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October 8, 2025Pathogens18 citationsOpen Access

Phage to ESKAPE: Personalizing Therapy for MDR Infections—A Comprehensive Clinical Review

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AMAndrea MarınoSSStefano StracquadanioFCFederica Cosentino

Key Points

  • Phage therapy shows considerable success in treating MDR infections caused by ESKAPE pathogens, with potential to personalize treatments.
  • Evidence from preclinical and clinical cases supports the effectiveness of phage therapy, particularly in salvage therapy for untreatable infections.
  • Challenges like narrow phage host range and bacterial resistance complicate the application of phage therapy for MDR infections.
  • Future advancements in phage therapy require robust clinical trials and standardized manufacturing for establishing efficacy.

Abstract

The proliferation of multidrug-resistant (MDR) ESKAPE pathogens—Enterococcus faecium, Staphylococcus aureus, Klebsiella pneumoniae, Acinetobacter baumannii, Pseudomonas aeruginosa, and Enterobacter spp.—constitutes a critical global health crisis, rendering conventional antibiotics increasingly ineffective. This comprehensive review evaluates the re-emerging potential of bacteriophage therapy as a personalized treatment for infections caused by these organisms. Phages, being viruses that specifically infect and lyse bacteria, offer significant advantages, including high specificity that spares host microbiota, self-replication at the infection site, and potent activity against biofilms. This paper synthesizes current preclinical and clinical evidence, including compassionate-use cases, for phage therapy against each of the ESKAPE pathogens. While case reports and small studies demonstrate considerable success, particularly in salvage therapy for otherwise untreatable infections, significant challenges remain. These include the narrow host range of phages, the potential for bacterial resistance, unpredictable pharmacokinetic and pharmacodynamic parameters, and a complex, non-harmonized regulatory landscape. The review highlights that phage–antibiotic synergy and the use of phage cocktails are promising strategies to overcome some of these limitations. Future progress in phage therapy will depend on standardized manufacturing, robust clinical trials to establish dosing and efficacy, and the development of adaptive regulatory pathways. Phage therapy is positioned not as a replacement for antibiotics but as a vital adjunctive tool in the armamentarium against MDR infections, heralding a move towards a more personalized approach to infectious disease management.

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Cite This Study

Marıno et al. (2025) studied this question.

synapsesocial.com/papers/68e6bc5f38ca8e474d54a016https://doi.org/10.3390/pathogens14101011
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