Facile and Novel Synthetic Approach, Molecular Docking, Molecular Dynamics, and Drug‐Likeness Evaluation of 9‐Substituted Acridine Derivatives as Dual Anticancer and Antimicrobial Agents

Author:

Abouelenein Mohamed G.1,Mohamed Mahmoud Basseem I.2,Elsenety Mohamed M.2,El‐Rashedy Ahmed A.3,Ghalib Samirah H.4,Mohamed Fatima Abdelgalil E.4,El‐Ebiary Nora M. A.4,Ageeli Abeer A.4

Affiliation:

1. Chemistry Department Faculty of Science Menofia University Shebin El-Koam Menofia Egypt

2. Chemistry Department Faculty of Science Al-Azhar University Nasr City Cairo Egypt P.O. 11884

3. Natural and Microbial Products Department National Research Center (NRC) Egypt

4. Chemistry Department Faculty of Science Jazan University Jazan P.O. Box 82817 Saudi Arabia

Abstract

AbstractIn the present study, numerous acridine derivatives A1A20 were synthesized via aromatic nucleophilic substitution (SNAr) reaction of 9‐chloroacridine with carbonyl hydrazides, amines, or phenolic derivatives depending upon facile, novel, and eco‐friendly approaches (Microwave and ultrasonication assisted synthesis). The structures of the new compounds were elucidated using spectroscopic methods. The title products were assessed for their antimicrobial, antioxidant, and antiproliferative activities using numerous assays. Promisingly, the investigated compounds mainstream revealed promising antibacterial and anticancer activities. Thereafter, the investigated compounds’ expected mode of action was debated by using an array of in silico studies. Compounds A2 and A3 were the most promising antimicrobial agents, while compounds A2, A5, and A7 revealed the most cytotoxic activities. Accordingly, RMSD, RMSF, Rg, and SASA analyses of compounds A2 and A3 were performed, and MMPBSA was calculated. Lastly, the ADMET (absorption, distribution, metabolism, excretion, and toxicity) analyses of the novel acridine derivatives were investigated. The tested compounds’ existing screening results afford an inspiring basis leading to developing new compelling antimicrobial and anticancer agents based on the acridine scaffold.

Publisher

Wiley

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