenatal and postnatal factors affecting infant gut microbiota composition at six months of age.
- To identify key determinants of microbial colonization in early infancy.
Main Methods:
- Analysis of 61 meconium and 53 six-month infant fecal samples from the prospective "A.MA.MI" study.
- Evaluation of alpha and beta diversities to characterize microbiota composition.
- Multivariate analyses to assess the impact of maternal weight, delivery type, feeding, weaning, and siblings on infant microbiota.
Main Results:
- Maternal BMI and gestational weight gain did not significantly alter infant microbiota at six months.
- Exclusive breastfeeding was associated with lower alpha diversity; non-exclusive feeding showed overgrowth of Ruminococcaceae and Flavonifractor.
- Firstborn infants exhibited higher abundance of clostridial patterns compared to those with siblings.
Conclusions:
- No single factor distinctly impacts infant gut microbiota development at six months.
- Infant gut microbiota composition arises from a complex multifactorial interaction between maternal and neonatal factors.
- A unique microbial niche is established through these combined influences.
Background:
Early life gut microbiota is involved in several biological processes, particularly metabolism, immunity, and cognitive neurodevelopment. Perturbation in the infant's gut microbiota increases the risk for diseases in early and later life, highlighting the importance of understanding the connections between perinatal factors with early life microbial composition. The present research paper is aimed at exploring the prenatal and postnatal factors influencing the infant gut microbiota composition at six months of age.
Methods:
Gut microbiota of infants enrolled in the longitudinal, prospective, observational study "A.MA.MI" (Alimentazione MAmma e bambino nei primi MIlle giorni) was analyzed. We collected and analyzed 61 fecal samples at baseline (meconium, T0); at six months of age (T2), we collected and analyzed 53 fecal samples. Samples were grouped based on maternal and gestational weight factors, type of delivery, type of feeding, time of weaning, and presence/absence of older siblings. Alpha and beta diversities were evaluated to describe microbiota composition. Multivariate analyses were performed to understand the impact of the aforementioned factors on the infant's microbiota composition at six months of age.
Results:
Different clustering hypotheses have been tested to evaluate the impact of known metadata factors on the infant microbiota. Neither maternal body mass index nor gestational weight gain was able to determine significant differences in infant microbiota composition six months of age. Concerning the type of feeding, we observed a low alpha diversity in exclusive breastfed infants; conversely, non-exclusively breastfed infants reported an overgrowth of Ruminococcaceae and Flavonifractor. Furthermore, we did not find any statistically significant difference resulting from an early introduction of solid foods (before 4 months of age). Lastly, our sample showed a higher abundance of clostridial patterns in firstborn babies when compared to infants with older siblings in the family.
Conclusion:
Our findings showed that, at this stage of life, there is not a single factor able to affect in a distinct way the infants' gut microbiota development. Rather, there seems to be a complex multifactorial interaction between maternal and neonatal factors determining a unique microbial niche in the gastrointestinal tract.
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