Reversible aberrancies in gut microbiome of moderate and late preterm infants: results from a randomized, controlled trial.

Raakel Luoto, Anna Pärtty, Josef K Vogt, Samuli Rautava, Erika Isolauri

Journal: Gut microbes 2023;15(2):2283913

PMID: 38010080

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Preterm birth is defined as delivery prior to 37 weeks of gestation. The preterm gut microbiome profile, estimated soon after birth, differs from the full-term gut microbiome in terms of decreased diversity and a higher abundance of proinflammatory bacteria. The aim of this study was to investigate whether the administration of specific probiotics or prebiotics might modulate the gut microbiome composition in moderate and late pre-term infants and achieve colonization patterns resembling those in infants born full-term. This study was based on a randomised, double-blind, placebo-controlled clinical trial. During the first three days of life, the neonates were randomly assigned into one of the three study groups. The results of this study further confirm that the early gut microbiome composition in children born preterm is distinct from that in children born full-term. In fact, compared to healthy full-term infants, preterm infants´ gut colonization with Bifidobacterium was delayed, and as a substitute, their gut microbiome was enriched with Escherichia and Streptococcus. Authors concluded that the compositional development of the gut microbiome and specifically colonisation with Bifidobacterium in moderate and late preterm infants was delayed compared to that in full-term infants.

Abstract

The aim of this study was to obtain insight into the composition and function of the deviant gut microbiome throughout infancy in children born moderately and late preterm and their response to microbiome modulation. We characterized the longitudinal development of the gut microbiome from birth to the age of 12 months by metagenomic sequencing in 43 moderate and late preterm children participating in a randomized, controlled trial (ClinicalTrials.gov/no.NCT00167700) assessing the impact of a probiotic ( GG, ATCC 53,103, currently ) and a prebiotic (galacto-oligosaccharide and polydextrose mixture, 1:1) intervention as compared to a placebo administered from 3 to 60 days of life. In addition, 9 full-term, vaginally delivered, breast-fed infants, who remained healthy long-term were included as references. Significant differences in taxonomy, but not in functional potential, were found when comparing the gut microbiome composition of preterm and full-term infants during the first month of life. However, the gut microbiome of preterm infants resembled that of full-term infants by 6 months age. Probiotic and prebiotic treatments were found to mitigate the shift in the microbiome of preterm infants by accelerating -dominated gut microbiome in beta diversity analysis. This study provides intriguing information regarding the establishment of the gut microbiome in children born moderately and late preterm, representing the majority of children born preterm. Specific pro- and prebiotics may reverse the proinflammatory gut microbiome composition during the vulnerable period, when the microbiome is low in resilience and susceptible to environmental exposure and simultaneously promotes immunological and metabolic maturation.

Address: Department of Pediatrics and Adolescent medicine, Turku University Hospital, Turku, Finland.; Institute of Clinical Medicine, University of Turku, Turku, Finland.; Clinical Microbiomics, Copenhagen, Denmark.; New Children's Hospital, Helsinki University Hospital, Helsinki, Finland.

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