多粘菌素
利奈唑啉
抗菌剂
多粘菌素B
抗生素
介孔二氧化硅
细菌
微生物学
革兰氏阴性菌
抗生素耐药性
化学
纳米技术
材料科学
介孔材料
生物
万古霉素
大肠杆菌
生物化学
催化作用
基因
金黄色葡萄球菌
遗传学
作者
Ismael Otri,Serena Medaglia,Ramón Martínez‐Máñez,Elena Aznar,Félix Sancenón
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2024-01-20
卷期号:14 (2): 228-228
被引量:6
摘要
Antimicrobial resistance is a current silent pandemic that needs new types of antimicrobial agents different from the classic antibiotics that are known to lose efficiency over time. Encapsulation of antibiotics inside nano-delivery systems could be a promising, effective strategy that is able to delay the capability of pathogens to develop resistance mechanisms against antimicrobials. These systems can be adapted to deliver already discovered antibiotics to specific infection sites in a more successful way. Herein, mesoporous silica nanomaterials are used for an efficient delivery of a linezolid gram-positive antibiotic that acts synergistically with gram-negative antimicrobial polymyxin B. For this purpose, linezolid is encapsulated in the pores of the mesoporous silica, whose outer surface is coated with a polymyxin B membrane disruptor. The nanomaterial showed a good controlled-release performance in the presence of lipopolysaccharide, found in bacteria cell membranes, and the complete bacteria
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