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Impact of Prematurity and Perinatal Antibiotics on the Developing Intestinal Microbiota: A Functional Inference Study
Silvia Arboleya1, Borja Sánchez2, Gonzalo Solís3
1Department of Microbiology and Biochemistry of Dairy Products, Instituto de Productos Lácteos de Asturias (IPLA-CSIC), 33300 Villaviciosa, Asturias, Spain. silvia.arboleya@teagasc.ie.
Insights
Neonatal gut microbiota establishment is crucial for development. Prematurity and antibiotics disrupt this microbial community, potentially impacting infant health.
Area of Science:
- Microbiome research
- Neonatal development
- Infant health
Background:
- Neonatal gut microbial colonization is vital for maturation and development.
- Early microbiota establishment influences long-term health outcomes.
- Factors affecting this process are critical determinants of infant well-being.
Purpose of the Study:
- To investigate neonatal gut microbiota establishment in preterm vs. full-term infants.
- To assess the impact of perinatal antibiotics on preterm infant microbiota.
- To analyze changes in microbial composition, function, and metabolites.
Main Methods:
- 16S rRNA gene sequencing for microbiota assessment at the phylum level.
- Functional inference analyses to predict metabolic pathways.
- Gas-chromatography/Mass spectrometry to measure short-chain fatty acids (SCFA).
Main Results:
- Prematurity alters gut microbiota composition, increasing Proteobacteria and decreasing other microbes.
- Perinatal antibiotics further impact preterm infant microbiota and SCFA levels.
- Functional inference identified metabolic pathways affected by prematurity and antibiotics.
Conclusions:
- Preterm infants exhibit delayed or deficient gut microbiota function establishment.
- Perinatal antibiotic use negatively affects early-life microbiota in preterm newborns.
- These disruptions may have significant implications for preterm infant health.
Background:
The microbial colonization of the neonatal gut provides a critical stimulus for normal maturation and development. This process of early microbiota establishment, known to be affected by several factors, constitutes an important determinant for later health.
Methods:
We studied the establishment of the microbiota in preterm and full-term infants and the impact of perinatal antibiotics upon this process in premature babies. To this end, 16S rRNA gene sequence-based microbiota assessment was performed at phylum level and functional inference analyses were conducted. Moreover, the levels of the main intestinal microbial metabolites, the short-chain fatty acids (SCFA) acetate, propionate and butyrate, were measured by Gas-Chromatography Flame ionization/Mass spectrometry detection.
Results:
Prematurity affects microbiota composition at phylum level, leading to increases of Proteobacteria and reduction of other intestinal microorganisms. Perinatal antibiotic use further affected the microbiota of the preterm infant. These changes involved a concomitant alteration in the levels of intestinal SCFA. Moreover, functional inference analyses allowed for identifying metabolic pathways potentially affected by prematurity and perinatal antibiotics use.
Conclusion:
A deficiency or delay in the establishment of normal microbiota function seems to be present in preterm infants. Perinatal antibiotic use, such as intrapartum prophylaxis, affected the early life microbiota establishment in preterm newborns, which may have consequences for later health.
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