Findings identify 5D as a promising honokiol-derived anti-MRSA lead compound that acts mainly by disrupting membrane integrity and phospholipid homeostasis.
Abstract
Methicillin-resistant Staphylococcus aureus (MRSA) remains a major threat owing to limited therapeutic options and increasing antimicrobial resistance. In this study, a new honokiol-derived amphiphilic compound, 5D, was developed and evaluated for its anti-MRSA activity. 5D exhibited potent activity against clinical MRSA isolates (MIC = 0.5-1 μg/mL), and rapidly killed MRSA N315 in both early and late growth phases. It also disrupted established biofilms, retained activity after plasma exposure, and showed a low propensity for resistance development. Mechanistic analyses revealed that 5D damages bacterial morphology, dissipates membrane potential, increases membrane permeability, and causes leakage of intracellular DNA and proteins. Untargeted metabolomics indicated that 5D markedly perturbs glycerophospholipid metabolism, while phospholipid supplementation and isothermal titration calorimetry suggested preferential interaction with phosphatidylglycerol. In a Galleria mellonella infection model, 5D improved 7-day survival to approximately 33% and reduced bacterial burdens by 0.7-1.2 log10 CFU/mL compared with untreated larvae. In a murine sepsis model, 5D increased survival to 83.3-100% and significantly reduced organ bacterial burdens. These findings identify 5D as a promising honokiol-derived anti-MRSA lead compound that acts mainly by disrupting membrane integrity and phospholipid homeostasis.
Methicillin-resistant Staphylococcus aureus (MRSA) remains a major challenge in anti-infective therapy, highlighting the need for antibacterial agents with novel structures and mechanisms of action. Herein, a gram-scale preparation of the natural antibacterial isoflavone scandenone was established, enabling systematic...
Yi-Bo Tang, Hong-Rong Song, Jun-Mei Ma et al.· Bioorganic chemistry (Print)· 0 citations
Methicillin-resistant Staphylococcus aureus (MRSA) poses a significant clinical challenge owing to its antibiotic resistance and biofilm-forming ability. In this study, we conducted a screening of natural pentacyclic triterpenoids to identify lead compounds with high antibacterial activity. Senegenic acid 28-methyl est...
INTRODUCTION
Antimicrobial resistance (AMR) poses an escalating global health threat, yet the antibiotic discovery pipeline has stagnated over recent decades. Multi-mechanistic antibacterial action may offer a promising strategy to address this challenge.
OBJECTIVES
This study aimed to use clofoctol, a clinically use...
Jiayong Liu, Jia-Hui Lin, Wen-Yi Wang et al.· Journal of Advanced Research· 0 citations
Given the surge in antibiotic resistance, antimicrobial peptides have emerged as promising alternatives to conventional antibiotics; however, their therapeutic potential remains hindered by proteolytic instability and insufficient potency. Herein, we integrated an anti-proteolytic Arg-Pro scaffold with N-terminal fatty...
Jia-Jun Wang, Hao-Ran Xu, Yu Sun et al.· Cell Chemical Biology· 0 citations
ABSTRACT Dequalinium chloride is a dicationic amphiphilic quaternary ammonium compound that is used as an anti-infective drug. Here, we found that it potentiates bactericidal efficacies of aminoglycoside antibiotics against Pseudomonas aeruginosa. Dequalinium chloride increases respiratory activity and bacterial membra...
Gramicidin S (GS) is a cyclic decapeptide that primarily targets Gram-positive bacteria and due to its hemolytic toxicity, is mainly used for the topical treatment of eye, ear, and throat infections caused by S. aureus. Due to its unique mechanism of action, no clinically significant resistance to GS has been reported...
Harshita Dubkara, Swechchha Singh, Rahul Maitra et al.· European journal of medicina...· 0 citations
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