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SELECTION OF THE ACTIVE PHAGES AGAINST B.FRAGILIS FOR FURTHER STUDY OF THRAPEUTIC PERPECTIVES
N Bakuradze1, Kh Makalatia1, M Merabishvili1
1G. Eliava Institute of Bacteriophage, Microbiology and Virology, Tbilisi; I. Javakhishvili Tbilisi State University; Ghent University, Laboratory of Bacteriology Research, University Hospital, Gent, Belgium; Eliava Diagnostic Center, Tbilisi, Georgia.
Abstract:
B.fragilis is an obligate anaerobic commensal colonizing human intestines and carries number of physiological functions. At the same time B.fragilis is commonly isolated from the septic clinical samples and due to its capsule represents one of the provoking agents for abscess development. Enterotoxigenic B.fragilis (ETBF) strains also increase the likelihood of developing colon cancer. Increasing incidence of antibiotic-resistant pathogens led to the high demand to alternative antimicrobials. Bacteriophage (phage) therapy already practiced for a century in some of the Post-Soviet countries including Georgia has been suggested as a substitute of antibiotics. It should be noted that this study is the first attempt to isolate virulent B.fragilis phages for further therapeutic application as all phages known up until now were used for detection of fecal water contamination only. The aim of the study was to isolate B.fragilis specific phages for their further use against infections caused by this bacteria Eighteen B.fragilis strains were isolated from human feces using conventional microbiological methods and precise identification was done via MULDI-TOF mass spectrometry. Three ETBF strains were provided by the University of Ghent (Belgium). Three lytic phages (ФVA7, ФMTK and ФUZ-1) of Siphoviridae family were isolated from the waste water samples collected in Tbilisi and in Ghent using conventional phage isolation and enumeration techniques. Electron microscopy was used for the visualization of the phage particles. To determine lytic activity of the isolated phages and estimate their antimicrobial efficacy the spot test assay and efficiency of plating (EOP) were studied using 18 clinical strains of B.fragilis and 12 intestinal commensal strains related to Bacterioides spp. and Parabacterioides spp.. Although according to the spot test results two of the isolated phages expressed high specificity to B.fragilis demonstrating broad host range within this species, however EOP results showed that only ФVA7 can be selected as the best candidate for the model in vitro tissue culture experiments aiming demonstration of the therapeutic and prophylactic potential of phages against ETBF and/or NETBF.
Insights
This study isolated bacteriophages (phages) effective against B.fragilis, a bacterium linked to infections and colon cancer. Phage ФVA7 shows promise as a therapeutic agent against B.fragilis infections.
Area of Science:
- Microbiology
- Molecular Biology
- Infectious Diseases
Background:
- Bacteroides fragilis (B.fragilis) is a common human gut commensal with diverse physiological roles.
- Certain B.fragilis strains, particularly enterotoxigenic B.fragilis (ETBF), are associated with abscess formation and increased colon cancer risk.
- The rise of antibiotic-resistant pathogens necessitates alternative antimicrobial strategies, with bacteriophage (phage) therapy emerging as a viable option.
Purpose of the Study:
- To isolate and characterize virulent bacteriophages specific to B.fragilis for potential therapeutic applications.
- To evaluate the antimicrobial efficacy of isolated phages against clinical B.fragilis strains.
- To identify the most promising phage candidate for further in vitro studies against B.fragilis infections.
Main Methods:
- Isolation and identification of B.fragilis strains from human feces using microbiological methods and MALDI-TOF mass spectrometry.
- Isolation and characterization of lytic bacteriophages from wastewater samples using standard phage isolation techniques.
- Assessment of phage lytic activity and antimicrobial efficacy through spot assays and efficiency of plating (EOP) against B.fragilis and related species.
Main Results:
- Three lytic bacteriophages (ФVA7, ФMTK, ФUZ-1) belonging to the Siphoviridae family were successfully isolated.
- Spot tests indicated broad host range activity for two phages against B.fragilis species.
- Efficiency of plating (EOP) results identified phage ФVA7 as the most effective candidate for further therapeutic development.
Conclusions:
- Bacteriophage therapy presents a promising alternative to antibiotics for combating B.fragilis infections.
- Phage ФVA7 demonstrates significant potential for therapeutic and prophylactic applications against both ETBF and non-ETBF strains.
- Further in vitro studies are warranted to explore the full therapeutic potential of ФVA7.
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