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Updated: Aug 6, 2025

Probiotic Studies in Neonatal Mice Using Gavage
Published on: January 27, 2019
A systematic review of associations between gut microbiota composition and growth failure in preterm neonates
Larissa L Neves1, Amy B Hair2, Geoffrey A Preidis1
1Division of Gastroenterology, Hepatology, & Nutrition, Department of Pediatrics, Baylor College of Medicine and Texas Children's Hospital, Houston, TX, USA.
Insights
Neonatal gut microbiome research shows inconsistent findings regarding infant growth. Differences in defining growth and analyzing microbiota data hinder the development of biomarkers and therapies for preterm infants.
Area of Science:
- Neonatal microbiome research
- Pediatric nutrition
- Gastroenterology
Background:
- Growth failure affects up to half of extremely preterm neonates despite advanced nutritional support.
- Preclinical studies suggest the gut microbiome influences neonatal growth, but clinical applications are lacking.
- Identifying reliable gut microbial biomarkers for neonatal growth is crucial for targeted interventions.
Conclusions:
- The lack of standardized definitions for neonatal growth complicates the identification of consistent microbiota-growth associations.
- Current inconsistencies limit the translation of microbiome research into clinical biomarkers or therapeutic strategies for preterm infant growth failure.
- Further research with standardized methodologies is needed to elucidate the role of the gut microbiome in neonatal growth.
Abstract:
Growth failure is among the most prevalent and devastating consequences of prematurity. Up to half of all extremely preterm neonates struggle to grow despite modern nutrition practices. Although elegant preclinical models suggest causal roles for the gut microbiome, these insights have not yet translated into biomarkers that identify at-risk neonates or therapies that prevent or treat growth failure. This systematic review aims to identify features of the neonatal gut microbiota that are positively or negatively associated with early postnatal growth. We identified 860 articles, of which 14 were eligible for inclusion. No two studies used the same definitions of growth, ages at stool collection, and statistical methods linking microbiota to metadata. In all, 58 different taxa were associated with growth, with little consensus among studies. Two or more studies reported positive associations with Enterobacteriaceae, Bacteroides, Bifidobacterium, Enterococcus, and Veillonella, and negative associations with Citrobacter, Klebsiella, and Staphylococcus. Streptococcus was positively associated with growth in five studies and negatively associated with growth in three studies. To gain insight into how the various definitions of growth could impact results, we performed an exploratory secondary analysis of 245 longitudinally sampled preterm infant stools, linking microbiota composition to multiple clinically relevant definitions of neonatal growth. Within this cohort, every definition of growth was associated with a different combination of microbiota features. Together, these results suggest that the lack of consensus in defining neonatal growth may limit our capacity to detect consistent, meaningful clinical associations that could be leveraged into improved care for preterm neonates.

