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Updated: May 2, 2026

Applying Advanced In Vitro Culturing Technology to Study the Human Gut Microbiota
Published on: February 15, 2019
Early life establishment of site-specific microbial communities in the gut
Joann Romano-Keeler1, Daniel J Moore2, Chunlin Wang3
1Department of Pediatrics; Vanderbilt University; Nashville, TN USA.
Insights
Fecal sampling may inaccurately represent the infant gut microbiome. Newborn intestinal tissue harbors distinct microbial communities, with higher bacterial diversity than fecal samples, questioning reliance on stool analysis.
Area of Science:
- Microbiology
- Neonatal Research
- Gastroenterology
Background:
- Fecal sampling is common for studying neonatal gut microbes.
- This method assumes fecal microbiota represent the entire gastrointestinal tract.
- This assumption may lead to inaccurate assessments in newborns.
Purpose of the Study:
- To assess microbial stratification in the newborn gut.
- To evaluate the limitations of fecal sampling versus tissue sampling.
- To compare intestinal mucosa and fecal microbial communities in neonates.
Main Methods:
- Simultaneous comparison of intestinal mucosa and fecal microbial communities.
- Analysis of samples from 15 neonates undergoing intestinal resections.
- Utilized Sørensen similarity indices and principal component analyses.
Main Results:
- Microbial communities in fecal and mucosal samples were distinct.
- Sample source critically influenced microbial composition, revealing two niches.
- Neonatal intestinal tissue showed higher bacterial diversity than fecal samples.
Conclusions:
- Fecal microbiota may not accurately reflect the developing intestinal microbiota in newborns.
- Discernible microbial biogeography exists in the neonatal gastrointestinal tract.
- High tissue-level bacterial diversity in neonates may aid mucosal immunity development.
Abstract:
Fecal sampling is widely utilized to define small intestinal tissue-level microbial communities in healthy and diseased newborns. However, this approach may lead to inaccurate assessments of disease or therapeutics in newborns because of the assumption that the taxa in the fecal microbiota are representative of the taxa present throughout the gastrointestinal tract. To assess the stratification of microbes in the newborn gut and to evaluate the probable shortcoming of fecal sampling in place of tissue sampling, we simultaneously compared intestinal mucosa and fecal microbial communities in 15 neonates undergoing intestinal resections. We report three key results. First, when the site of fecal and mucosal samples are further apart, their microbial communities are more distinct, as indicated by low mean Sørensen similarity indices for each patient's fecal and tissue microbiota. Second, two distinct niches (intestinal mucosa and fecal microbiota) are evident by principal component analyses, demonstrating the critical role of sample source in defining microbial composition. Finally, in contrast to adult studies, intestinal bacterial diversity was higher in tissue than in fecal samples. This study represents an unprecedented map of the infant microbiota from intestinal mucosa and establishes discernable biogeography throughout the neonatal gastrointestinal tract. Our results question the reliance on fecal microbiota as a proxy for the developing intestinal microbiota. Additionally, the robust intestinal tissue-level bacterial diversity we detected at these early ages may contribute to the maturation of mucosal immunity.
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