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Azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (CMS) and polymyxin B against Klebsiella pneumonia

Novel antibiotic combinations may act synergistically to inhibit the growth of multidrug-resistant bacterial pathogens but predicting which combination will be successful is difficult, and standard antimicrobial susceptibility testing may not identify important physiological differences between plan...

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Autores principales: Moshynets, Olena V., Baranovskyi, Taras P., Cameron, Scott, Iungin, Olga S., Pokholenko, Ianina, Jerdan, Robyn, Kamyshnyi, Aleksandr, Krikunov, Alexey A., Potochilova, Viktoria V., Rudnieva, Kateryna L., Spiers, Andrew J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9249213/
https://www.ncbi.nlm.nih.gov/pubmed/35776759
http://dx.doi.org/10.1371/journal.pone.0270983
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author Moshynets, Olena V.
Baranovskyi, Taras P.
Cameron, Scott
Iungin, Olga S.
Pokholenko, Ianina
Jerdan, Robyn
Kamyshnyi, Aleksandr
Krikunov, Alexey A.
Potochilova, Viktoria V.
Rudnieva, Kateryna L.
Spiers, Andrew J.
author_facet Moshynets, Olena V.
Baranovskyi, Taras P.
Cameron, Scott
Iungin, Olga S.
Pokholenko, Ianina
Jerdan, Robyn
Kamyshnyi, Aleksandr
Krikunov, Alexey A.
Potochilova, Viktoria V.
Rudnieva, Kateryna L.
Spiers, Andrew J.
author_sort Moshynets, Olena V.
collection PubMed
description Novel antibiotic combinations may act synergistically to inhibit the growth of multidrug-resistant bacterial pathogens but predicting which combination will be successful is difficult, and standard antimicrobial susceptibility testing may not identify important physiological differences between planktonic free-swimming and biofilm-protected surface-attached sessile cells. Using a nominally macrolide-resistant model Klebsiella pneumoniae strain (ATCC 10031) we demonstrate the effectiveness of several macrolides in inhibiting biofilm growth in multi-well plates, and the ability of azithromycin (AZM) to improve the effectiveness of the antibacterial last-agent-of-choice for K. pneumoniae infections, colistin methanesulfonate (CMS), against biofilms. This synergistic action was also seen in biofilm tests of several K. pneumoniae hospital isolates and could also be identified in polymyxin B disc-diffusion assays on azithromycin plates. Our work highlights the complexity of antimicrobial-resistance in bacterial pathogens and the need to test antibiotics with biofilm models where potential synergies might provide new therapeutic opportunities not seen in liquid culture or colony-based assays.
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spelling pubmed-92492132022-07-02 Azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (CMS) and polymyxin B against Klebsiella pneumonia Moshynets, Olena V. Baranovskyi, Taras P. Cameron, Scott Iungin, Olga S. Pokholenko, Ianina Jerdan, Robyn Kamyshnyi, Aleksandr Krikunov, Alexey A. Potochilova, Viktoria V. Rudnieva, Kateryna L. Spiers, Andrew J. PLoS One Research Article Novel antibiotic combinations may act synergistically to inhibit the growth of multidrug-resistant bacterial pathogens but predicting which combination will be successful is difficult, and standard antimicrobial susceptibility testing may not identify important physiological differences between planktonic free-swimming and biofilm-protected surface-attached sessile cells. Using a nominally macrolide-resistant model Klebsiella pneumoniae strain (ATCC 10031) we demonstrate the effectiveness of several macrolides in inhibiting biofilm growth in multi-well plates, and the ability of azithromycin (AZM) to improve the effectiveness of the antibacterial last-agent-of-choice for K. pneumoniae infections, colistin methanesulfonate (CMS), against biofilms. This synergistic action was also seen in biofilm tests of several K. pneumoniae hospital isolates and could also be identified in polymyxin B disc-diffusion assays on azithromycin plates. Our work highlights the complexity of antimicrobial-resistance in bacterial pathogens and the need to test antibiotics with biofilm models where potential synergies might provide new therapeutic opportunities not seen in liquid culture or colony-based assays. Public Library of Science 2022-07-01 /pmc/articles/PMC9249213/ /pubmed/35776759 http://dx.doi.org/10.1371/journal.pone.0270983 Text en © 2022 Moshynets et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Moshynets, Olena V.
Baranovskyi, Taras P.
Cameron, Scott
Iungin, Olga S.
Pokholenko, Ianina
Jerdan, Robyn
Kamyshnyi, Aleksandr
Krikunov, Alexey A.
Potochilova, Viktoria V.
Rudnieva, Kateryna L.
Spiers, Andrew J.
Azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (CMS) and polymyxin B against Klebsiella pneumonia
title Azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (CMS) and polymyxin B against Klebsiella pneumonia
title_full Azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (CMS) and polymyxin B against Klebsiella pneumonia
title_fullStr Azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (CMS) and polymyxin B against Klebsiella pneumonia
title_full_unstemmed Azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (CMS) and polymyxin B against Klebsiella pneumonia
title_short Azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (CMS) and polymyxin B against Klebsiella pneumonia
title_sort azithromycin possesses biofilm–inhibitory activity and potentiates non-bactericidal colistin methanesulfonate (cms) and polymyxin b against klebsiella pneumonia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9249213/
https://www.ncbi.nlm.nih.gov/pubmed/35776759
http://dx.doi.org/10.1371/journal.pone.0270983
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