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Assessing Hepatic Metabolic Changes During Progressive Colonization of Germ-free Mouse by 1H NMR Spectroscopy
Published on: December 15, 2011
Age-dependent remodeling of gut microbiome and host serum metabolome in mice
Chia-Shan Wu1,2, Sai Deepak Venkata Muthyala1, Cory Klemashevich3
1Department of Nutrition, Texas A&M University, College Station, TX 77843, USA.
Abstract:
The interplay between microbiota and host metabolism plays an important role in health. Here, we examined the relationship between age, gut microbiome and host serum metabolites in male C57BL/6J mice. Fecal microbiome analysis of 3, 6, 18, and 28 months (M) old mice showed that the Firmicutes/Bacteroidetes ratio was highest in the 6M group; the decrease of Firmicutes in the older age groups suggests a reduced capacity of gut microflora to harvest energy from food. We found age-dependent increase in Proteobacteria, which may lead to altered mucus structure more susceptible to bacteria penetration and ultimately increased intestinal inflammation. Metabolomic profiling of polar serum metabolites at fed state in 3, 12, 18 and 28M mice revealed age-associated changes in metabolic cascades involved in tryptophan, purine, amino acids, and nicotinamide metabolism. Correlation analyses showed that nicotinamide decreased with age, while allantoin and guanosine, metabolites in purine metabolism, increased with age. Notably, tryptophan and its microbially derived compounds indole and indole-3-lactic acid significantly decreased with age, while kynurenine increased with age. Together, these results suggest a significant interplay between bacterial and host metabolism, and gut dysbiosis and altered microbial metabolism contribute to aging.
Insights
Aging alters the gut microbiome and host metabolism. Key changes include a decreased Firmicutes/Bacteroidetes ratio and altered tryptophan and purine metabolism, impacting overall health.
Area of Science:
- Microbiology
- Metabolomics
- Gerontology
Background:
- The gut microbiome and host metabolism are crucial for maintaining health.
- Age-related changes in the gut microbiome can impact host physiology.
Purpose of the Study:
- To investigate the relationship between aging, gut microbiome composition, and host serum metabolites in male C57BL/6J mice.
- To identify age-associated alterations in microbial and metabolic profiles.
Main Methods:
- Fecal microbiome analysis was performed on mice at 3, 6, 18, and 28 months of age.
- Serum metabolomic profiling was conducted on mice at 3, 12, 18, and 28 months of age.
- Correlation analyses were used to link microbiome and metabolite changes.
Main Results:
- The Firmicutes/Bacteroidetes ratio decreased with age, suggesting reduced energy harvest.
- Proteobacteria increased with age, potentially increasing inflammation risk.
- Age-dependent changes were observed in tryptophan, purine, amino acid, and nicotinamide metabolism, with decreased nicotinamide and tryptophan, and increased allantoin, guanosine, and kynurenine.
Conclusions:
- Gut dysbiosis and altered microbial metabolism are significant factors contributing to the aging process.
- These findings highlight the intricate interplay between the gut microbiome and host metabolism during aging.
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