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Published on: January 7, 2020
Gut microbiota development of preterm infants hospitalised in intensive care units
H Tauchi1, K Yahagi2, T Yamauchi1
1Department of Pediatrics, Ehime University Graduate School of Medicine, Toon, Ehime 791-0295, Japan.
Insights
The gut microbiota of preterm infants differs from healthy infants, with delayed beneficial bacteria colonization in the neonatal intensive care unit (NICU). However, the overall gut ecosystem equilibrium is maintained, promoting host health.
Area of Science:
- Microbiology
- Infant Health
- Gut Microbiome Research
Background:
- Gut microbiome development is crucial for infant health and physiology.
- Preterm infant gut microbiota composition differs from healthy term infants, but developmental patterns are unclear.
Purpose of the Study:
- To investigate gut microbiota development dynamics in hospitalized preterm infants.
- To understand inter-individual differences and ecosystem equilibria in the preterm infant gut.
Main Methods:
- Analysis of 16S rRNA gene amplicons from 268 stool samples.
- Metabolic profiling of samples from 17 NICU preterm infants and 42 term infants.
Main Results:
- Preterm infant gut microbiota transitions from Gram-positive cocci to Bifidobacteriaceae dominance.
- NICU preterm infants showed higher Staphylococcaceae and delayed Bifidobacteriaceae colonization.
- No distinct NICU infant enterotype clusters were observed; environmental constraints affected transition pace, not equilibrium.
Conclusions:
- The preterm infant gut microbiota develops towards a Bifidobacteriaceae-dominated state, associated with beneficial metabolites like acetate and lower pH.
- Understanding these developmental patterns is key to potentially mitigating diseases in premature infants by targeting the intestinal microbiota.
Abstract:
Gut microbiome development affects infant health and postnatal physiology. The gut microbe assemblages of preterm infants have been reported to be different from that of healthy term infants. However, the patterns of ecosystem development and inter-individual differences remain poorly understood. We investigated hospitalised preterm infant gut microbiota development using 16S rRNA gene amplicons and the metabolic profiles of 268 stool samples obtained from 17 intensive care and 42 term infants to elucidate the dynamics and equilibria of the developing microbiota. Infant gut microbiota were predominated by Gram-positive cocci, Enterobacteriaceae or Bifidobacteriaceae, which showed sequential transitions to Bifidobacteriaceae-dominated microbiota. In neonatal intensive care unit preterm infants (NICU preterm infants), Staphylococcaceae abundance was higher immediately after birth than in healthy term infants, and Bifidobacteriaceae colonisation tended to be delayed. No specific NICU-cared infant enterotype-like cluster was observed, suggesting that the constrained environment only affected the pace of transition, but not infant gut microbiota equilibrium. Moreover, infants with Bifidobacteriaceae-dominated microbiota showed higher acetate concentrations and lower pH, which have been associated with host health. Our data provides an in-depth understanding of gut microbiota development in NICU preterm infants and complements earlier studies. Understanding the patterns and inter-individual differences of the preterm infant gut ecosystem is the first step towards controlling the risk of diseases in premature infants by targeting intestinal microbiota.
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