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J Med Chem ; 64(15): 11395-11417, 2021 08 12.
Article in English | MEDLINE | ID: mdl-34314189

ABSTRACT

We report a series of synthetic cationic amphipathic barbiturates inspired by the pharmacophore model of small antimicrobial peptides (AMPs) and the marine antimicrobials eusynstyelamides. These N,N'-dialkylated-5,5-disubstituted barbiturates consist of an achiral barbiturate scaffold with two cationic groups and two lipophilic side chains. Minimum inhibitory concentrations of 2-8 µg/mL were achieved against 30 multi-resistant clinical isolates of Gram-positive and Gram-negative bacteria, including isolates with extended spectrum ß-lactamase-carbapenemase production. The guanidine barbiturate 7e (3,5-di-Br) demonstrated promising in vivo antibiotic efficacy in mice infected with clinical isolates of Escherichia coli and Klebsiella pneumoniae using a neutropenic peritonitis model. Mode of action studies showed a strong membrane disrupting effect and was supported by nuclear magnetic resonance and molecular dynamics simulations. The results express how the pharmacophore model of small AMPs and the structure of the marine eusynstyelamides can be used to design highly potent lead peptidomimetics against multi-resistant bacteria.


Subject(s)
Anti-Bacterial Agents/pharmacology , Barbiturates/pharmacology , Biological Products/pharmacology , Guanidines/pharmacology , Indoles/pharmacology , Pore Forming Cytotoxic Proteins/pharmacology , Surface-Active Agents/pharmacology , Anti-Bacterial Agents/chemical synthesis , Anti-Bacterial Agents/chemistry , Barbiturates/chemical synthesis , Barbiturates/chemistry , Biological Products/chemical synthesis , Biological Products/chemistry , Dose-Response Relationship, Drug , Drug Resistance, Multiple, Bacterial/drug effects , Escherichia coli/drug effects , Guanidines/chemical synthesis , Guanidines/chemistry , Indoles/chemical synthesis , Indoles/chemistry , Microbial Sensitivity Tests , Molecular Structure , Pore Forming Cytotoxic Proteins/chemical synthesis , Pore Forming Cytotoxic Proteins/chemistry , Structure-Activity Relationship , Surface-Active Agents/chemical synthesis , Surface-Active Agents/chemistry
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