化学
抗菌活性
铵
两亲性
组合化学
体外
细菌
抗菌剂
药品
钌
生物活性
结构-活动关系
膜
生物化学
抗菌剂
有机化学
化学合成
药物发现
抗生素
大肠杆菌
抗药性
磷脂酰甘油
微生物学
作者
Runyu Xue,Cunhong Luo,Lixin Dou,Xinru Yu,Liao Xiangwen,Wang Jintao,Rujian Yu,Yanshi Xiong
标识
DOI:10.1021/acs.jmedchem.5c02644
摘要
The escalating threat of Methicillin-resistant Staphylococcus aureus (MRSA) infections seriously endangers human health, so facing the immense threat of drug-resistant bacteria, discovering new and potent antibacterial drugs less prone to inducing resistance is urgently needed. In this study, four amphiphilic ruthenium polypyridyl complexes were synthesized, namely [Ru(II)(bpy) 2 ( DIPPB )] (PF 6 ) 3 ( Ru-1 ), [Ru(II)(dmb) 2 ( DIPPB )] (PF 6 ) 3 ( Ru-2 ), [Ru(II)(dmob) 2 ( DIPPB )] (PF 6 ) 3 ( Ru-3 ) and [Ru(II)(bpy) 2 ( DIPPB )] (PF 6 ) 3 ( Ru-4 ). Among these complexes, complex Ru-4 incorporates N -methylimidazole and quaternary ammonium cations, in vitro experiments have demonstrated the presence of potent antibacterial activity against Staphylococcus aureus and MRSA, accompanied by low hemolytic activity and a diminished tendency to induce drug resistance. It acts by disrupting bacterial membranes via interaction with phosphatidylglycerol and phosphatidylethanolamine, increasing permeability, elevating ROS levels, and causing content leakage. Transcriptomics confirmed its impact on membrane-related genes. Notably, in vivo experimental results demonstrated that Ru-4 exhibits superior efficacy compared to vancomycin, thereby identifying it as a promising therapeutic candidate for MRSA infection treatment.
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