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Published on: January 27, 2019
Changes in Healthy Infant Gut Microbiota over the Past Decades
Teo Oksanen1, Martina Baizán-Urgell2, Maria Carmen Collado2
1Department of Pediatrics and Adolescent Medicine, Faculty of Medicine, University of Turku, Turku, Finland, teo.oksanen@gmail.com.
Insights
Infant gut microbiota diversity has declined over decades, with fewer Bifidobacterium bacteria. This trend correlates with rising non-communicable disease risks, highlighting potential early-life microbiome impacts.
Area of Science:
- Microbiome research
- Pediatric health
- Public health trends
Background:
- Bifidobacteria are key to infant gut health.
- Decreased Bifidobacterium is linked to non-communicable disease risk.
- Investigating infant gut microbiota changes amid allergy and obesity epidemics.
Purpose of the Study:
- Assess factors influencing infant gut microbiota composition.
- Examine changes over time in relation to public health trends.
- Identify key determinants of gut microbiota alterations.
Main Methods:
- Analyzed fecal samples from 48 infants (1-3 months old) across three birth year groups (1997-2022).
- Utilized 16S rRNA gene amplicon sequencing for microbiota profiling.
- Considered perinatal factors: birth mode and antibiotic exposure.
Main Results:
- Significant decrease in infant gut microbiota richness and diversity observed over time.
- Reduced abundance of Actinobacteriota and Bifidobacterium in infants born later (2015-2022).
- Birth time period was the strongest determinant, followed by maternal BMI and antibiotic exposure.
Conclusions:
- Gut microbiota richness and diversity have declined in infants.
- A selective reduction in Bifidobacterium abundance has occurred.
- These changes parallel the rise in non-communicable diseases.
Introduction:
Bifidobacteria typify the gut microbiota of healthy, breastfed infants. Altered gut microbiota composition in early infancy characterized by decreased Bifidobacterium abundance has been linked with a heightened risk of non-communicable diseases. Our goal was to assess factors impacting on the gut microbiota composition in infants throughout the allergy and obesity epidemics of the past decades.
Methods:
We studied deliveries from a series of clinical studies, grouped by the year of birth into three time periods (1997-2001, 2005-2009, 2015-2022). Altogether, 48 full-term breastfed infants' having fecal samples available at the age of 1-3 months were studied for microbiota profiling by 16S rRNA gene amplicon sequencing. Perinatal factors including mode of birth and antibiotic exposure during pregnancy and at birth were taken into account.
Results:
The richness and diversity of the infant gut microbiota decreased significantly over the three time periods. Reduced abundance of the phylum Actinobacteriota and its genus Bifidobacterium was detected in children born in 2015-2022 as compared to those born during the time periods 1997-2001 and 2005-2009. The time period of birth was the strongest determinant of the gut microbiota composition, followed by maternal pre-pregnancy body mass index, antibiotic exposure during pregnancy, and mode of birth. The relative abundance of members of the genus Bifidobacterium was significantly associated with elapsed time (1997-2022) and intrapartum antibiotic exposure.
Conclusions:
The depletion of gut microbiota richness and diversity and the selective reduction of relative abundance of the genus Bifidobacterium have occurred parallel to the increase in the prevalence of non-communicable diseases.
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