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Improving Antimicrobial Activity and Physico-Chemical Properties by Isosteric Replacement of 2-Aminothiazole with 2-Aminooxazole

Antimicrobial drug resistance is currently one of the most critical health issues. Pathogens resistant to last-resort antibiotics are increasing, and very few effective antibacterial agents have been introduced in recent years. The promising drug candidates are often discontinued in the primary stag...

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Autores principales: Juhás, Martin, Bachtíková, Andrea, Nawrot, Daria Elżbieta, Hatoková, Paulína, Pallabothula, Vinod Sukanth Kumar, Diepoltová, Adéla, Janďourek, Ondřej, Bárta, Pavel, Konečná, Klára, Paterová, Pavla, Šesták, Vít, Zitko, Jan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143880/
https://www.ncbi.nlm.nih.gov/pubmed/35631406
http://dx.doi.org/10.3390/ph15050580
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author Juhás, Martin
Bachtíková, Andrea
Nawrot, Daria Elżbieta
Hatoková, Paulína
Pallabothula, Vinod Sukanth Kumar
Diepoltová, Adéla
Janďourek, Ondřej
Bárta, Pavel
Konečná, Klára
Paterová, Pavla
Šesták, Vít
Zitko, Jan
author_facet Juhás, Martin
Bachtíková, Andrea
Nawrot, Daria Elżbieta
Hatoková, Paulína
Pallabothula, Vinod Sukanth Kumar
Diepoltová, Adéla
Janďourek, Ondřej
Bárta, Pavel
Konečná, Klára
Paterová, Pavla
Šesták, Vít
Zitko, Jan
author_sort Juhás, Martin
collection PubMed
description Antimicrobial drug resistance is currently one of the most critical health issues. Pathogens resistant to last-resort antibiotics are increasing, and very few effective antibacterial agents have been introduced in recent years. The promising drug candidates are often discontinued in the primary stages of the drug discovery pipeline due to their unspecific reactivity (PAINS), toxicity, insufficient stability, or low water solubility. In this work, we investigated a series of substituted N-oxazolyl- and N-thiazolylcarboxamides of various pyridinecarboxylic acids. Final compounds were tested against several microbial species. In general, oxazole-containing compounds showed high activity against mycobacteria, especially Mycobacterium tuberculosis (best MIC(H37Ra) = 3.13 µg/mL), including the multidrug-resistant strains. Promising activities against various bacterial and fungal strains were also observed. None of the compounds was significantly cytotoxic against the HepG2 cell line. Experimental measurement of lipophilicity parameter log k’(w) and water solubility (log S) confirmed significantly (typically two orders in logarithmic scale) increased hydrophilicity/water solubility of oxazole derivatives in comparison with their thiazole isosteres. Mycobacterial β-ketoacyl-acyl carrier protein synthase III (FabH) was suggested as a probable target by molecular docking and molecular dynamics simulations.
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spelling pubmed-91438802022-05-29 Improving Antimicrobial Activity and Physico-Chemical Properties by Isosteric Replacement of 2-Aminothiazole with 2-Aminooxazole Juhás, Martin Bachtíková, Andrea Nawrot, Daria Elżbieta Hatoková, Paulína Pallabothula, Vinod Sukanth Kumar Diepoltová, Adéla Janďourek, Ondřej Bárta, Pavel Konečná, Klára Paterová, Pavla Šesták, Vít Zitko, Jan Pharmaceuticals (Basel) Article Antimicrobial drug resistance is currently one of the most critical health issues. Pathogens resistant to last-resort antibiotics are increasing, and very few effective antibacterial agents have been introduced in recent years. The promising drug candidates are often discontinued in the primary stages of the drug discovery pipeline due to their unspecific reactivity (PAINS), toxicity, insufficient stability, or low water solubility. In this work, we investigated a series of substituted N-oxazolyl- and N-thiazolylcarboxamides of various pyridinecarboxylic acids. Final compounds were tested against several microbial species. In general, oxazole-containing compounds showed high activity against mycobacteria, especially Mycobacterium tuberculosis (best MIC(H37Ra) = 3.13 µg/mL), including the multidrug-resistant strains. Promising activities against various bacterial and fungal strains were also observed. None of the compounds was significantly cytotoxic against the HepG2 cell line. Experimental measurement of lipophilicity parameter log k’(w) and water solubility (log S) confirmed significantly (typically two orders in logarithmic scale) increased hydrophilicity/water solubility of oxazole derivatives in comparison with their thiazole isosteres. Mycobacterial β-ketoacyl-acyl carrier protein synthase III (FabH) was suggested as a probable target by molecular docking and molecular dynamics simulations. MDPI 2022-05-06 /pmc/articles/PMC9143880/ /pubmed/35631406 http://dx.doi.org/10.3390/ph15050580 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
Juhás, Martin
Bachtíková, Andrea
Nawrot, Daria Elżbieta
Hatoková, Paulína
Pallabothula, Vinod Sukanth Kumar
Diepoltová, Adéla
Janďourek, Ondřej
Bárta, Pavel
Konečná, Klára
Paterová, Pavla
Šesták, Vít
Zitko, Jan
Improving Antimicrobial Activity and Physico-Chemical Properties by Isosteric Replacement of 2-Aminothiazole with 2-Aminooxazole
title Improving Antimicrobial Activity and Physico-Chemical Properties by Isosteric Replacement of 2-Aminothiazole with 2-Aminooxazole
title_full Improving Antimicrobial Activity and Physico-Chemical Properties by Isosteric Replacement of 2-Aminothiazole with 2-Aminooxazole
title_fullStr Improving Antimicrobial Activity and Physico-Chemical Properties by Isosteric Replacement of 2-Aminothiazole with 2-Aminooxazole
title_full_unstemmed Improving Antimicrobial Activity and Physico-Chemical Properties by Isosteric Replacement of 2-Aminothiazole with 2-Aminooxazole
title_short Improving Antimicrobial Activity and Physico-Chemical Properties by Isosteric Replacement of 2-Aminothiazole with 2-Aminooxazole
title_sort improving antimicrobial activity and physico-chemical properties by isosteric replacement of 2-aminothiazole with 2-aminooxazole
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143880/
https://www.ncbi.nlm.nih.gov/pubmed/35631406
http://dx.doi.org/10.3390/ph15050580
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