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Article Abstract

Encouraged by the significantly different toxicities and antibacterial activities of diverse linkers, such as alkyl and aromatic nuclei linkers, and the unique structure of phloroglucinol, we synthesized a series of tris-quaternary ammonium salt (tris-QAS) antibacterial peptide mimics based on the marketed drug phloroglucinol. Among them, displayed excellent activity against (MIC = 0.5 μg/mL) and high selectivity (SI > 2560). Surprisingly, the cytotoxicity of (CC = 152.7 μg/mL) was dramatically better than those of alkyl QAS and hydroquinone QAS . Additionally, possessed rapid bactericidal capability, was not prone to inducing bacterial resistance, and also exhibited excellent activity against biofilms and persistent bacteria. Mechanistic research and transcriptome analysis revealed that can interfere with the normal metabolism of bacterial cells, and it can specifically bind with phosphatidylglycerol to destroy the cell membrane. Importantly, exhibited potent antibacterial activity in a mouse subcutaneous methicillin-resistant (MRSA) infection model.

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http://dx.doi.org/10.1021/acs.jmedchem.4c01935DOI Listing

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