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Updated: Nov 2, 2025

Probiotic Studies in Neonatal Mice Using Gavage
Published on: January 27, 2019
Bacteroides-dominant gut microbiome of late infancy is associated with enhanced neurodevelopment
Sukhpreet K Tamana1, Hein M Tun1,2, Theodore Konya3
1Department of Pediatrics, University of Alberta, Edmonton, AB, Canada.
Insights
Gut microbiota composition in infancy, particularly a Bacteroidetes-dominant gut microbiota, is linked to improved neurodevelopmental outcomes in children. This association was most pronounced in males, suggesting sex-specific effects on early development.
Area of Science:
- Microbiome research
- Neurodevelopmental pediatrics
- Infant health
Background:
- Gut dysbiosis is linked to autism spectrum disorders, but its role in early neurodevelopment of healthy infants is unclear.
- Understanding the temporal relationship between infant gut microbiota and neurodevelopment is crucial for early intervention strategies.
Purpose of the Study:
- To investigate associations between gut microbiota composition at 4 and 12 months of age and neurodevelopmental outcomes at 1 and 2 years in a general infant population.
- To explore potential sex-specific differences in these associations.
Main Methods:
- Analysis of fecal samples from 405 infants using 16S rRNA gene sequencing for microbiota profiling.
- Neurodevelopmental assessment using the Bayley Scale of Infant Development (BSID-III) at 1 and 2 years.
- Clustering analysis to identify distinct gut microbiota profiles (Proteobacteria-, Firmicutes-, and Bacteroidetes-dominant).
Main Results:
- Infants with a Bacteroidetes-dominant microbiota at 12 months showed significantly higher cognitive, language, and motor scores at age 2 compared to those with Proteobacteria-dominant microbiota.
- These positive associations were more pronounced in male infants, particularly for cognitive and language development.
- Genus Bacteroides abundance correlated positively with cognitive and language scores; enhanced sphingolipid metabolism was noted in Bacteroidetes-dominant microbiomes.
Conclusions:
- A Bacteroidetes-dominant gut microbiota in late infancy is associated with enhanced neurodevelopmental outcomes, especially in males.
- The gut microbiome's influence on neurodevelopment appears to be sex-dependent.
- No significant associations were found between 4-month microbiota and neurodevelopmental scores at 1 or 2 years.
Abstract:
Dysbiosis of gut microbiota has been retrospectively linked to autism spectrum disorders but the temporal association between gut microbiota and early neurodevelopment in healthy infants is largely unknown. We undertook this study to determine associations between gut microbiota at two critical periods during infancy and neurodevelopment in a general population birth cohort.Here, we analyzed data from 405 infants (199 females) from the CHILD (Canadian Healthy Infant Longitudinal Development) Cohort Study. Neurodevelopmental outcomes were objectively assessed using the Bayley Scale of Infant Development (BSID-III) at 1 and 2 years of age. Microbiota profiling with 16S rRNA gene sequencing was conducted on fecal samples obtained at a mean age of 4 and 12 months.Using clustering methods, we identified three groups of infants based on relative abundance of gut microbiota at 12 months: Proteobacteria-dominant cluster (22.4% higher abundance at 12 months), Firmicutes-dominant cluster (46.0% higher abundance at 12 months) and Bacteroidetes-dominant cluster (31.6% higher abundance at 12 months). Relative to the Proteobacteria-dominant cluster, the Bacteroidetes-dominant cluster was associated with higher scores for cognitive (4.8 points; FDRp = .02), language (4.2 points; FDRp≤0.001), and motor (3.1 points; FDRp = .03) development at age 2 in models adjusted for covariates. When stratified by sex, only male infants with a Bacteroidetes-dominant microbiota had more favorable cognitive (5.9 points, FDRp = .06) and language (7.9 points; FDRp≤0.001) development. Genus Bacteroides abundance in gut microbiota was positively correlated with cognitive and language scores at age 2. Fully adjusted linear mixed model analysis revealed a positive association between Bacteroidetes-dominant cluster and change in cognitive and language performance from 1 to 2 years, predominantly among males. No associations were evident between 4-month microbiota clusters and BSID-II scores. Noteworthy is that enhanced sphingolipid synthesis and metabolism, and antagonism or competition between Bacteroides and Streptococcus were characteristic of a Bacteroidetes-dominant gut microbiota.This study found strong evidence of positive associations between Bacteroidetes gut microbiota in late infancy and subsequent neurodevelopment, most prominently among males but not females.
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