Cargando…

Phage Cocktails with Daptomycin and Ampicillin Eradicates Biofilm-Embedded Multidrug-Resistant Enterococcus faecium with Preserved Phage Susceptibility

Multidrug-resistant (MDR) Enterococcus faecium is a challenging nosocomial pathogen known to colonize medical device surfaces and form biofilms. Bacterio (phages) may constitute an emerging anti-infective option for refractory, biofilm-mediated infections. This study evaluates eight MDR E. faecium s...

Descripción completa

Detalles Bibliográficos
Autores principales: Coyne, Ashlan J. Kunz, Stamper, Kyle, Kebriaei, Razieh, Holger, Dana J., El Ghali, Amer, Morrisette, Taylor, Biswas, Biswajit, Wilson, Melanie, Deschenes, Michael V., Canfield, Gregory S., Duerkop, Breck A., Arias, Cesar A., Rybak, Michael J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9495159/
https://www.ncbi.nlm.nih.gov/pubmed/36139953
http://dx.doi.org/10.3390/antibiotics11091175
_version_ 1784793956022747136
author Coyne, Ashlan J. Kunz
Stamper, Kyle
Kebriaei, Razieh
Holger, Dana J.
El Ghali, Amer
Morrisette, Taylor
Biswas, Biswajit
Wilson, Melanie
Deschenes, Michael V.
Canfield, Gregory S.
Duerkop, Breck A.
Arias, Cesar A.
Rybak, Michael J.
author_facet Coyne, Ashlan J. Kunz
Stamper, Kyle
Kebriaei, Razieh
Holger, Dana J.
El Ghali, Amer
Morrisette, Taylor
Biswas, Biswajit
Wilson, Melanie
Deschenes, Michael V.
Canfield, Gregory S.
Duerkop, Breck A.
Arias, Cesar A.
Rybak, Michael J.
author_sort Coyne, Ashlan J. Kunz
collection PubMed
description Multidrug-resistant (MDR) Enterococcus faecium is a challenging nosocomial pathogen known to colonize medical device surfaces and form biofilms. Bacterio (phages) may constitute an emerging anti-infective option for refractory, biofilm-mediated infections. This study evaluates eight MDR E. faecium strains for biofilm production and phage susceptibility against nine phages. Two E. faecium strains isolated from patients with bacteremia and identified to be biofilm producers, R497 (daptomycin (DAP)-resistant) and HOU503 (DAP-susceptible dose-dependent (SDD), in addition to four phages with the broadest host ranges (ATCC 113, NV-497, NV-503-01, NV-503-02) were selected for further experiments. Preliminary phage-antibiotic screening was performed with modified checkerboard minimum biofilm inhibitory concentration (MBIC) assays to efficiently screen for bacterial killing and phage-antibiotic synergy (PAS). Data were compared by one-way ANOVA and Tukey (HSD) tests. Time kill analyses (TKA) were performed against R497 and HOU503 with DAP at 0.5× MBIC, ampicillin (AMP) at free peak = 72 µg/mL, and phage at a multiplicity of infection (MOI) of 0.01. In 24 h TKA against R497, phage-antibiotic combinations (PAC) with DAP, AMP, or DAP + AMP combined with 3- or 4-phage cocktails demonstrated significant killing compared to the most effective double combination (ANOVA range of mean differences 2.998 to 3.102 log(10) colony forming units (CFU)/mL; p = 0.011, 2.548 to 2.868 log(10) colony forming units (CFU)/mL; p = 0.023, and 2.006 to 2.329 log(10) colony forming units (CFU)/mL; p = 0.039, respectively), with preserved phage susceptibility identified in regimens with 3-phage cocktails containing NV-497 and the 4-phage cocktail. Against HOU503, AMP combined with any 3- or 4-phage cocktail and DAP + AMP combined with the 3-phage cocktail ATCC 113 + NV-497 + NV-503-01 demonstrated significant PAS and bactericidal activity (ANOVA range of mean differences 2.251 to 2.466 log(10) colony forming units (CFU)/mL; p = 0.044 and 2.119 to 2.350 log(10) colony forming units (CFU)/mL; p = 0.028, respectively), however, only PAC with DAP + AMP maintained phage susceptibility at the end of 24 h TKA. R497 and HOU503 exposure to DAP, AMP, or DAP + AMP in the presence of single phage or phage cocktail resulted in antibiotic resistance stabilization (i.e., no antibiotic MBIC elevation compared to baseline) without identified antibiotic MBIC reversion (i.e., lowering of antibiotic MBIC compared to baseline in DAP-resistant and DAP-SDD isolates) at the end of 24 h TKA. In conclusion, against DAP-resistant R497 and DAP-SDD HOU503 E. faecium clinical blood isolates, the use of DAP + AMP combined with 3- and 4-phage cocktails effectively eradicated biofilm-embedded MDR E. faecium without altering antibiotic MBIC or phage susceptibility compared to baseline.
format Online
Article
Text
id pubmed-9495159
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-94951592022-09-23 Phage Cocktails with Daptomycin and Ampicillin Eradicates Biofilm-Embedded Multidrug-Resistant Enterococcus faecium with Preserved Phage Susceptibility Coyne, Ashlan J. Kunz Stamper, Kyle Kebriaei, Razieh Holger, Dana J. El Ghali, Amer Morrisette, Taylor Biswas, Biswajit Wilson, Melanie Deschenes, Michael V. Canfield, Gregory S. Duerkop, Breck A. Arias, Cesar A. Rybak, Michael J. Antibiotics (Basel) Article Multidrug-resistant (MDR) Enterococcus faecium is a challenging nosocomial pathogen known to colonize medical device surfaces and form biofilms. Bacterio (phages) may constitute an emerging anti-infective option for refractory, biofilm-mediated infections. This study evaluates eight MDR E. faecium strains for biofilm production and phage