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Published on: December 31, 2017
Differential Patterns of Gut and Oral Microbiomes in Hispanic Individuals with Cognitive Impairment
Abstract:
Alzheimer's disease and related dementias (ADRD) have been associated with alterations in both oral and gut microbiomes. While extensive research has focused on the role of gut dysbiosis in ADRD, the contribution of the oral microbiome remains relatively understudied. Furthermore, the potential synergistic interactions between oral and gut microbiomes in ADRD pathology are largely unexplored. This study aims to evaluate distinct patterns and potential synergistic effects of oral and gut microbiomes in a cohort of predominantly Hispanic individuals with cognitive impairment (CI) and without cognitive impairment (NC). We conducted 16S rRNA gene sequencing on stool and saliva samples from 32 participants (17 CI, 15 NC; 62.5% female, mean age = 70.4 ± 6.2 years) recruited in San Antonio, Texas, USA. Correlation analysis through MaAslin2 assessed the relationship between participants' clinical measurements (e.g., fasting glucose and blood cholesterol) and their gut and saliva microbial contents. Differential abundance analysis evaluated taxa with significant differences between CI and NC groups, and alpha and beta diversity metrics assessed within-sample and group compositional differences. Our analyses revealed no significant differences between NC and CI groups in fasting glucose or blood cholesterol levels. However, a clear association was observed between gut microbiome composition and levels of fasting glucose and blood cholesterol. While alpha and beta diversity metrics showed no significant differences between CI and NC groups, differential abundance analysis revealed an increased presence of oral genera such as Dialister , Fretibacterium , and Mycoplasma in CI participants. Conversely, CI individuals exhibited a decreased abundance of gut genera, including Shuttleworthia , Holdemania , and Subdoligranulum , which are known for their anti-inflammatory properties. No evidence was found for synergistic contributions between oral and gut microbiomes in the context of ADRD. Our findings suggest that similar to the gut microbiome, the oral microbiome undergoes significant modifications as individuals transition from NC to CI. Notably, the identified oral microbes have been previously associated with periodontal diseases and gingivitis. These results underscore the necessity for further investigations with larger sample sizes to validate our findings and elucidate the complex interplay between oral and gut microbiomes in ADRD pathogenesis.
Insights
Alzheimer's disease is linked to changes in the oral microbiome, with specific bacteria like Dialister increasing in individuals with cognitive impairment. Gut microbiome alterations also correlate with health markers, but no synergistic effects were found.
Area of Science:
- Microbiome research
- Neurodegenerative disease studies
- Oral health and systemic disease
Background:
- Alzheimer's disease and related dementias (ADRD) are linked to gut microbiome dysbiosis.
- The role of the oral microbiome and its interaction with the gut microbiome in ADRD is understudied.
- Investigating oral and gut microbiome patterns in cognitive impairment (CI) is crucial.
Purpose of the Study:
- To evaluate distinct patterns of oral and gut microbiomes in Hispanic individuals with and without cognitive impairment (CI).
- To explore potential synergistic effects between oral and gut microbiomes in ADRD.
- To correlate microbial composition with clinical measurements like glucose and cholesterol.
Main Methods:
- 16S rRNA gene sequencing of stool and saliva samples from 32 participants (17 CI, 15 NC).
- MaAslin2 for correlation analysis between clinical data and microbial content.
- Differential abundance and diversity analyses to compare CI and NC groups.
Main Results:
- No significant differences in glucose or cholesterol between CI and NC groups, but gut microbiome correlated with these markers.
- Increased abundance of oral genera (Dialister, Fretibacterium, Mycoplasma) in CI participants.
- Decreased abundance of anti-inflammatory gut genera (Shuttleworthia, Holdemania, Subdoligranulum) in CI participants.
- No synergistic effects between oral and gut microbiomes were detected.
Conclusions:
- The oral microbiome shows significant modifications associated with cognitive decline, similar to the gut microbiome.
- Specific oral bacteria linked to periodontal disease are more prevalent in individuals with CI.
- Further research with larger cohorts is needed to confirm findings and understand the oral-gut microbiome interplay in ADRD.
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