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首页> 外文期刊>Biomacromolecules >Targeted Release of Tobramycin from a pH-Responsive Grafted Bilayer Challenged with S. aureus
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Targeted Release of Tobramycin from a pH-Responsive Grafted Bilayer Challenged with S. aureus

机译:从金黄色葡萄球菌挑战的pH响应嫁接的双层中有针对性地释放妥布霉素。

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摘要

A stimuli-responsive, controlled release bilayer for the prevention of bacterial infection on biomaterials is presented. Drug release is locally controlled by the pH-responsiveness of the bilayer, comprised of an inner poly(acrylic acid) (PAA) monolayer grafted to a biomaterial and cross-linked with an outer chitosan (CH) brush. Tobramycin (TOB) is loaded in the inner PAA in part to minimize bacteria resistance. Because biofilm formation causes a decrease in local pH, TOB is released from PAA and permeates through the CH, which is in contact with the biofilm. Antibiotic capacity is controlled by the PAA thickness, which depends on PAA brush length and the extent of cross-linking between CH and PAA at the bilayer interface. This TOB-loaded, pH-responsive bilayer exhibits significantly enhanced antibacterial activity relative to controls.
机译:提出了一种刺激响应性,控释双层,用于预防生物材料上的细菌感染。药物释放是通过双层的pH响应性来局部控制的,该双层由接枝到生物材料上并与外部壳聚糖(CH)刷交联的内层聚丙烯酸(PAA)单层组成。妥布霉素(TOB)部分装载在内部PAA中,以最大程度降低细菌抵抗力。由于生物膜的形成会导致局部pH值降低,因此TOB从PAA中释放出来,并通过与生物膜接触的CH渗透。抗菌能力由PAA厚度控制,PAA厚度取决于PAA刷的长度以及双层界面处CH和PAA之间的交联程度。相对于对照,这种负载TOB的pH响应双层膜表现出明显增强的抗菌活性。

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