Early Bacterial Colonization and Antibiotic Resistance Gene Acquisition in Newborns

Tilman E Klassert1, Cristina Zubiria-Barrera1, Stefanie Kankel1,2

  • 1Host Septomics, ZIK Septomics Research Center, Jena University Hospital, Jena, Germany.

Insights

Newborns acquire significant antibiotic resistance genes (ARGs) within 72 hours of birth, particularly macrolide resistance. This early acquisition highlights risks during postpartum hospitalization.

Area of Science:

  • Microbiology
  • Neonatal Health
  • Antibiotic Resistance

Background:

  • Infant microbiome development is crucial, but early colonization and antibiotic resistance gene (ARG) acquisition in the first 72 hours postpartum are poorly understood.
  • Existing studies often overlook the critical early window of microbiome maturation and ARG dissemination during initial hospital stays.

Purpose of the Study:

  • To investigate the gut, oral, and skin microbiota composition in neonates within 72 hours of birth.
  • To identify the dissemination of antibiotic resistance genes (ARGs) in neonates and their mothers during the early postpartum period.
  • To determine the prevalence of specific ARGs, including macrolide resistance and mecA.

Main Methods:

  • 16S rDNA sequencing was used to analyze the microbiota of neonates from gut, oral, and skin sites within the first 72 hours.
  • TaqMan qPCR assays were employed to screen neonates and mothers for the presence of 20 different ARGs.

Main Results:

  • Significant shifts in neonatal microbiota were observed within the first 72 hours, demonstrating site-specific colonization patterns.
  • A substantial acquisition of ARGs was detected during postpartum hospitalization, with high incidences of macrolide resistance and mecA.
  • ARGs were found across multiple body sites in the neonates studied.

Conclusions:

  • Neonatal hospitalization is associated with significant dissemination of antibiotic resistance determinants.
  • Macrolide resistance and mecA are prevalent early ARG acquisitions in neonates.
  • Mothers and the hospital environment require further investigation as potential sources of ARGs for neonates.

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