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Design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against Helicobacter pylori

Urease enzyme is a known therapeutic drug target for treatment of Helicobacter pylori infection due to its role in settlement and growth in gastric mucosa. In this study, we designed a new series of sulfonates and sulfamates bearing imidazo[2,1-b]thiazole scaffold that exhibit a potent inhibitory ac...

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Autores principales: Shahin, Afnan I., Zaib, Sumera, Zaraei, Seyed-Omar, Kedia, Reena A., Anbar, Hanan S., Younas, Muhammad Tayyab, Al-Tel, Taleb H., Khoder, Ghalia, El-Gamal, Mohammed I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10237672/
https://www.ncbi.nlm.nih.gov/pubmed/37267378
http://dx.doi.org/10.1371/journal.pone.0286684
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author Shahin, Afnan I.
Zaib, Sumera
Zaraei, Seyed-Omar
Kedia, Reena A.
Anbar, Hanan S.
Younas, Muhammad Tayyab
Al-Tel, Taleb H.
Khoder, Ghalia
El-Gamal, Mohammed I.
author_facet Shahin, Afnan I.
Zaib, Sumera
Zaraei, Seyed-Omar
Kedia, Reena A.
Anbar, Hanan S.
Younas, Muhammad Tayyab
Al-Tel, Taleb H.
Khoder, Ghalia
El-Gamal, Mohammed I.
author_sort Shahin, Afnan I.
collection PubMed
description Urease enzyme is a known therapeutic drug target for treatment of Helicobacter pylori infection due to its role in settlement and growth in gastric mucosa. In this study, we designed a new series of sulfonates and sulfamates bearing imidazo[2,1-b]thiazole scaffold that exhibit a potent inhibitory activity of urease enzyme. The most potent compound 2c inhibited urease with an IC(50) value of 2.94 ± 0.05 μM, which is 8-fold more potent than the thiourea positive control (IC(50) = 22.3 ± 0.031 μM). Enzyme kinetics study showed that compound 2c is a competitive inhibitor of urease. Molecular modeling studies of the most potent inhibitors in the urease active site suggested multiple binding interactions with different amino acid residues. Phenotypic screening of the developed compounds against H. pylori delivered molecules of that possess high potency (1a, 1d, 1h, 2d, and 2f) in comparison to the positive control, acetohydroxamic acid. Additional studies to investigate the selectivity of these compounds against AGS gastric cell line and E. coli were performed. Permeability of the most promising derivatives (1a, 1d, 1h, 2d, and 2f) in Caco-2 cell line, was investigated. As a result, compound 1d presented itself as a lead drug candidate since it exhibited a promising inhibition against urease with an IC(50) of 3.09 ± 0.07 μM, MIC value against H. pylori of 0.031 ± 0.011 mM, and SI against AGS of 6.05. Interestingly, compound 1d did not show activity against urease-negative E. coli and exhibited a low permeability in Caco-2 cells which supports the potential use of this compound for GIT infection without systemic effect.
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spelling pubmed-102376722023-06-03 Design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against Helicobacter pylori Shahin, Afnan I. Zaib, Sumera Zaraei, Seyed-Omar Kedia, Reena A. Anbar, Hanan S. Younas, Muhammad Tayyab Al-Tel, Taleb H. Khoder, Ghalia El-Gamal, Mohammed I. PLoS One Research Article Urease enzyme is a known therapeutic drug target for treatment of Helicobacter pylori infection due to its role in settlement and growth in gastric mucosa. In this study, we designed a new series of sulfonates and sulfamates bearing imidazo[2,1-b]thiazole scaffold that exhibit a potent inhibitory activity of urease enzyme. The most potent compound 2c inhibited urease with an IC(50) value of 2.94 ± 0.05 μM, which is 8-fold more potent than the thiourea positive control (IC(50) = 22.3 ± 0.031 μM). Enzyme kinetics study showed that compound 2c is a competitive inhibitor of urease. Molecular modeling studies of the most potent inhibitors in the urease active site suggested multiple binding interactions with different amino acid residues. Phenotypic screening of the developed compounds against H. pylori delivered molecules of that possess high potency (1a, 1d, 1h, 2d, and 2f) in comparison to the positive control, acetohydroxamic acid. Additional studies to investigate the selectivity of these compounds against AGS gastric cell line and E. coli were performed. Permeability of the most promising derivatives (1a, 1d, 1h, 2d, and 2f) in Caco-2 cell line, was investigated. As a result, compound 1d presented itself as a lead drug candidate since it exhibited a promising inhibition against urease with an IC(50) of 3.09 ± 0.07 μM, MIC value against H. pylori of 0.031 ± 0.011 mM, and SI against AGS of 6.05. Interestingly, compound 1d did not show activity against urease-negative E. coli and exhibited a low permeability in Caco-2 cells which supports the potential use of this compound for GIT infection without systemic effect. Public Library of Science 2023-06-02 /pmc/articles/PMC10237672/ /pubmed/37267378 http://dx.doi.org/10.1371/journal.pone.0286684 Text en © 2023 Shahin 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
Shahin, Afnan I.
Zaib, Sumera
Zaraei, Seyed-Omar
Kedia, Reena A.
Anbar, Hanan S.
Younas, Muhammad Tayyab
Al-Tel, Taleb H.
Khoder, Ghalia
El-Gamal, Mohammed I.
Design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against Helicobacter pylori
title Design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against Helicobacter pylori
title_full Design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against Helicobacter pylori
title_fullStr Design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against Helicobacter pylori
title_full_unstemmed Design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against Helicobacter pylori
title_short Design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against Helicobacter pylori
title_sort design and synthesis of novel anti-urease imidazothiazole derivatives with promising antibacterial activity against helicobacter pylori
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10237672/
https://www.ncbi.nlm.nih.gov/pubmed/37267378
http://dx.doi.org/10.1371/journal.pone.0286684
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