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Determining the association between the gut and oral microbiomes in patients with dental caries
Thesis

Determining the association between the gut and oral microbiomes in patients with dental caries

Justin W Nichols
University of Iowa
Master of Science (MS), University of Iowa
Spring 2026
DOI: 10.25820/etd.008370
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Nichols Thesis Complete1.92 MB
Embargoed Access, Embargo ends: 06/29/2028

Abstract

Background: Dental caries remains one of the most prevalent chronic diseases worldwide, yet its etiology is primarily understood within the context of the oral microbiome. While interactions between the oral and gut microbiomes have been described in inflammatory diseases, their relationship in dental caries remains poorly defined. Objective: This study aimed to evaluate the association between the oral and gut microbiomes in individuals with dental caries compared to those without. Methods: Supragingival plaque, saliva, and stool samples were collected from 24 systemically healthy adults (12 with caries, 12 controls). Microbial communities were characterized using 16S rRNA gene sequencing (V3–V4 region). Alpha and beta diversity metrics were used to assess microbial richness and community structure, and differential abundance analysis was performed to identify taxa-level differences. Results: No significant differences in alpha or beta diversity were observed between caries and control groups across oral or gut samples. In contrast, strong separation was observed between oral and stool microbiomes regardless of disease status, indicating that anatomical niche is the primary driver of microbial community structure. Differential abundance analysis identified increased relative abundance of cariogenic taxa in oral samples from individuals with caries. In stool samples, taxa-level differences were observed, including increased relative abundance of Streptococcus spp. and Actinomyces spp., although global gut microbial structure remained unchanged. Conclusion: Dental caries appears to be associated with taxa-level compositional shifts within the oral and gut microbiomes, while overall microbial community structure remains stable and is primarily determined by anatomical niche. These findings support a model in which caries is driven by localized ecological changes rather than systemic microbial disruption. However, in light of differences that emerged between health and disease in the stool core microbiome, coupled with increases to relative abundance of commonly implicated caries pathogens found in caries patient’s stool, our study reveals evidence of systemic microbial interactions that warrant further investigation in larger studies.
caries microbiome oral-gut connection systemic

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