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Network Analysis Guided Designing of Multi-Targeted Anti-Fungal Agents: Synthesis and Biological Evaluation.

Authors :
Singh M
Verma H
Bhandu P
Kumar M
Narendra G
Choudhary S
Singh PK
Silakari O
Source :
Journal of molecular structure [J Mol Struct] 2022 Sep 09, pp. 134128. Date of Electronic Publication: 2022 Sep 09.
Publication Year :
2022
Publisher :
Ahead of Print

Abstract

During the ongoing pandemic, there have been increasing reports of invasive fungal disease (IFD), particularly among immunocompromised populations. Candida albicans is one of the most common clinical pathogenic microorganisms which have become a serious health threat to population either infected with Covid-19 or on treatment with immunosuppressant's/broad-range antibiotics. Currently, benzothiazole is a well explored scaffold for anti-fungal activity, especially mercapto substituted benzothiazoles. It is reported that exploring the 2 <superscript>nd</superscript> position of benzothiazoles yield improved anti-fungal molecules. Therefore, in the current study, lead optimization approach using bioisosteric replacement protocol was followed to improve the anti-fungal activity of an already reported benzothiazole derivative, N -(1,3-benzothiazole-2-yl)-2-(pyridine-3-ylformohydrazido) acetamide. To rationally identify the putative anti-candida targets of this derivative, network analysis was carried out. Complexes of designed compounds and identified putative targets were further analyzed for the docking interactions and their consequent retention after the completion of exhaustive MD simulations. Top seven designed compounds were synthesized and evaluated for in-vitro anti-fungal property against Candida, which indicated that compounds 1.2c and 1.2f possess improved and comparable anti-fungal activity to N -(1,3-benzothiazole-2-yl)-2-(pyridine-3-ylformohydrazido) acetamide and Nystatin, respectively.<br />Competing Interests: NOne<br /> (© 2022 Published by Elsevier B.V.)

Details

Language :
English
ISSN :
0022-2860
Database :
MEDLINE
Journal :
Journal of molecular structure
Publication Type :
Academic Journal
Accession number :
36101882
Full Text :
https://doi.org/10.1016/j.molstruc.2022.134128