Phages for Biofilm Removal
Бактериофаги для удаления биопленок
2020-05-21
SCID: 54.1/46pwsh9k
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antibiotic resistancebiofilm removalextracellular polymeric matrixphage-based treatments
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Abstract (AI)
Biofilms are clusters of bacteria that live in association with surfaces. Their main characteristic is that the bacteria inside the biofilms are attached to other bacterial cells and to the surface by an extracellular polymeric matrix. Biofilms are capable of adhering to a wide variety of surfaces, both biotic and abiotic, including human tissues, medical devices, and other materials. On these surfaces, biofilms represent a major threat causing infectious diseases and economic losses. In addition, current antibiotics and common disinfectants have shown limited ability to remove biofilms adequately, and phage-based treatments are proposed as promising alternatives for biofilm eradication. This review analyzes the main advantages and challenges that phages can offer for the elimination of biofilms, as well as the most important factors to be taken into account in order to design effective phage-based treatments.
Key Findings
1
Biofilms consist of bacteria embedded in an extracellular polymeric matrix that attaches cells to surfaces, making them persistent on biotic and abiotic materials.
2
Biofilms on human tissues, medical devices, and other materials pose major threats causing infectious diseases and economic losses.
3
Current antibiotics and common disinfectants have limited ability to adequately remove biofilms.
4
Designing effective phage-based treatments requires consideration of specific advantages, challenges, and key factors highlighted in the review.
5
Phage-based treatments are proposed as promising alternatives for effective biofilm eradication.
Research Object
Bacterial biofilms on biotic and abiotic surfaces
Research Subject
Use of bacteriophages for removal/eradication of biofilms, including advantages, challenges, and key factors for designing effective phage-based treatments
Publication Details
Publication Date
2020-05-21
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