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Updated: May 18, 2026

Probiotic Studies in Neonatal Mice Using Gavage
Published on: January 27, 2019
New insights in gut microbiota establishment in healthy breast fed neonates
Ted Jost1, Christophe Lacroix, Christian P Braegger
1Laboratory of Food Biotechnology, Institute of Food, Nutrition and Health, ETH Zurich, Schmelzbergstrasse, Zurich, Switzerland.
Insights
The infant gut microbiome establishes early, with strict anaerobes like Bacteroides appearing within the first week. This suggests a faster transition to adult-like gut bacteria than previously thought in breast-fed infants.
Area of Science:
- Microbiology
- Neonatal Development
- Gut Microbiome Research
Background:
- Pioneer gut microbiota establishment is critical for neonatal development and lifelong health.
- Current research often relies on limited culture or fecal molecular analyses.
Purpose of the Study:
- To comprehensively analyze the early gut bacterial composition in healthy, breast-fed neonates.
- To compare culture-based methods with advanced molecular techniques for a detailed understanding.
Main Methods:
- Fecal samples from seven neonates were analyzed at multiple postnatal time points (days 4-6, 9-14, 25-30).
- Methods included bacterial culture, 16S rRNA gene sequencing, quantitative PCR, and pyrosequencing.
- Bacterial composition, focusing on anaerobes and facultative anaerobes, was assessed.
Main Results:
- Anaerobes, particularly Bifidobacterium and Bacteroides, outnumbered facultative anaerobes early in life.
- Adult-type Bacteroides species were detected at significant levels in four neonates from early on.
- Key adult butyrate-producing populations (Roseburia, Faecalibacterium) were undetectable during the neonatal period.
Conclusions:
- Strict anaerobes, including Bacteroidetes, can establish early in the neonatal gut, reaching adult-like densities within the first week.
- The shift from facultative to strict anaerobes may occur earlier in breast-fed neonates than previously assumed.
- Factors beyond anaerobic conditions likely influence the establishment of major butyrate-producing bacteria, warranting further study on breast milk's role.
Abstract:
The establishment of a pioneer gut microbiota is increasingly recognized as a crucial stage in neonatal development influencing health throughout life. While current knowledge is mainly based on either culture or molecular analysis of feces, we opted for a comprehensive approach complementing culture with state-of-the-art molecular methods. The bacterial composition in feces from seven healthy vaginally-delivered, breast-fed neonates was analyzed at days 4-6, 9-14 and 25-30 postnatal, using culture, 16S rRNA gene sequencing of isolates, quantitative PCR and pyrosequencing. Anaerobes outnumbered facultative anaerobes in all seven neonates within the first days of life, owing to high levels of Bifidobacterium and unexpectedly also Bacteroides, which were inversely correlated. Four neonates harbored maternal Bacteroides levels, comprising typical adult species, throughout the neonatal period, while in three only subdominant levels were detected. In contrast, the major adult-type butyrate-producing anaerobic populations, Roseburia and Faecalibacterium, remained undetectable during the neonatal period. The presence of Bacteroidetes as pioneer bacteria in the majority of neonates studied demonstrates that adult-type strict anaerobes may reach adult-like population densities within the first week of life. Consequently the switch from facultative to strict anaerobes may occur earlier than previously assumed in breast-fed neonates, and the establishment of the major butyrate-producing populations may be limited by other factors than the absence of anaerobic conditions. The impact of breast milk components on the timing of establishment of anaerobic pioneer bacteria, as well as opportunistic pathogens should be further studied in regard to priming of the gut-associated immune system and consequences on later health.
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