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Updated: Jun 17, 2025

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Published on: January 27, 2019
The impact of breastfeeding on the preterm infant's microbiome and metabolome: a pilot study
Keriann Schulkers Escalante1, Shiyu S Bai-Tong1, Sarah M Allard2
1Department of Pediatrics, University of California San Diego, Rady Children's Hospital, La Jolla, CA, USA.
Insights
Transitioning preterm infants from tube to oral feeding changes their saliva microbiome and metabolome, and alters mother's milk composition. These shifts, particularly in saliva, may offer future disease risk biomarkers.
Area of Science:
- Microbiome research
- Metabolomics
- Neonatal nutrition
Background:
- Human milk is vital for preterm infants.
- The impact of feeding transition on infant microbiome and metabolome is not fully understood.
Purpose of the Study:
- To investigate how transitioning preterm infants from tube to oral/breastfeeding affects their oral and gut microbiome and metabolome.
- To analyze changes in mother's milk composition during this transition.
Main Methods:
- Prospective observational study of preterm infants and their mothers.
- Analysis of stool, saliva, and milk samples at four longitudinal time points.
- Microbiome and metabolome analysis using advanced techniques.
Main Results:
- Saliva microbiome shifted, with increased Streptococcus and decreased Staphylococcus post-oral feeding.
- Milk sample metabolites were influenced by feeding route and type, involving Vitamin E, B12, and Tryptophan metabolism.
- No significant changes were observed in the infant's stool microbiome or metabolome.
Conclusions:
- Feeding transition significantly alters preterm infants' saliva microbiome and metabolome, and mother's milk composition.
- Changes in infant saliva metabolites show potential as biomarkers for disease risk.
- The study highlights the dynamic interplay between feeding methods, milk, and infant's developing microbiome and metabolome.
Background:
Human milk is unquestionably beneficial for preterm infants. We investigated how the transition from tube to oral/breastfeeding impacts the preterm infants' oral and gut microbiome and metabolome.
Methods:
We analyzed stool, saliva, and milk samples collected from a cohort of preterm infants enrolled in the MAP Study, a prospective observational trial. The microbiome and metabolome of the samples were analyzed from 4 longitudinal sample time points, 2 during tube feeds only and 2 after the initiation of oral/breastfeeding.
Results:
We enrolled 11 mother-infant dyads (gestational age = 27.9 (23.4-32.2)) and analyzed a total of 39 stool, 44 saliva, and 43 milk samples over 4 timepoints. In saliva samples, there was a shift towards increased Streptococcus and decreased Staphylococcus after oral feeding/breastfeeding initiation (p < 0.05). Milk sample metabolites were strongly influenced by the route of feeding and milk type (p < 0.05) and represented the pathways of Vitamin E metabolism, Vitamin B12 metabolism, and Tryptophan metabolism.
Conclusion:
Our analysis demonstrated that the milk and preterm infant's saliva microbiome and metabolome changed over the course of the first four to 5 months of life, coinciding with the initiation of oral/breastfeeds.
Impact:
The microbiome and metabolome is altered in the infant's saliva but not their stool, and in mother's milk when feeds are transitioned from tube to oral/breastfeeding. We assessed the relationship between the gut and oral microbiome/metabolome with the milk microbiome/metabolome over a longitudinal period of time in preterm babies. Metabolites that changed in the infants saliva after the initiation of oral feeds have the potential to be used as biomarkers for disease risk.
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