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Molecular Periphery Design Allows Control of the New Nitrofurans Antimicrobial Selectivity.

Authors :
Vinogradova, Lyubov
Lukin, Alexey
Komarova, Kristina
Zhuravlev, Maxim
Fadeev, Artem
Chudinov, Mikhail
Rogacheva, Elizaveta
Kraeva, Lyudmila
Gureev, Maxim
Porozov, Yuri
Dogonadze, Marine
Vinogradova, Tatiana
Source :
Molecules. Jul2024, Vol. 29 Issue 14, p3364. 19p.
Publication Year :
2024

Abstract

A series of 13 new 3-substituted 5-(5-nitro-2-furyl)-1,2,4-oxadiazoles was synthesized from different aminonitriles. All compounds were screened in the disc diffusion test at a 100 μg/mL concentration to determine the bacterial growth inhibition zone presence and diameter, and then the minimum inhibitory concentrations (MICs) were determined for the most active compounds by serial dilution. The compounds showed antibacterial activity against ESKAPE bacteria, predominantly suppressing the growth of 5 species out of the panel. Some compounds had similar or lower MICs against ESKAPE pathogens compared to ciprofloxacin, nitrofurantoin, and furazidin. In particular, 3-azetidin-3-yl-5-(5-nitro-2-furyl)-1,2,4-oxadiazole (2h) inhibited S. aureus at a concentration lower than all comparators. Compound 2e (5-(5-nitro-2-furyl)-3-[4-(pyrrolidin-3-yloxy)phenyl]-1,2,4-oxadiazole) was active against Gram-positive ESKAPE pathogens as well as M. tuberculosis. Differences in the molecular periphery led to high selectivity for the compounds. The induced-fit docking (IFD) modeling technique was applied to in silico research. Molecular docking results indicated the targeting of compounds against various nitrofuran-associated biological targets. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
29
Issue :
14
Database :
Academic Search Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
178690370
Full Text :
https://doi.org/10.3390/molecules29143364