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February 14, 2026Microorganisms0 citationsOpen Access

Early-Life β-Lactam Exposure and the Developing Microbiome: Clinical Relevance and Controversies

NKNilima Rajpal KundnaniASAbhinav SharmaMLMihaela Codrina Levai

Key Points

  • This review aims to critically evaluate the effects of early-life β-lactam antibiotic exposure on the microbiome and associated health outcomes.
  • Narrative review of experimental and epidemiological studies
  • Focus on β-lactam exposure during pregnancy, perinatal period, and early childhood
  • Assessment of changes in microbial composition, diversity, and metabolic functions
  • Alterations in microbiome composition observed include decreased Bifidobacterium and Lactobacillus levels
  • Increased relative abundance of Enterobacteriaceae and facultative anaerobes noted in early life
  • Microbial diversity and short-chain fatty acid-producing taxa were significantly reduced
  • Associations with health outcomes are heterogeneous and confounded by host-related factors

Abstract

Antibiotic-induced dysbiosis has been increasingly implicated in a range of pediatric outcomes, yet the concept remains variably defined and often inconsistently applied. The purpose of this review is to provide an overview and critical evaluation of the available data regarding the effects of early-life exposure to β-lactam antibiotics on the developing microbiome. We conducted a narrative review of experimental and epidemiological studies examining β-lactam exposure during pregnancy, the perinatal period, and early childhood was conducted. β-lactams induce reproducible alterations in microbial composition, diversity, and metabolic function, including decreases in Bifidobacterium and Lactobacillus and a relative increase in Enterobacteriaceae and other facultative anaerobes, especially in early life. Reduced microbial diversity and changed short-chain fatty acid-producing taxa often accompany these compositional changes. However, associations with immune, metabolic, and neurodevelopmental outcomes are heterogeneous and frequently confounded by indication host-related factors. Evidence for causality in humans remains limited despite strong mechanistic support from animal models. Current data support cautious interpretation, even though β-lactam-associated microbiome perturbations may contribute to disease susceptibility during vulnerable developmental windows. While mechanistic and longitudinal evidence continues to develop, antibiotic stewardship focused on appropriate indication and duration is still crucial.

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Cite This Study

Kundnani et al. (2026) studied this question.

synapsesocial.com/papers/699011712ccff479cfe581b4https://doi.org/10.3390/microorganisms14020440
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