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Addressing the Research and Development Gaps in Modern Phage Therapy

  • Paul E. Turner
  • , Joana Azeredo
  • , Ed T. Buurman
  • , Sabrina Green
  • , Jakob Krause Haaber
  • , Douglas Haggstrom
  • , Koichi Kameda de Figueiredo Carvalho
  • , Claas Kirchhelle
  • , Mercedes Gonzalez Moreno
  • , Jean Paul Pirnay
  • , Mirza Alas Portillo
    • Yale University
    • Yale University School of Medicine
    • Universidade do Minho
    • LABBELS–Associate Laboratory
    • Boston University
    • KU Leuven
    • SNIPR Biome ApS
    • INCubator for Antibiotic Therapies Europe (INCATE)
    • University of Basel
    • Centre National de la Recherche Scientifique
    • University College Dublin
    • Hans Knoll Institute

    Research output: Contribution to journalArticlepeer-review

    27 Citations (Scopus)

    Abstract

    Antimicrobial resistance is on the rise globally, prompting increased research and development (R&D) of phage therapy as a strategy to address difficult-to-treat bacterial infections. We review the current state of phage therapy research, including major operational, epistemic, and biological challenges for phage R&D, and discuss some new approaches to developing the technology motivated by recent breakthroughs such as artificial intelligence and synthetic phage production. In addition, we contextualize these R&D challenges and opportunities in light of the ongoing predicament of commercial antimicrobial innovation and current public-private efforts to reinvigorate the pipeline of antimicrobial drug discovery. We conclude with reflections on the potential for new phage therapies to be readily accessible across all income contexts to better ensure broad patient access, and consider possible alternatives to current public and public-private solutions for phage therapy and production.

    Original languageEnglish
    Pages (from-to)30-39
    Number of pages10
    JournalPHAGE: Therapy, Applications, and Research
    Volume5
    Issue number1
    DOIs
    Publication statusPublished - 1 Mar 2024

    Keywords

    • antimicrobial resistance
    • biofilm
    • biotechnology
    • patient access
    • personalized medicine

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