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Citation
Tags
HERO ID
6842367
Reference Type
Journal Article
Title
2,6-Difluorobenzamide Inhibitors of Bacterial Cell Division Protein FtsZ: Design, Synthesis, and Structure-Activity Relationships
Author(s)
Straniero, V; Zanotto, C; Straniero, L; Casiraghi, A; Duga, S; Radaelli, A; Morghen, C; Valoti, E
Year
2017
Is Peer Reviewed?
0
Journal
ChemMedChem
ISSN:
1860-7179
EISSN:
1860-7187
Volume
12
Issue
16
Page Numbers
1303-1318
Language
English
DOI
10.1002/cmdc.201700201
Web of Science Id
WOS:000429592300009
Abstract
A wide variety of drug-resistant microorganisms are continuously emerging, restricting the therapeutic options for common bacterial infections. Antimicrobial agents that were originally potent are now no longer helpful, due to their weak or null activity toward these antibiotic-resistant bacteria. In addition, none of the recently approved antibiotics affect innovative targets, resulting in a need for novel drugs with innovative antibacterial mechanisms of action. The essential cell division protein filamentous temperature-sensitive Z (FtsZ) has emerged as a possible target, thanks to its ubiquitous expression and its homology to eukaryotic β-tubulin. In the latest years, several compounds were shown to interact with this prokaryotic protein and selectively inhibit bacterial cell division. Recently, our research group developed interesting derivatives displaying good antibacterial activities against methicillin-resistant Staphylococcus aureus, as well as vancomycin-resistant Enterococcus faecalis and Mycobacterium tuberculosis. The aim of the present study was to summarize the structure–activity relationships of differently substituted heterocycles, linked by a methylenoxy bridge to the 2,6-difluorobenzamide, and to validate FtsZ as the real target of this class of antimicrobials. © 2017 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
Keywords
2,6-difluorobenzamides; antibiotics; antimicrobial resistance; FtsZ; inhibitors; MRSA
Tags
PPRTV
•
1,3-Dinitrobenzene 2021
Literature Search June 2021
Scopus (July 2021)
OPPT REs
•
OPPT_1,4-Dioxane_D. Exposure
Total – title/abstract screening
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