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Updated: Sep 17, 2025

Probiotic Studies in Neonatal Mice Using Gavage
Published on: January 27, 2019
Breastfeeding and early Bifidobacterium-driven microbial colonization shape the infant gut resistome
Anna Samarra1, Alejandro J Alcañiz1, Cecilia Martínez-Costa2,3
1Department of Biotechnology, Institute of Agrochemistry and Food Technology- National Research Council (IATA-CSIC), Paterna, Valencia, Spain.
Insights
Exclusive breastfeeding is crucial for infant gut health, reducing antimicrobial resistance genes (ARGs). It counteracts C-section impacts and promotes beneficial Bifidobacterium, lowering the overall resistome burden.
Area of Science:
- Microbiome research
- Infant health and development
- Antimicrobial resistance
Background:
- The early-life gut resistome assembly is critical for infant health.
- Perinatal factors like C-section, antibiotic exposure, and limited breastfeeding negatively impact microbial development and increase antimicrobial resistance genes (ARGs).
Purpose of the Study:
- To investigate the influence of perinatal factors on the acquisition and dynamics of ARGs in infants during their first year of life.
- To understand the role of Bifidobacterium and breastfeeding in modulating the infant gut resistome.
Main Methods:
- Analysis of 265 longitudinal infant gut metagenomes from 66 mother-infant pairs.
- Investigated correlations between perinatal factors, Bifidobacterium abundance, and ARG load.
Main Results:
- High Bifidobacterium abundance is linked to a lower ARG load.
- Exclusive breastfeeding in the first month accelerates ARG reduction and lowers resistome burden at six months.
- Exclusive breastfeeding mitigates C-section's negative impact on the infant gut resistome.
Conclusions:
- Breastfeeding is a key natural intervention for shaping the infant microbiome and resistome.
- Promoting breastfeeding can help suppress ARG-carrying bacteria and limit antimicrobial resistance spread in early life.
- Public health policies supporting breastfeeding are vital for controlling early-life antimicrobial resistance.
Abstract:
The assembly of the gut resistome in early life is key to infant health. Specific perinatal factors such as cesarean section (C-section), antibiotic exposure and lack of breastfeeding practices are detrimental to proper microbial development and increase the antimicrobial resistance genes (ARGs). Using 265 gut longitudinal metagenomes from 66 mother-infant pairs, we investigated how perinatal factors influence the acquisition and dynamics of ARGs during the first year of life. Our findings reveal that Bifidobacterium plays a crucial role in modulating the infant resistome, with its high relative abundance being associated with a lower ARG load. Exclusive breastfeeding during the first month of life accelerates the reduction of ARGs and ensures a lower resistome burden at six months. Moreover, early breastfeeding cessation correlates with a higher ARG load, underscoring its long-term influence on microbial resilience. Importantly, we identify exclusive breastfeeding as a key strategy to mitigate the impact of C-section delivery on the infant gut resistome, counteracting the early-life antibiotic exposure associated with this procedure and the resulting resistance acquisition. By promoting a microbiome enriched in Bifidobacterium, breastfeeding may help suppress ARG-carrying taxa, reducing the risk of resistance dissemination. Our findings underscore the importance of breastfeeding as a natural intervention to shape the infant microbiome and resistome. Supporting breastfeeding through public health policies could help limit the spread of antimicrobial resistance in early life.
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