Intestinal colonization: How key microbial players become established in this dynamic process
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Summary
Deciphering microbial signatures and their metabolites that govern short and long‐term equilibrium, as well as imbalances in host‐microbial relationships, may provide novel diagnostic tools and or therapeutic targets for specific disorders associated with intestinal dysbiosis and loss of homeostasis.
- Type
- review
- Published
- 2013-10-01
- Cited by
- 76
- References
- 123
- OpenAlex
- https://openalex.org/W1513447880
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8354175
Keywords
Dysbiosis, Biology, Gut flora, Microbial metabolism, Colonization
References
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- A novel glycosulphatase isolated from a mucus glycopeptide-degrading Bacteroides species
- Host-Bacterial Mutualism in the Human Intestine
- Interactions between commensal intestinal bacteria and the immune system
Cited by
- Commensal Streptococcus salivarius Modulates PPARγ Transcriptional Activity in Human Intestinal Epithelial Cells
- Rheumatic disease and the microbiome
- Colonic MUC2 mucin regulates the expression and antimicrobial activity of β-defensin 2
- Teleost microbiomes: the state of the art in their characterization, manipulation and importance in aquaculture and fisheries
- The composition of the gut microbiota throughout life, with an emphasis on early life
- Application of a new dynamic gastrointestinal simulator (SIMGI) to study the impact of red wine in colonic metabolism
- Microbial activities and intestinal homeostasis: A delicate balance between health and disease
- At the mercy of our microbes?
- Converting Carbon Dioxide to Butyrate with an Engineered Strain of Clostridium ljungdahlii
- Gut Microbiota: The Conductor in the Orchestra of Immune-Neuroendocrine Communication.
- From promotion to management: The wide impact of bacteria on cancer and its treatment
- Prenatal stress-induced alterations in major physiological systems correlate with gut microbiota composition in adulthood.
- Integrated Community Profiling Indicates Long-Term Temporal Stability of the Predominant Faecal Microbiota in Captive Cheetahs
- Microbiome to Brain: Unravelling the Multidirectional Axes of Communication.
- Bioinformatic Characterization of Glycyl Radical Enzyme-Associated Bacterial Microcompartments
- Molecular Players Involved in the Interaction Between Beneficial Bacteria and the Immune System
- Encounters with oxygen: Aerobic physiology and H₂O₂ production of Lactobacillus johnsonii
- Ecological Succession in the Honey Bee Gut: Shift in Lactobacillus Strain Dominance During Early Adult Development
- Metabolic Interactions in the Gastrointestinal Tract (GIT): Host, Commensal, Probiotics, and Bacteriophage Influences
- Sulfate-reducing bacteria impairs working memory in mice.
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