Proteobacteria: microbial signature of dysbiosis in gut microbiota.
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Summary
This work reviews studies that explored the association between an abnormal expansion of Proteobacteria and a compromised ability to maintain a balanced gut microbial community and proposes that an increased prevalence of ProTeobacteria is a potential diagnostic signature of dysbiosis and risk of disease.
- Type
- review
- Published
- 2015-09-01
- Cited by
- 3,432
- References
- 87
- OpenAlex
- https://openalex.org/W1647551795
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33736101
Keywords
Dysbiosis, Proteobacteria, Biology, Phylum, Gut flora
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- Phylogeny-corrected identification of microbial gene families relevant to human gut colonization
- Fecal Microbiota Transplantation Beneficially Regulates Intestinal Mucosal Autophagy and Alleviates Gut Barrier Injury
- Semen hoveniae extract ameliorates alcohol-induced chronic liver damage in rats via modulation of the abnormalities of gut-liver axis.
- Modification of wheat bran particle size and tissue composition affects colonisation and metabolism by human faecal microbiota.
- Urogenital schistosomiasis is associated with signatures of microbiome dysbiosis in Nigerian adolescents
- The Probiotic Lactobacillus paracasei Ameliorates Diarrhea Cause by Escherichia coli O8 via Gut Microbiota Modulation1
- Molecular characterization of Fusarium venenatum-based microbial protein in animal models of obesity using multi-omics analysis
- Microbiome and Gluten
- Gut Microbiome as a Novel Cardiovascular Therapeutic Target
- Immune-Microbiota Interactions: Dysbiosis as a Global Health Issue
- Development of the Neonatal Intestinal Microbiome and Its Association With Necrotizing Enterocolitis.
- Skin microbiota of first cousins affected by psoriasis and atopic dermatitis
- Functional Redundancy-Induced Stability of Gut Microbiota Subjected to Disturbance.
- Microbiota-Inducible Innate Immune Siderophore Binding Protein Lipocalin 2 Is Critical for Intestinal Homeostasis
- Biochar, Bentonite and Zeolite Supplemented Feeding of Layer Chickens Alters Intestinal Microbiota and Reduces Campylobacter Load
- A low dose of an organophosphate insecticide causes dysbiosis and sex-dependent responses in the intestinal microbiota of the Japanese quail (Coturnix japonica)
- HIV infection results in metabolic alterations in the gut microbiota different from those induced by other diseases
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