Combinations of Bacteriophage Are Efficacious against Multidrug-Resistant Pseudomonas aeruginosa and Enhance Sensitivity to Carbapenem Antibiotics

被引:2
作者
Kovacs, Christopher J. [1 ,2 ]
Rapp, Erika M. [1 ]
Rankin, William R. [1 ]
Mckenzie, Sophia M. [1 ]
Brasko, Brianna K. [1 ]
Hebert, Katherine E. [1 ]
Bachert, Beth A. [1 ]
Kick, Andrew R. [1 ]
Burpo, F. John [1 ]
Barnhill, Jason C. [1 ]
机构
[1] United States Mil Acad, West Point, NY 10996 USA
[2] Def Threat Reduct Agcy, Ft Belvoir, VA 22060 USA
来源
VIRUSES-BASEL | 2024年 / 16卷 / 07期
关键词
bacteriophage; phage therapy; antibiotics; antibiotic resistance; P; aeruginosa; biofilms; BIOFILM; THERAPY;
D O I
10.3390/v16071000
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The Gram-negative ESKAPE bacterium Pseudomonas aeruginosa has become a pathogen of serious concern due its extensive multi-drug resistance (MDR) profile, widespread incidences of hospital-acquired infections throughout the United States, and high occurrence in wound infections suffered by warfighters serving abroad. Bacteriophage (phage) therapy has received renewed attention as an alternative therapeutic option against recalcitrant bacterial infections, both as multi-phage cocktails and in combination with antibiotics as synergistic pairings. Environmental screening and phage enrichment has yielded three lytic viruses capable of infecting the MDR P. aeruginosa strain PAO1. Co-administration of each phage with the carbapenem antibiotics ertapenem, imipenem, and meropenem generated enhanced overall killing of bacteria beyond either phage or drug treatments alone. A combination cocktail of all three phages was completely inhibitory to growth, even without antibiotics. The same 3x phage cocktail also disrupted PAO1 biofilms, reducing biomass by over 75% compared to untreated biofilms. Further, the phage cocktail demonstrated broad efficacy as well, capable of infecting 33 out of 100 diverse clinical isolate strains of P. aeruginosa. Together, these results indicate a promising approach for designing layered medical countermeasures to potentiate antibiotic activity and possibly overcome resistance against recalcitrant, MDR bacteria such as P. aeruginosa. Combination therapy, either by synergistic phage-antibiotic pairings, or by phage cocktails, presents a means of controlling mutations that can allow for bacteria to gain a competitive edge.
引用
收藏
页数:14
相关论文
共 53 条
  • [1] How to Name and Classify Your Phage: An Informal Guide
    Adriaenssens, Evelien M.
    Brister, J. Rodney
    [J]. VIRUSES-BASEL, 2017, 9 (04):
  • [2] High failure rates in treatment of streptococcal periprosthetic joint infection
    Akguen, D.
    Trampuz, A.
    Perka, C.
    Renz, N.
    [J]. BONE & JOINT JOURNAL, 2017, 99-B (05) : 653 - 659
  • [3] Pathogenic factors of Pseudomonas aeruginosa - the role of biofilm in pathogenicity and as a target for phage therapy
    Al-Wrafy, Fairoz
    Brzozowska, Ewa
    Gorska, Sabina
    Gamian, Andrzej
    [J]. POSTEPY HIGIENY I MEDYCYNY DOSWIADCZALNEJ, 2017, 71 : 78 - 91
  • [4] CARD 2020: antibiotic resistome surveillance with the comprehensive antibiotic resistance database
    Alcock, Brian P.
    Raphenya, Amogelang R.
    Lau, Tammy T. Y.
    Tsang, Kara K.
    Bouchard, Megane
    Edalatmand, Arman
    Huynh, William
    Nguyen, Anna-Lisa, V
    Cheng, Annie A.
    Liu, Sihan
    Min, Sally Y.
    Miroshnichenko, Anatoly
    Tran, Hiu-Ki
    Werfalli, Rafik E.
    Nasir, Jalees A.
    Oloni, Martins
    Speicher, David J.
    Florescu, Alexandra
    Singh, Bhavya
    Faltyn, Mateusz
    Hernandez-Koutoucheva, Anastasia
    Sharma, Arjun N.
    Bordeleau, Emily
    Pawlowski, Andrew C.
    Zubyk, Haley L.
    Dooley, Damion
    Griffiths, Emma
    Maguire, Finlay
    Winsor, Geoff L.
    Beiko, Robert G.
    Brinkman, Fiona S. L.
    Hsiao, William W. L.
    Domselaar, Gary, V
    McArthur, Andrew G.
    [J]. NUCLEIC ACIDS RESEARCH, 2020, 48 (D1) : D517 - D525
  • [5] Phage Therapy in the Postantibiotic Era
    Altamirano, Fernando L. Gordillo
    Barr, Jeremy J.
    [J]. CLINICAL MICROBIOLOGY REVIEWS, 2019, 32 (02)
  • [6] Assessment of Phage-Mediated Inhibition and Removal of Multidrug-Resistant Pseudomonas aeruginosa Biofilm on Medical Implants
    Amankwah, Stephen
    Adisu, Mekonen
    Gorems, Kasahun
    Abdella, Kedir
    Kassa, Tesfaye
    [J]. INFECTION AND DRUG RESISTANCE, 2022, 15 : 2797 - 2811
  • [7] [Anonymous], 2023, Antibiotic Resistance Threats in the United States, DOI [10.15620/cdc:135850.2022, DOI 10.15620/CDC:82532, 10.15620/cdc:82532]
  • [8] Implant infections: adhesion, biofilm formation and immune evasion
    Arciola, Carla Renata
    Campoccia, Davide
    Montanaro, Lucio
    [J]. NATURE REVIEWS MICROBIOLOGY, 2018, 16 (07) : 397 - 409
  • [9] Teichoic acids are temporal and spatial regulators of peptidoglycan cross-linking in Staphylococcus aureus
    Atilano, Magda L.
    Pereira, Pedro M.
    Yates, James
    Reed, Patricia
    Veiga, Helena
    Pinho, Mariana G.
    Filipe, Sergio R.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 (44) : 18991 - 18996
  • [10] Carbapenemases in Gram-Negative Bacteria: Laboratory Detection and Clinical Significance
    Bedenic, Branka
    Plecko, Vanda
    Sardelic, Sanda
    Uzunovic, Selma
    Torkar, Karmen Godic
    [J]. BIOMED RESEARCH INTERNATIONAL, 2014, 2014