Synthesis of Benzofuran‐Based Hybrid Molecules: Molecular Docking and Antibacterial Activity Against Pseudomonas aeruginosa

Author:

Cortés‐García Carlos J.1ORCID,Mercado‐Madrigal Aidme I.1,Alejandre‐Castañeda Viridiana2,Patiño‐Medina Jose Alberto2,Castro‐Velázquez Verónica34,Rodríguez‐González Vicente3,Ramírez‐Díaz Martha Isela2,Islas‐Jácome Alejandro5,Rincón‐Guevara Mónica A.6,Chacón‐García Luis1,Meza‐Carmen Victor2ORCID,Díaz‐Cervantes Erik4ORCID

Affiliation:

1. Laboratorio de Diseño Molecular Instituto de Investigaciones Químico‐Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Ciudad Universitaria Morelia Michoacán Mexico

2. Laboratorio de Diferenciación Celular Instituto de Investigaciones Químico‐Biológicas, Universidad Michoacana de San Nicolás de Hidalgo, Ciudad Universitaria Morelia Michoacán Mexico

3. División de Materiales Avanzados Instituto Potosino de Investigación Científica y Tecnológica (IPICYT) San Luis Potosí Mexico

4. Departamento de Alimentos, Centro Interdisciplinario del Noreste Universidad de Guanajuato Tierra Blanca Guanajuato Mexico

5. Departamento de Química Universidad Autónoma Metropolitana‐Iztapalapa Ciudad de Mexico Mexico

6. Departamento Biotecnología Universidad Autónoma Metropolitana‐Iztapalapa Ciudad de Mexico Mexico

Abstract

ABSTRACTA rapid and efficient protocol for synthesizing two series of benzofuran‐based hybrid polyheterocycles is presented: benzofuran‐isatin and benzofuran N‐acylhydrazones, and evaluation of their antibacterial activity both in vitro and in silico against two strains of Pseudomonas aeruginosa, PAO1 and PA14 were determined. Six of the tested compounds were shown to be active against the hypervirulent strain PA14. Docking studies were conducted using RNA polymerase sigmaS protein for P. aeruginosa PAO1 and PqsE protein for P. aeruginosa PA14 to provide additional insights into these results. A pharmacophore model was computed to suggest potential structural derivatives on the target molecules, offering further insights for future research. Finally, 40 novel compounds, including intermediates, were synthesized in a three‐step reaction.

Publisher

Wiley

Reference43 articles.

1. Antimicrobial Resistance: A Growing Serious Threat for Global Public Health

2. Antibiotic Discovery and Resistance: The Chase and the Race

3. Addressing Antimicrobial Resistance through New Medicinal and Synthetic Chemistry Strategies

4. WHO Prioritization of Pathogens to Guide Discovery Research and Development of New Antibiotics for Drug‐Resistant Bacterial Infections Including Tuberculosis 2017 accessed March 27 2024 https://www.who.int/publications/i/item/WHO‐EMP‐IAU‐2017.12.

5. Multidrug-resistant, extensively drug-resistant and pandrug-resistant bacteria: an international expert proposal for interim standard definitions for acquired resistance

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