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Synthesis and Decarboxylation of Functionalized 2-Pyridone-3-carboxylic Acids and Evaluation of their Antimicrobial Activity and Molecular Docking

The functionalized 2-pyridone-3-carboxylic acids were synthesized starting from 3-formylchromone. Meanwhile, a decarboxylation reaction of 2-pyridone-3-carboxylic acid was performed by potassium carbonate in toluene. All compounds were evaluated against two Gram-negative bacteria (Escherichia coli (...

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Autores principales: Meghrazi Ahadi, Elmira, Azizian, Homa, Fathi Vavsari, Vaezeh, Aliahmadi, Atousa, Shahsavari, Zeinab, Bijanzadeh, Hamid R., Balalaie, Saeed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shaheed Beheshti University of Medical Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8653659/
https://www.ncbi.nlm.nih.gov/pubmed/34904001
http://dx.doi.org/10.22037/ijpr.2021.114749.15018
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author Meghrazi Ahadi, Elmira
Azizian, Homa
Fathi Vavsari, Vaezeh
Aliahmadi, Atousa
Shahsavari, Zeinab
Bijanzadeh, Hamid R.
Balalaie, Saeed
author_facet Meghrazi Ahadi, Elmira
Azizian, Homa
Fathi Vavsari, Vaezeh
Aliahmadi, Atousa
Shahsavari, Zeinab
Bijanzadeh, Hamid R.
Balalaie, Saeed
author_sort Meghrazi Ahadi, Elmira
collection PubMed
description The functionalized 2-pyridone-3-carboxylic acids were synthesized starting from 3-formylchromone. Meanwhile, a decarboxylation reaction of 2-pyridone-3-carboxylic acid was performed by potassium carbonate in toluene. All compounds were evaluated against two Gram-negative bacteria (Escherichia coli (E. coli), Acinetobacter baumannii (A. baumannii)) and two Gram-positive (Staphylococcus aureus (S. aureus)) and fungus (Candida albicans (C. albicans)) using serial broth dilution method. The antimicrobial screening revealed that S. aureus is the highest sensitive microorganism towards the synthesized compounds. Among all analogs, derivatives, 4p and 5c showed excellent activities in comparison with the other compounds against S. aureus. Molecular docking showed that the most active anti S. aureus are compounds 4p and 5c exhibiting primary interaction as with fluoroquinolones by cross-linking over DNA gyrase active site via metal ion bridge and H-bonding interaction with Ser84 and Glu88 from GyrA subunit along with Arg458 and Asp437 located at GyrB subunit. In addition, based on the molecular dynamic simulation as like the standard fluoroquinolones, the mentioned compounds were stabilized for significant amount of simulation time over DNA gyrase which potentiate the importance of the mentioned residues in the DNA gate region of DNA gyrase.
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spelling pubmed-86536592021-12-12 Synthesis and Decarboxylation of Functionalized 2-Pyridone-3-carboxylic Acids and Evaluation of their Antimicrobial Activity and Molecular Docking Meghrazi Ahadi, Elmira Azizian, Homa Fathi Vavsari, Vaezeh Aliahmadi, Atousa Shahsavari, Zeinab Bijanzadeh, Hamid R. Balalaie, Saeed Iran J Pharm Res Original Article The functionalized 2-pyridone-3-carboxylic acids were synthesized starting from 3-formylchromone. Meanwhile, a decarboxylation reaction of 2-pyridone-3-carboxylic acid was performed by potassium carbonate in toluene. All compounds were evaluated against two Gram-negative bacteria (Escherichia coli (E. coli), Acinetobacter baumannii (A. baumannii)) and two Gram-positive (Staphylococcus aureus (S. aureus)) and fungus (Candida albicans (C. albicans)) using serial broth dilution method. The antimicrobial screening revealed that S. aureus is the highest sensitive microorganism towards the synthesized compounds. Among all analogs, derivatives, 4p and 5c showed excellent activities in comparison with the other compounds against S. aureus. Molecular docking showed that the most active anti S. aureus are compounds 4p and 5c exhibiting primary interaction as with fluoroquinolones by cross-linking over DNA gyrase active site via metal ion bridge and H-bonding interaction with Ser84 and Glu88 from GyrA subunit along with Arg458 and Asp437 located at GyrB subunit. In addition, based on the molecular dynamic simulation as like the standard fluoroquinolones, the mentioned compounds were stabilized for significant amount of simulation time over DNA gyrase which potentiate the importance of the mentioned residues in the DNA gate region of DNA gyrase. Shaheed Beheshti University of Medical Sciences 2021 /pmc/articles/PMC8653659/ /pubmed/34904001 http://dx.doi.org/10.22037/ijpr.2021.114749.15018 Text en https://creativecommons.org/licenses/by/3.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/ (https://creativecommons.org/licenses/by/3.0/) ) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Meghrazi Ahadi, Elmira
Azizian, Homa
Fathi Vavsari, Vaezeh
Aliahmadi, Atousa
Shahsavari, Zeinab
Bijanzadeh, Hamid R.
Balalaie, Saeed
Synthesis and Decarboxylation of Functionalized 2-Pyridone-3-carboxylic Acids and Evaluation of their Antimicrobial Activity and Molecular Docking
title Synthesis and Decarboxylation of Functionalized 2-Pyridone-3-carboxylic Acids and Evaluation of their Antimicrobial Activity and Molecular Docking
title_full Synthesis and Decarboxylation of Functionalized 2-Pyridone-3-carboxylic Acids and Evaluation of their Antimicrobial Activity and Molecular Docking
title_fullStr Synthesis and Decarboxylation of Functionalized 2-Pyridone-3-carboxylic Acids and Evaluation of their Antimicrobial Activity and Molecular Docking
title_full_unstemmed Synthesis and Decarboxylation of Functionalized 2-Pyridone-3-carboxylic Acids and Evaluation of their Antimicrobial Activity and Molecular Docking
title_short Synthesis and Decarboxylation of Functionalized 2-Pyridone-3-carboxylic Acids and Evaluation of their Antimicrobial Activity and Molecular Docking
title_sort synthesis and decarboxylation of functionalized 2-pyridone-3-carboxylic acids and evaluation of their antimicrobial activity and molecular docking
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8653659/
https://www.ncbi.nlm.nih.gov/pubmed/34904001
http://dx.doi.org/10.22037/ijpr.2021.114749.15018
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