susceptibility against nine phages. Two E. faecium strains isolated from patients with bacteremia and identified to be biofilm producers, R497 (daptomycin (DAP)-resistant) and HOU503 (DAP-susceptible dose-dependent (SDD), in addition to four phages with the broadest host ranges (ATCC 113, NV-497, NV-503-01, NV-503-02) were selected for further experiments. Preliminary phage-antibiotic screening was performed with modified checkerboard minimum biofilm inhibitory concentration (MBIC) assays to efficiently screen for bacterial killing and phage-antibiotic synergy (PAS). Data were compared by one-way ANOVA and Tukey (HSD) tests. Time kill analyses (TKA) were performed against R497 and HOU503 with DAP at 0.5× MBIC, ampicillin (AMP) at free peak = 72 µg/mL, and phage at a multiplicity of infection (MOI) of 0.01. In 24 h TKA against R497, phage-antibiotic combinations (PAC) with DAP, AMP, or DAP + AMP combined with 3- or 4-phage cocktails demonstrated significant killing compared to the most effective double combination (ANOVA range of mean differences 2.998 to 3.102 log(10) colony forming units (CFU)/mL; p = 0.011, 2.548 to 2.868 log(10) colony forming units (CFU)/mL; p = 0.023, and 2.006 to 2.329 log(10) colony forming units (CFU)/mL; p = 0.039, respectively), with preserved phage susceptibility identified in regimens with 3-phage cocktails containing NV-497 and the 4-phage cocktail. Against HOU503, AMP combined with any 3- or 4-phage cocktail and DAP + AMP combined with the 3-phage cocktail ATCC 113 + NV-497 + NV-503-01 demonstrated significant PAS and bactericidal activity (ANOVA range of mean differences 2.251 to 2.466 log(10) colony forming units (CFU)/mL; p = 0.044 and 2.119 to 2.350 log(10) colony forming units (CFU)/mL; p = 0.028, respectively), however, only PAC with DAP + AMP maintained phage susceptibility at the end of 24 h TKA. R497 and HOU503 exposure to DAP, AMP, or DAP + AMP in the presence of single phage or phage cocktail resulted in antibiotic resistance stabilization (i.e., no antibiotic MBIC elevation compared to baseline) without identified antibiotic MBIC reversion (i.e., lowering of antibiotic MBIC compared to baseline in DAP-resistant and DAP-SDD isolates) at the end of 24 h TKA. In conclusion, against DAP-resistant R497 and DAP-SDD HOU503 E. faecium clinical blood isolates, the use of DAP + AMP combined with 3- and 4-phage cocktails effectively eradicated biofilm-embedded MDR E. faecium without altering antibiotic MBIC or phage susceptibility compared to baseline. MDPI 2022-08-30 /pmc/articles/PMC9495159/ /pubmed/36139953 http://dx.doi.org/10.3390/antibiotics11091175 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Coyne, Ashlan J. Kunz
Stamper, Kyle
Kebriaei, Razieh
Holger, Dana J.
El Ghali, Amer
Morrisette, Taylor
Biswas, Biswajit
Wilson, Melanie
Deschenes, Michael V.
Canfield, Gregory S.
Duerkop, Breck A.
Arias, Cesar A.
Rybak, Michael J.
Phage Cocktails with Daptomycin and Ampicillin Eradicates Biofilm-Embedded Multidrug-Resistant Enterococcus faecium with Preserved Phage Susceptibility
title Phage Cocktails with Daptomycin and Ampicillin Eradicates Biofilm-Embedded Multidrug-Resistant Enterococcus faecium with Preserved Phage Susceptibility
title_full Phage Cocktails with Daptomycin and Ampicillin Eradicates Biofilm-Embedded Multidrug-Resistant Enterococcus faecium with Preserved Phage Susceptibility
title_fullStr Phage Cocktails with Daptomycin and Ampicillin Eradicates Biofilm-Embedded Multidrug-Resistant Enterococcus faecium with Preserved Phage Susceptibility
title_full_unstemmed Phage Cocktails with Daptomycin and Ampicillin Eradicates Biofilm-Embedded Multidrug-Resistant Enterococcus faecium with Preserved Phage Susceptibility
title_short Phage Cocktails with Daptomycin and Ampicillin Eradicates Biofilm-Embedded Multidrug-Resistant Enterococcus faecium with Preserved Phage Susceptibility
title_sort phage cocktails with daptomycin and ampicillin eradicates biofilm-embedded multidrug-resistant enterococcus faecium with preserved phage susceptibility
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9495159/
https://www.ncbi.nlm.nih.gov/pubmed/36139953
http://dx.doi.org/10.3390/antibiotics11091175
work_keys_str_mv AT coyneashlanjkunz phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT stamperkyle phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT kebriaeirazieh phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT holgerdanaj phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT elghaliamer phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT morrisettetaylor phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT biswasbiswajit phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT wilsonmelanie phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT deschenesmichaelv phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT canfieldgregorys phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT duerkopbrecka phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT ariascesara phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility
AT rybakmichaelj phagecocktailswithdaptomycinandampicillineradicatesbiofilmembeddedmultidrugresistantenterococcusfaeciumwithpreservedphagesusceptibility