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Age-Related Colonic Mucosal Microbiome Community Shifts in Monkeys
Ravichandra Vemuri1, Chrissy Sherrill1, Matthew A Davis1
1Department of Pathology, Wake Forest School of Medicine, Medical Center Boulevard, Winston-Salem, North Carolina.
Abstract:
Age-related changes in gut microbiome impact host health. The interactive relationship between the microbiome and physiological systems in an aged body system remains to be clearly defined, particularly in the context of inflammation. Therefore, we aimed to evaluate systemic inflammation, microbial translocation (MT), and differences between fecal and mucosal microbiomes. Ascending colon mucosal biopsies, fecal samples, and blood samples from healthy young and old female vervet monkeys were collected for 16S rRNA gene sequencing, MT, and cytokine analyses, respectively. To demonstrate microbial co-occurrence patterns, we used Kendall's tau correlation measure of interactions between microbes. We found elevated levels of plasma LBP-1, MCP-1, and CRP in old monkeys, indicative of higher MT and systemic inflammation. Microbiome analysis revealed significant differences specific to age. At the phylum level, abundances of pathobionts such as Proteobacteria were increased in the mucosa of old monkeys. At the family level, Helicobacteriaceae was highly abundant in mucosal samples (old); in contrast, Ruminococcaceae were higher in the fecal samples of old monkeys. We found significantly lower Firmicutes:Bacteroidetes ratio and lower abundance of butyrate-producing microbes in old monkeys, consistent with less healthy profiles. Microbial community co-occurrence analysis on mucosal samples revealed 13 nodes and 41 associations in the young monkeys, but only 12 nodes and 21 associations in the old monkeys. Our findings provide novel insights into systemic inflammation and gut microbial interactions, highlight the importance of the mucosal niche, and facilitate further understanding of the decline in the stability of the microbial community with aging.
Insights
Aging alters the gut microbiome, increasing microbial translocation and systemic inflammation. Older monkeys showed reduced microbial diversity and stability in the gut lining, impacting overall health.
Area of Science:
- Gerontology
- Microbiology
- Immunology
Background:
- Age-related gut microbiome shifts are linked to health decline.
- The interplay between aging, gut microbes, and inflammation requires further investigation.
Purpose of the Study:
- To assess systemic inflammation, microbial translocation, and fecal vs. mucosal microbiome differences in aged vervet monkeys.
- To understand how aging affects gut microbial community structure and interactions.
Main Methods:
- Collected fecal, mucosal biopsy, and blood samples from young and old female vervet monkeys.
- Utilized 16S rRNA gene sequencing for microbiome analysis and measured plasma cytokines.
- Applied Kendall's tau correlation to analyze microbial co-occurrence patterns.
Main Results:
- Older monkeys exhibited higher plasma levels of LBP-1, MCP-1, and CRP, indicating increased microbial translocation and inflammation.
- Mucosal microbiomes in older monkeys showed increased Proteobacteria and Helicobacteriaceae, with a lower Firmicutes:Bacteroidetes ratio.
- Microbial community stability decreased with age, showing fewer associations in the mucosal niche of older monkeys.
Conclusions:
- Aging is associated with increased systemic inflammation and microbial translocation, linked to gut microbiome alterations.
- The gut mucosal niche plays a critical role in age-related inflammatory changes.
- The decline in microbial community stability with aging has significant implications for host health.
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