Increased antibiotic resistance in preterm neonates under early antibiotic use

Amanda Ojeda1, Oluwamayowa Akinsuyi1, Kelley Lobean McKinley1

  • 1Department of Microbiology and Cell Science, Institute of Food and Agricultural Sciences, University of Florida, Gainesville, Florida, USA.

Msphere
|October 7, 2024
PubMed

Insights

Antibiotic resistance genes are common in preterm infants, even without direct antibiotic exposure. Maternal antibiotic use and prolonged membrane ruptures significantly impact infant gut microbiome and resistance profiles.

Area of Science:

  • Neonatal microbiome research
  • Antimicrobial resistance studies
  • Genomic epidemiology

Background:

  • Standard antibiotic use in newborns for early-onset sepsis can negatively impact the neonatal gut microbiome.
  • Antimicrobial resistance in preterm infants is a growing concern, with limited research on its causes and effects in neonatal intensive care units.
  • Understanding early antibiotic intervention's impact on antibiotic resistance in preterm infants is critical.

Purpose of the Study:

  • To evaluate antibiotic resistance genes (ARGs) in meconium and stool samples of preterm infants using metagenomic sequencing.
  • To identify the prevalence and types of ARGs in preterm infants, including those with and without direct antibiotic exposure.
  • To explore the relationship between antibiotic exposure, maternal factors, and the neonatal gut microbiome and resistome.

Main Methods:

  • Retrospective study using metagenomic sequencing on meconium and stool samples from 30 preterm infants.
  • Taxonomic profiling and identification of antibiotic resistance genes (ARGs) were performed.
  • Analysis included comparison between infants with and without direct/intrapartum antibiotic exposure.

Main Results:

  • All preterm infants studied possessed ARGs, with 175 unique ARGs identified, primarily for beta-lactam, tetracycline, and aminoglycoside resistance.
  • 23% of identified ARGs were present in infants without direct or intrapartum antibiotic exposure.
  • Antibiotic-naive infants exhibited higher microbial and resistome diversity compared to treated infants.
  • Post-natal antibiotic exposure was linked to increased beta-lactam/tetracycline resistance and altered bacterial resistance mechanisms.
  • ARG prevalence increased with infant age, irrespective of direct antibiotic exposure.

Conclusions:

  • High prevalence of ARGs in preterm infants is evident, even without direct antibiotic exposure, and is influenced by factors like maternal antibiotic use and prolonged membrane ruptures.
  • Early life antibiotic exposure alters the preterm infant microbiome and resistome, potentially leading to long-term health consequences.
  • Protecting neonatal health requires cautious antibiotic practices and enhanced antenatal care to combat rising antimicrobial resistance.

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