Improving phage therapy by evasion of phage resistance mechanisms
Совершенствование фаготерапии путем обхода механизмов устойчивости к фагам
2023-12-28
SCID: 54.1/fkb7whct
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CRISPR-Cas systemsbacterial defense systemsphage engineeringphage resistance mechanismsphage therapy
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Abstract (AI)
Antibiotic failure is one of the most worrisome threats to global health. Among the new therapeutic efforts that are being explored, the use of bacteriophages (viruses that kill bacteria), also known as 'phages', is being extensively studied as a strategy to target bacterial pathogens. However, one of the main drawbacks of phage therapy is the plethora of defence mechanisms that bacteria use to defend themselves against phages. This review aims to summarize the therapeutic approaches that are being evaluated to overcome the bacterial defence systems, including the most innovative therapeutic approaches applied: circumvention of phage receptor mutations; modification of prophages; targeting of CRISPR-Cas systems and the biofilm matrix; engineering of safer and more efficacious phages; and inhibition of the anti-persister strategies used by bacteria.
Key Findings
1
Bacterial defense mechanisms are a major limitation of phage therapy and can cause treatment failure against pathogenic bacteria.
2
Disrupting the biofilm matrix is highlighted as a way to improve phage access to protected bacterial populations.
3
Engineering safer and more efficacious phages, together with inhibiting bacterial anti-persister strategies, may enhance phage therapy outcomes.
4
Proposed approaches include modifying prophages and targeting bacterial CRISPR-Cas systems to reduce phage resistance.
5
The review identifies circumvention of phage receptor mutations as a therapeutic strategy for overcoming phage resistance.
Research Object
Bacterial defense mechanisms against bacteriophages in phage therapy
Research Subject
Therapeutic approaches for overcoming bacterial phage-defense systems to improve phage therapy
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2023-12-28
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