Armed Phages: A New Weapon in the Battle Against Antimicrobial Resistance

Cleo Anastassopoulou1, Deny Tsakri1, Antonios-Periklis Panagiotopoulos1

  • 1Department of Microbiology, Medical School, National and Kapodistrian University of Athens, 11527 Athens, Greece.

Viruses
|July 30, 2025
PubMed

Insights

Bacterial defense systems hinder phage therapy for multidrug-resistant infections. Bioengineered phages overcome these defenses, offering a promising new strategy to combat antibiotic resistance.

Area of Science:

  • Microbiology
  • Synthetic Biology
  • Antimicrobial Resistance

Background:

  • Multidrug-resistant (MDR) bacterial infections are a growing global health threat.
  • Naturally occurring phages face limitations due to bacterial defense mechanisms.

Purpose of the Study:

  • To review bacterial defense systems that impede phage therapy.
  • To explore the potential of bioengineered phages in overcoming these defenses.

Main Methods:

  • Examination of bacterial defense systems (e.g., CRISPR-Cas, restriction-modification).
  • Review of bioengineering strategies for phages (e.g., receptor-binding protein modification, anti-CRISPR gene incorporation).
  • Analysis of clinical trial data for engineered phages (SNIPR001, LBP-EC01).

Main Results:

  • Bacterial defenses significantly limit phage efficacy.
  • Engineered phages can evade bacterial immunity and enhance therapeutic potential.
  • Early clinical trials demonstrate the safety and efficacy of bioengineered phages.

Conclusions:

  • Bioengineered phages, including "armed phages", represent a viable strategy against MDR infections.
  • These engineered phages offer precision-targeted antimicrobial therapy.
  • Phage bioengineering is a critical innovation for addressing the antibiotic resistance crisis.

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