Intrauterine Shaping of Fetal Microbiota

Norbert Dera1,2, Natalia Żeber-Lubecka3,4, Michał Ciebiera2,5

  • 1Department of Obstetrics, Perinatology and Neonatology, Center of Postgraduate Medical Education, 01-809 Warsaw, Poland.

Journal of Clinical Medicine
|September 14, 2024
PubMed

Insights

This review explores how the fetal microbiome develops in utero, influencing infant gut bacteria and health outcomes. It highlights that intrauterine colonization occurs via vaginal and intestinal routes, varying with gestational age.

Area of Science:

  • Microbiology
  • Neonatal Health
  • Gastroenterology

Background:

  • The physiological immaturity of the digestive system in preterm infants and its interaction with the microbiome remain unclear.
  • Bacterial DNA in the placenta and amniotic fluid suggests in utero colonization.
  • Intestinal bacteria are implicated in necrotizing enterocolitis and neonatal sepsis.

Purpose of the Study:

  • To review existing data on the intrauterine development of the fetal microbiota.
  • To investigate the origins of microorganisms that shape the newborn gut microbiome.
  • To describe bacterial types in intrauterine and neonatal intestinal microbiota.

Main Methods:

  • A literature review was conducted on PubMed on March 13, 2024.
  • Keywords included "placental microbiome", "intestinal bacteria in newborns and premature infants", and "intrauterine microbiota".
  • Over 100 articles were selected and analyzed for detailed elaboration.

Main Results:

  • Evidence suggests intrauterine fetal colonization occurs, influenced by gestational duration.
  • Colonization pathways include vaginal and hematogenous (intestinal) routes.
  • Bacterial phyla distribution (Firmicutes, Actinobacteria, Proteobacteria) differs based on gestational age.

Conclusions:

  • Intrauterine colonization is possible and varies with pregnancy duration.
  • Preterm infants show a dominance of vaginal-origin bacteria, while term infants show intestinal-origin bacteria.
  • These findings may explain the role of bacterial factors in premature birth and membrane rupture.