| Literature DB >> 35168113 |
Ilaria D'Agostino1, Claudia Ardino2, Giulio Poli3, Filomena Sannio4, Massimiliano Lucidi5, Federica Poggialini2, Daniela Visaggio6, Enrico Rango2, Silvia Filippi7, Elena Petricci2, Paolo Visca6, Lorenzo Botta8, Jean-Denis Docquier9, Elena Dreassi10.
Abstract
The ever-faster rise of antimicrobial resistance (AMR) represents a major global Public Health challenge. New chemical entities with innovative Modes of Action (MoAs) are thus desirable. We recently reported the development of a novel class of broad-spectrum bactericidal agents, the AlkylGuanidino Ureas (AGU). Due to their polycationic structure, they likely target bacterial membranes. In order to better understand their MoA, we synthesized a library of AGU derivatives by structural simplification of selected hit compounds and developed specific assays based on membrane models by means of both analytical and computational techniques. Cell-based assays provided experimental evidence that AGUs disrupt bacterial membranes without showing hemolytic behavior. Hence, we herein report a thorough chemical and biological characterization of a new series of AGUs obtained through molecular simplification, allowing the rational design of potent antibacterial compounds active on antibiotic-resistant strains.Entities:
Keywords: Antibacterials; Confocal microscopy; Guanidine; Membrane model simulation; Molecular simplification; Permeabilization assays; Propidium iodide; Urea
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Year: 2022 PMID: 35168113 DOI: 10.1016/j.ejmech.2022.114158
Source DB: PubMed Journal: Eur J Med Chem ISSN: 0223-5234 Impact factor: 6.514