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Updated: Jan 1, 2026

Author Spotlight: Insight Into Advances in Prion Diseases Research
Published on: August 11, 2023
Implications of gut microbiota dysbiosis and metabolic changes in prion disease
Dongming Yang1, Deming Zhao1, Syed Zahid Ali Shah2
1Key Laboratory of Animal Epidemiology and Zoonosis, Ministry of Agriculture, National Animal Transmissible Spongiform Encephalopathy Laboratory, College of Veterinary Medicine, China Agricultural University, Beijing, China.
Abstract:
Evidence of the gut microbiota influencing neurodegenerative diseases has been reported for several neural diseases. However, there is little insight regarding the relationship between the gut microbiota and prion disease. Here, using fecal samples of 12 prion-infected mice and 25 healthy controls, we analyzed the structure of the gut microbiota and metabolic changes by 16S rRNA sequencing and LC-MS-based metabolomics respectively as multi-omic analyses. Additionally, SCFAs and common amino acids were detected by GC-MS and UPLC respectively. Enteric changes induced by prion disease affected both structure and abundances of the gut microbiota. The gut microbiota of infected mice displayed greater numbers of Proteobacteria and less Saccharibacteria at the phylum level and more Lactobacillaceae and Helicobacteraceae and less Prevotellaceae and Ruminococcaceae at the family level. A total of 145 fecal metabolites were found to be significantly different in prion infection, and most (114) of these were lipid metabolites. Using KEGG pathway enrichment analysis, we found that 3 phosphatidylcholine (PC) compounds significantly decreased and 4 hydrophobic bile acids significantly increased. Decreases of 8 types of short-chain acids (SCFAs) and increases of Cys and Tyr and decreases of His, Trp, and Arg were observed in prion infection. Correlation analysis indicated that the gut microbiota changes observed in our study may have been the shared outcome of prion disease. These findings suggest that prion disease can cause significant shifts in the gut microbiota. Certain bacterial taxa can then respond to the resulting change to the enteric environment by causing dramatic shifts in metabolite levels. Our data highlight the health impact of the gut microbiota and related metabolites in prion disease.
Insights
Prion disease significantly alters the gut microbiota structure and metabolite levels in mice. These changes, including shifts in bacterial populations and lipid metabolites, highlight the gut microbiome's impact on prion disease progression.
Area of Science:
- Microbiology
- Neuroscience
- Metabolomics
Background:
- Gut microbiota influence on neurodegenerative diseases is established.
- Limited understanding exists regarding the gut microbiome's role in prion disease.
Purpose of the Study:
- To investigate the relationship between gut microbiota and prion disease.
- To analyze multi-omic changes in the gut environment during prion infection.
Main Methods:
- 16S rRNA sequencing for gut microbiota structure analysis.
- LC-MS, GC-MS, and UPLC for fecal metabolite profiling.
- Multi-omic analysis of fecal samples from prion-infected mice and controls.
Main Results:
- Prion infection altered gut microbiota composition, increasing Proteobacteria and decreasing Saccharibacteria.
- Significant changes in fecal metabolites, predominantly lipids, were observed.
- Decreased short-chain fatty acids (SCFAs) and altered amino acid profiles were noted.
Conclusions:
- Prion disease induces substantial shifts in the gut microbiota and associated metabolites.
- Gut microbiota dysbiosis may play a role in prion disease pathogenesis.
- Findings underscore the importance of the gut microbiome in prion disease health impacts.
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