The Impact of Antimicrobial Therapy on the Development of Microbiota in Infants

Tatiana Priputnevich1,2,3, Pavel Denisov1, Ksenia Zhigalova1

  • 1National Medical Research Center of Obstetrics, Gynecology and Perinatology Named After Academician V.I. Kulakov, Ministry of Health of the Russian Federation, 117997 Moscow, Russia.

PubMed

Insights

Antibiotic use in infants significantly reduces gut microbiota diversity and beneficial bacteria, potentially increasing risks for allergies and metabolic issues. Strategies like probiotics are crucial for restoring gut health.

Area of Science:

  • Pediatric Health
  • Microbiome Research
  • Immunology

Background:

  • Early-life gut microbiota is critical for immune and metabolic development.
  • Factors like antibiotic exposure profoundly influence microbiome composition and health outcomes.
  • Understanding these early-life microbial dynamics is essential for long-term child well-being.

Purpose of the Study:

  • To compare the gut microbiota composition in infants who received beta-lactam antibiotics versus those who did not.
  • To assess the impact of antibiotic therapy on microbial diversity and specific bacterial groups in early childhood.

Main Methods:

  • Comparative analysis of fecal microbiota composition in two infant age groups (6-8 and 9-12 months).
  • Participants were full-term infants born via spontaneous labor, with one group receiving beta-lactam antibiotics.
  • Quantitative real-time PCR (qRT-PCR) was employed to analyze colonic microbiota.

Main Results:

  • Antibiotic treatment led to a significant reduction in alpha diversity (Shannon and Simpson indices).
  • Key beneficial bacteria, including *Faecalibacterium prausnitzii*, *Clostridium leptum*, *Bacteroides* spp., and *Bifidobacteria* species, were significantly decreased.
  • Observed alterations indicate a substantial shift in the gut microbial community structure post-antibiotic exposure.

Conclusions:

  • Antibiotic-induced microbiota changes in infants can impair immune and metabolic development.
  • Reduced colonization by beneficial bacteria increases the risk of allergic, atopic, and metabolic conditions.
  • Interventions such as probiotics, prebiotics, and dietary changes are vital for microbiota restoration after antibiotic use.

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