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Design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents

BACKGROUND AND PURPOSE: The preponderance of microbial infections remains a global challenge. In the present study, synthesis of novel cysteine-based antimicrobial agents and their biological evaluation is reported. EXPERIMENTAL APPROACH: The reaction of p-toluenesulphonyl chloride with cysteine aff...

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Autores principales: Egbujor, Melford C., Okoro, Uchechukwu C., Okafor, Sunday N., Egu, Samuel A., Amasiatu, Ifeanyi S., Egwuatu, Pius I., Umeh, Odera R., Ibo, Eziafakaego M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8621839/
https://www.ncbi.nlm.nih.gov/pubmed/34909048
http://dx.doi.org/10.4103/1735-5362.329930
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author Egbujor, Melford C.
Okoro, Uchechukwu C.
Okafor, Sunday N.
Egu, Samuel A.
Amasiatu, Ifeanyi S.
Egwuatu, Pius I.
Umeh, Odera R.
Ibo, Eziafakaego M.
author_facet Egbujor, Melford C.
Okoro, Uchechukwu C.
Okafor, Sunday N.
Egu, Samuel A.
Amasiatu, Ifeanyi S.
Egwuatu, Pius I.
Umeh, Odera R.
Ibo, Eziafakaego M.
author_sort Egbujor, Melford C.
collection PubMed
description BACKGROUND AND PURPOSE: The preponderance of microbial infections remains a global challenge. In the present study, synthesis of novel cysteine-based antimicrobial agents and their biological evaluation is reported. EXPERIMENTAL APPROACH: The reaction of p-toluenesulphonyl chloride with cysteine afforded 2-{[(4-methylphenyl)sulphonyl]amino}-3-sulphanylpropanoic acid (3) which was acetylated based on Lumiere-Barbier method using acetic anhydride. The ammonolysis of the acetylated compound (4) gave the carboxamide derivative (5) which reacted with aniline, aminopyridine and diaminopyrimidine via nickel catalyzed Buchwald-Hartwig amidation reaction to afford compounds 6a, 6b, and 6c, respectively. The compounds were characterized using FTIR, (1)H-NMR, (13)C-NMR, and elemental analysis. The in vitro antimicrobial activities were determined. Their physicochemical properties were generated in silico and the molecular docking studied bacterial and fungal infections. FINDINGS/RESULTS: Compounds 4, 6b, and 6c exhibited excellent in vitro antibacterial activities while compound 4 had the best antifungal activities. From the in silico antimicrobial results, compound 3 had a better binding affinity (-10.95 kcal/mol) than penicillin (-10.89 kcal/mol) while compounds 3 and 4 had binding affinities (-10.07 and -10.62kcal/mol) comparable to ketoconazole (-10.85 kcal/mol). CONCLUSION AND IMPLICATION: All the synthesized compounds exhibited significant antibacterial and antifungal activities and were confirmed to be potential antimicrobial agents.
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spelling pubmed-86218392021-12-13 Design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents Egbujor, Melford C. Okoro, Uchechukwu C. Okafor, Sunday N. Egu, Samuel A. Amasiatu, Ifeanyi S. Egwuatu, Pius I. Umeh, Odera R. Ibo, Eziafakaego M. Res Pharm Sci Original Article BACKGROUND AND PURPOSE: The preponderance of microbial infections remains a global challenge. In the present study, synthesis of novel cysteine-based antimicrobial agents and their biological evaluation is reported. EXPERIMENTAL APPROACH: The reaction of p-toluenesulphonyl chloride with cysteine afforded 2-{[(4-methylphenyl)sulphonyl]amino}-3-sulphanylpropanoic acid (3) which was acetylated based on Lumiere-Barbier method using acetic anhydride. The ammonolysis of the acetylated compound (4) gave the carboxamide derivative (5) which reacted with aniline, aminopyridine and diaminopyrimidine via nickel catalyzed Buchwald-Hartwig amidation reaction to afford compounds 6a, 6b, and 6c, respectively. The compounds were characterized using FTIR, (1)H-NMR, (13)C-NMR, and elemental analysis. The in vitro antimicrobial activities were determined. Their physicochemical properties were generated in silico and the molecular docking studied bacterial and fungal infections. FINDINGS/RESULTS: Compounds 4, 6b, and 6c exhibited excellent in vitro antibacterial activities while compound 4 had the best antifungal activities. From the in silico antimicrobial results, compound 3 had a better binding affinity (-10.95 kcal/mol) than penicillin (-10.89 kcal/mol) while compounds 3 and 4 had binding affinities (-10.07 and -10.62kcal/mol) comparable to ketoconazole (-10.85 kcal/mol). CONCLUSION AND IMPLICATION: All the synthesized compounds exhibited significant antibacterial and antifungal activities and were confirmed to be potential antimicrobial agents. Wolters Kluwer - Medknow 2021-11-11 /pmc/articles/PMC8621839/ /pubmed/34909048 http://dx.doi.org/10.4103/1735-5362.329930 Text en Copyright: © 2021 Research in Pharmaceutical Sciences https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Original Article
Egbujor, Melford C.
Okoro, Uchechukwu C.
Okafor, Sunday N.
Egu, Samuel A.
Amasiatu, Ifeanyi S.
Egwuatu, Pius I.
Umeh, Odera R.
Ibo, Eziafakaego M.
Design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents
title Design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents
title_full Design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents
title_fullStr Design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents
title_full_unstemmed Design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents
title_short Design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents
title_sort design, synthesis, and molecular docking of cysteine-based sulphonamide derivatives as antimicrobial agents
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8621839/
https://www.ncbi.nlm.nih.gov/pubmed/34909048
http://dx.doi.org/10.4103/1735-5362.329930
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