Department of Otorhinolaryngology, Fujian Medical University Union Hospital, Fuzhou, Fujian, People's Republic of China.
Department of Pharmacy, Affiliated Quanzhou First Hospital of Fujian Medical University, Quanzhou, Fujian, People's Republic of China.
Int J Nanomedicine. 2023 Mar 7;18:1145-1158. doi: 10.2147/IJN.S398748. eCollection 2023.
Drug-resistant microbes pose a global health concern, requiring the urgent development of effective antibacterial agents and strategies in clinical practice. Therefore, there is an urgent need to explore novel antibacterial materials to effectively eliminate bacteria. The synthesis of quaternary phosphonium salt in haloargentate systems, wherein the phosphorus atom is represented in a cationic form, is a possible strategy for the development of antibacterial materials.
Using (triphenyl)phosphonium-based quaternary phosphorus salts with different spacer lengths (n=2, 4, 6) as a template, we designed three kinds of quaternary phosphorus salts as effective antibacterial agents against drug-resistant bacteria.
The synthesized quaternary phosphorus salt of (1,4-DBTPP)Br effectively prevented the formation of the bacterial biofilms, and degraded bacterial membranes and cell walls by promoting the production of reactive oxygen species, which exhibited effective therapeutic effects in a rat model of a superficial wound infected with methicillin-resistant .
The quaternary phosphorus salt (1,4-DBTPP)Br demonstrated hemocompatibility and low toxicity, revealing its potential in the treatment of clinical infections.
耐药微生物对全球健康构成威胁,因此在临床实践中急需开发有效的抗菌剂和策略。因此,迫切需要探索新型抗菌材料以有效消除细菌。在卤化银体系中合成季鏻盐,其中磷原子以阳离子形式存在,是开发抗菌材料的一种可行策略。
我们使用具有不同间隔长度(n=2、4、6)的基于(三苯基)膦的季磷盐作为模板,设计了三种季磷盐作为针对耐药菌的有效抗菌剂。
合成的(1,4-DBTPP)Br 季磷盐有效地阻止了细菌生物膜的形成,并通过促进活性氧的产生来降解细菌的膜和细胞壁,在耐甲氧西林金黄色葡萄球菌感染的大鼠模型中表现出有效的治疗效果。
季磷盐(1,4-DBTPP)Br 表现出良好的血液相容性和低毒性,显示出其在治疗临床感染方面的潜力。