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Galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against S. aureus

Siderophore-antibiotic drug conjugates are considered potent tools to deliver and potentiate the antibacterial activity of antibiotics, but only few have seen preclinical and clinical success. Here, we introduce the gallium(iii) complex of a ciprofloxacin-functionalized linear desferrichrome, Galbof...

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Autores principales: Pandey, Apurva, Śmiłowicz, Dariusz, Boros, Eszter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580130/
https://www.ncbi.nlm.nih.gov/pubmed/34881006
http://dx.doi.org/10.1039/d1sc04283a
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author Pandey, Apurva
Śmiłowicz, Dariusz
Boros, Eszter
author_facet Pandey, Apurva
Śmiłowicz, Dariusz
Boros, Eszter
author_sort Pandey, Apurva
collection PubMed
description Siderophore-antibiotic drug conjugates are considered potent tools to deliver and potentiate the antibacterial activity of antibiotics, but only few have seen preclinical and clinical success. Here, we introduce the gallium(iii) complex of a ciprofloxacin-functionalized linear desferrichrome, Galbofloxacin, with a cleavable serine linker as a potent therapeutic for S. aureus bacterial infections. We employed characterization using in vitro inhibitory assays, radiochemical, tracer-based uptake and pharmacokinetic assessment of our lead compound, culminating in in vivo efficacy studies in a soft tissue model of infection. Galbofloxacin exhibits a minimum inhibitory concentration of (MIC(98)) 93 nM in wt S. aureus, exceeding the potency of the parent antibiotic ciprofloxacin (0.9 μM). Galbofloxacin is a protease substrate that can release the antibiotic payload in the bacterial cytoplasm. Radiochemical experiments with wt bacterial strains reveal that (67)Galbofloxacin is taken up efficiently using siderophore mediated, active uptake. Biodistribution of (67)Galbofloxacin in a mouse model of intramuscular S. aureus infection revealed renal clearance and enhanced uptake in infected muscle when compared to (67)Ga-citrate, which showed no selectivity. A subsequent in vivo drug therapy study reveals efficient reduction in S. aureus infection burden and sustained survival with Galbofloxacin for 7 days. Ciprofloxacin had no treatment efficacy at identical molecular dose (9.3 μmol kg(−1)) and resulted in death of all study animals in <24 hours. Taken together, the favorable bacterial growth inhibitory, pharmacokinetic and in vivo efficacy properties qualify Galbofloxacin as the first rationally designed Ga-coordination complex for the management of S. aureus bacterial infections.
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spelling pubmed-85801302021-12-07 Galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against S. aureus Pandey, Apurva Śmiłowicz, Dariusz Boros, Eszter Chem Sci Chemistry Siderophore-antibiotic drug conjugates are considered potent tools to deliver and potentiate the antibacterial activity of antibiotics, but only few have seen preclinical and clinical success. Here, we introduce the gallium(iii) complex of a ciprofloxacin-functionalized linear desferrichrome, Galbofloxacin, with a cleavable serine linker as a potent therapeutic for S. aureus bacterial infections. We employed characterization using in vitro inhibitory assays, radiochemical, tracer-based uptake and pharmacokinetic assessment of our lead compound, culminating in in vivo efficacy studies in a soft tissue model of infection. Galbofloxacin exhibits a minimum inhibitory concentration of (MIC(98)) 93 nM in wt S. aureus, exceeding the potency of the parent antibiotic ciprofloxacin (0.9 μM). Galbofloxacin is a protease substrate that can release the antibiotic payload in the bacterial cytoplasm. Radiochemical experiments with wt bacterial strains reveal that (67)Galbofloxacin is taken up efficiently using siderophore mediated, active uptake. Biodistribution of (67)Galbofloxacin in a mouse model of intramuscular S. aureus infection revealed renal clearance and enhanced uptake in infected muscle when compared to (67)Ga-citrate, which showed no selectivity. A subsequent in vivo drug therapy study reveals efficient reduction in S. aureus infection burden and sustained survival with Galbofloxacin for 7 days. Ciprofloxacin had no treatment efficacy at identical molecular dose (9.3 μmol kg(−1)) and resulted in death of all study animals in <24 hours. Taken together, the favorable bacterial growth inhibitory, pharmacokinetic and in vivo efficacy properties qualify Galbofloxacin as the first rationally designed Ga-coordination complex for the management of S. aureus bacterial infections. The Royal Society of Chemistry 2021-10-19 /pmc/articles/PMC8580130/ /pubmed/34881006 http://dx.doi.org/10.1039/d1sc04283a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Pandey, Apurva
Śmiłowicz, Dariusz
Boros, Eszter
Galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against S. aureus
title Galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against S. aureus
title_full Galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against S. aureus
title_fullStr Galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against S. aureus
title_full_unstemmed Galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against S. aureus
title_short Galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against S. aureus
title_sort galbofloxacin: a xenometal-antibiotic with potent in vitro and in vivo efficacy against s. aureus
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580130/
https://www.ncbi.nlm.nih.gov/pubmed/34881006
http://dx.doi.org/10.1039/d1sc04283a
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AT boroseszter galbofloxacinaxenometalantibioticwithpotentinvitroandinvivoefficacyagainstsaureus