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Intestinal microbiome in very-preterm infants at one month of age and association with neurodevelopmental outcome
Constance Patin1, Céline Monot1, Laetitia Marchand-Martin2
1AgroParisTech, Micalis Institute, INRAE, PhylHom Lab, Université Paris-Saclay, Domaine de Vilvert, Jouy-en-Josas, 78350, France.
Insights
The gut microbiome in preterm infants at one month, dominated by Escherichia or Staphylococcus, impacts neurodevelopment. Escherichia is linked to better gut maturity and improved neurological outcomes at two years.
Area of Science:
- Microbiome research
- Developmental pediatrics
- Host-microbiome interactions
Background:
- Preterm birth is a major global cause of mortality in young children.
- Long-term outcomes for preterm infants, especially neurological development, require further investigation.
- The gut microbiome in very preterm infants is dynamic and influenced by the neonatal intensive care unit.
Purpose of the Study:
- To investigate the relationship between the gut microbiome and host factors in very preterm infants at one month.
- To determine the impact of this early gut microbiome composition on neurodevelopmental outcomes at two years of age.
Main Methods:
- Multi-omics analysis of fecal samples from 73 very preterm infants.
- Characterization included 16S rRNA gene sequencing (microbiome), LC-MS (metabolome), and mRNA sequencing (host transcriptome).
- Infants were grouped based on neurodevelopmental assessments at two years using the Ages & Stages questionnaire.
Main Results:
- The gut microbiome composition at one month was primarily driven by either Escherichia or Staphylococcus.
- These bacterial groups showed differential associations with host immune markers (CAMP) and metabolomic pathways, including energy metabolism (NAD+).
- Microbiome composition was also linked to neurodevelopmental outcomes at two years.
Conclusions:
- Early gut microbiome profiles may serve as noninvasive biomarkers for gut immaturity and metabolic dysfunction in preterm infants.
- Proportions of Escherichia and Staphylococcus are key indicators of physiological maturity and immaturity.
- Escherichia may promote intestinal maturation through metabolite production and is associated with enhanced neurodevelopment.
Background:
Preterm birth is the leading cause of death in children under five years of age worldwide. The association between preterm birth and long-term outcomes is vaguely known. In very preterm infants, the gut microbiome is highly variable and impacted by the neonatal intensive care unit environment. Our objective was to better understand the crosstalk between the gut microbiome and the host at one month of age in very preterm infants and its impact on neurological outcomes at two years of age. We performed a multi-omics analysis of fecal samples collected in 2011 from 73 very preterm French infants at one month of age, grouped according to their neurodevelopment assessed at two years of age using the Ages & Stages questionnaire. Multi-omics profiling and integrative analyses were performed between 2022 and 2023, including fecal microbiome, metabolome, and host transcriptome characterization using 16 S rRNA gene sequencing, LC-MS, and mRNA sequencing, respectively.
Results:
The gut microbiome of very preterm infants at one month is mostly driven by either Escherichia or Staphylococcus, which are differentially associated with host immune markers (CAMP), metabolomic pathways, notably the energy pathway due to the presence of various nicotinamide adenine dinucleotides (NAD+) and two-year neurodevelopmental outcomes.
Conclusion:
The gut microbiome at one month of age could be a noninvasive biomarker of gut immaturity and metabolic defects. Escherichia and Staphylococcus proportions were found to be the best indicators of physiological maturity and immaturity, respectively. Escherichia may help the process of intestinal maturation in preterm infants through specific metabolites production and is associated with a better neurodevelopment.
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