Exploiting gut bacteriophages for human health.
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Summary
Individual phageomes vary depending on age and health, thus providing a useful biomarker of human health as well as suggesting potential interventions targeted at the gut microbiota.
- Type
- article
- Published
- 2014-07-01
- Cited by
- 160
- References
- 70
- OpenAlex
- https://openalex.org/W24656964
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13109187
Keywords
Metropolitan area, Dial, Service (business), Transport engineering, Telecommunications
References
- Bacteriophages for detection and control of bacterial pathogens in food and food-processing environment.
- Phage survival: The biodegradability of M13 phage display library in vitro
- Convection-enhanced delivery of M13 bacteriophage to the brain
- Development of the Intestinal Bacterial Composition in Hospitalized Preterm Infants in Comparison with Breast-Fed, Full-Term Infants
- A historical overview of bacteriophage therapy as an alternative to antibiotics for the treatment of bacterial pathogens
- Laboratory procedures to generate viral metagenomes
- Molecular mechanisms of CRISPR-mediated microbial immunity
- A bacteriophage encodes its own CRISPR/Cas adaptive response to evade host innate immunity
- Viral diversity and dynamics in an infant gut.
- Rapid evolution of the human gut virome
- A composite bacteriophage alters colonization by an intestinal commensal bacterium
- Co-Therapy Using Lytic Bacteriophage and Linezolid: Effective Treatment in Eliminating Methicillin Resistant Staphylococcus aureus (MRSA) from Diabetic Foot Infections
- Bacteriophages in Gut Samples From Pediatric Crohn’s Disease Patients: Metagenomic Analysis Using 454 Pyrosequencing
- λ Phage Nanobioparticle Expressing Apoptin Efficiently Suppress Human Breast Carcinoma Tumor Growth In Vivo
- Bacteriophages lytic for Salmonella rapidly reduce Salmonella contamination on glass and stainless steel surfaces
- Bacteriophage adhering to mucus provide a non–host-derived immunity
- Movers and shakers
- Resident viruses and their interactions with the immune system
- Metagenomics and future perspectives in virus discovery
- Back to the future: evolving bacteriophages to increase their effectiveness against the pathogen Pseudomonas aeruginosa PAO1
Cited by
- Combining metagenomics, metatranscriptomics and viromics to explore novel microbial interactions: towards a systems-level understanding of human microbiome
- Beyond phage display: non-traditional applications of the filamentous bacteriophage as a vaccine carrier, therapeutic biologic, and bioconjugation scaffold
- The microbiota in inflammatory bowel disease
- Host–microbe interactions in the gut: lessons learned from models of inflammatory bowel diseases
- Metagenomic Sequencing Indicates That the Oropharyngeal Phageome of Individuals With Schizophrenia Differs From That of Controls.
- Oral Application of T4 Phage Induces Weak Antibody Production in the Gut and in the Blood
- Prophages of the genus Bifidobacterium as modulating agents of the infant gut microbiota.
- Carrier systems for bacteriophages to supplement food systems: Encapsulation and controlled release to modulate the human gut microbiota
- Microbial translocation and microbiome dsybiosis in HIV-associated immune activation
- Metabolic Interactions in the Gastrointestinal Tract (GIT): Host, Commensal, Probiotics, and Bacteriophage Influences
- Isolation of Lytic Bacteriophage from Poultry’s Feces and Evaluation of It’s Efficiency to Reduce Salmonella enteritidis In Vitro and In Vivo
- Pathological and therapeutic interactions between bacteriophages, microbes and the host in inflammatory bowel disease.
- Bacteriophage Combinations Significantly Reduce Clostridium difficile Growth In Vitro and Proliferation In Vivo
- Back to the future: bacteriophages as promising therapeutic tools
- Gut microbiota impact on stroke outcome: Fad or fact?
- Innate immune receptors in solid organ transplantation.
- Emerging Concepts on the Gut Microbiome and Multiple Sclerosis
- Dietary antimicrobials and prophage inducers---towards landscaping of the human gut microbiome
- Bakteriofagi - potencijal za prevladavanje antibiotičke rezistencije
- Three New Escherichia coli Phages from the Human Gut Show Promising Potential for Phage Therapy
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