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Updated: Aug 2, 2025

Oral Biofilm Sampling for Microbiome Analysis in Healthy Children
Published on: December 31, 2017
Dynamics of oral microbiome acquisition in healthy infants: A pilot study
Yihong Li1, Prakaimuk Saraithong2, Lanxin Zhang3
1Master of Public Health Program, Department of Public and Ecosystem Health, Cornell University, Ithaca, NY, United States.
Insights
Infant oral microbial diversity increases with age, with distinct bacterial colonization at birth. By age two, infant oral microbiomes may resemble their mothers
Area of Science:
- Microbiology
- Human Microbiome
- Infant Health
Background:
- The human oral microbiota is complex, but initial bacterial acquisition in newborns is poorly understood.
- Investigating early oral microbial colonization is crucial for understanding infant health and development.
Purpose of the Study:
- To examine the dynamics of oral microbial communities in healthy infants.
- To investigate the influence of the maternal oral microbiota on infant oral microbiota acquisition.
- To test the hypothesis that infant oral microbial diversity increases with age.
Main Methods:
- Collected 116 whole-salivary samples from 32 healthy infants and their mothers.
- Utilized Human Oral Microbe Identification using Next Generation Sequencing (HOMI NGS) for bacterial DNA sequencing.
- Analyzed microbial diversity (alpha and beta) and core microbiome composition.
Main Results:
- Oral microbial profiles significantly differed between mothers and infants (p < 0.001).
- Infant oral microbial diversity increased with age, while maternal microbiomes remained stable.
- Infants showed higher relative abundance of Firmicutes and lower abundance of other key phyla compared to mothers.
Conclusions:
- Infant oral cavities are colonized by distinct bacteria at birth.
- Oral microbial composition and diversity are dynamic during the first year of life.
- Infant oral microbiomes may become more similar to their mothers' by age two.
Objectives:
The human oral microbiota is one of the most complex bacterial communities in the human body. However, how newborns initially acquire these bacteria remains largely unknown. In this study, we examined the dynamics of oral microbial communities in healthy infants and investigated the influence of the maternal oral microbiota on the acquisition of the infant's oral microbiota. We hypothesized that the infant oral microbial diversity increases with age.
Methods:
One hundred and sixteen whole-salivary samples were collected from 32 healthy infants and their biological mothers during postpartum and 9- and 15-month well-infant visits. Bacterial genomic DNA was extracted and sequenced by Human Oral Microbe Identification using Next Generation Sequencing (HOMINGS) methods. The Shannon index was used to measure the microbial diversity of the infant-mother dyads (alpha diversity). The microbial diversity between the mother-infant dyads (beta-diversity) was calculated using the weighted non-phylogenetic Bray-Curtis distance in QIIME 1.9.1. Core microbiome analysis was performed using MicrobiomeAnalyst software. Linear discriminant analysis coupled with effect size analysis was used to identify differentially abundant features between mother and infant dyads.
Results:
A total of 6,870,571 16S rRNA reads were generated from paired mother-infant saliva samples. Overall, oral microbial profiles significantly differed between the mother and infant groups (p < 0.001). The diversity of the salivary microbiomes in the infants increased in an age-dependent manner, whereas the core microbiome of the mothers remained relatively stable during the study period. Breastfeeding and gender did not affect the microbial diversity in infants. Moreover, infants had a greater relative abundance of Firmicutes and a lower abundance of Actinobacteria, Bacteroidetes, Fusobacteria, and Proteobacteria than their mothers. The SparCC correlation analysis demonstrated constant changes in infants' oral microbial community network (p < 0.05).
Conclusions:
This study provides new evidence that the oral cavities of infants are colonized by a distinct group of bacterial species at birth. The acquisition and diversity of changes in oral microbial composition are dynamic during the first year of an infant's life. Before reaching the second birthday, the composition of the oral microbial community could be more similar to that of their biological mothers.
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