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Phage-antibiotic combinations against multidrug-resistant Pseudomonas aeruginosa in in vitro static and dynamic biofilm models.

Authors :
Holger DJ
El Ghali A
Bhutani N
Lev KL
Stamper K
Kebriaei R
Kunz Coyne AJ
Morrisette T
Shah R
Alexander J
Lehman SM
Rojas LJ
Marshall SH
Bonomo RA
Rybak MJ
Source :
Antimicrobial agents and chemotherapy [Antimicrob Agents Chemother] 2023 Nov 15; Vol. 67 (11), pp. e0057823. Date of Electronic Publication: 2023 Oct 19.
Publication Year :
2023

Abstract

Biofilm-producing Pseudomonas aeruginosa infections pose a severe threat to public health and are responsible for high morbidity and mortality. Phage-antibiotic combinations (PACs) are a promising strategy for combatting multidrug-resistant (MDR), extensively drug-resistant (XDR), and difficult-to-treat P. aeruginosa infections. Ten MDR/XDR P. aeruginosa strains and five P . aeruginosa -specific phages were genetically characterized and evaluated based upon their antibiotic susceptibilities and phage sensitivities. Two selected strains, AR351 (XDR) and I0003-1 (MDR), were treated singly and in combination with either a broad-spectrum or narrow-spectrum phage, phage EM-T3762627-2_AH (EM), or 14207, respectively, and bactericidal antibiotics of five classes in biofilm time-kill analyses. Synergy and/or bactericidal activity was demonstrated with all PACs against one or both drug-resistant P. aeruginosa strains (average reduction: -Δ3.32 log <subscript>10</subscript> CFU/cm <superscript>2</superscript> ). Slightly improved ciprofloxacin susceptibility was observed in both strains after exposure to phages (EM and 14207) in combination with ciprofloxacin and colistin. Based on phage cocktail optimization with four phages (EM, 14207, E20050-C (EC), and 109), we identified several effective phage-antibiotic cocktails for further analysis in a 4-day pharmacokinetic/pharmacodynamic in vitro biofilm model. Three-phage cocktail, EM + EC + 109, in combination with ciprofloxacin demonstrated the greatest biofilm reduction against AR351 (-Δ4.70 log <subscript>10</subscript> CFU/cm <superscript>2</superscript> from baseline). Of remarkable interest, the addition of phage 109 prevented phage resistance development to EM and EC in the biofilm model. PACs can demonstrate synergy and offer enhanced eradication of biofilm against drug-resistant P. aeruginosa while preventing the emergence of resistance.<br />Competing Interests: M.J.R. received research support, consulted or participated in a speaker bureau for AbbVie, Basilea, Entasis, La Jolla, Merck, Paratek, Shionogi, and T2 Biosystems, and was partially funded by NIAID R21AI163726.

Details

Language :
English
ISSN :
1098-6596
Volume :
67
Issue :
11
Database :
MEDLINE
Journal :
Antimicrobial agents and chemotherapy
Publication Type :
Academic Journal
Accession number :
37855639
Full Text :
https://doi.org/10.1128/aac.00578-23