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Tunable drug loading and release from polypeptide multilayer nanofilms

机译:可调节的药物负载量和多肽多层纳米膜的释放

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摘要

Polypeptide multilayer nanofilms were prepared using electrostatic layer-by-layer self-assembly nanotechnology. Small charged drug molecules (eg, cefazolin, gentamicin, and methylene blue) were loaded in polypeptide multilayer nanofilms. Their loading and release were found to be pH-dependent and could also be controlled by changing the number of film layers and drug incubation time, and applying heat-treatment after film formation. Antibioticloaded polypeptide multilayer nanofilms showed controllable antibacterial properties against Staphylococcus aureus. The developed biodegradable polypeptide multilayer nanofilms are capable of loading both positively- and negatively-charged drug molecules and promise to serve as drug delivery systems on biomedical devices for preventing biomedical device-associated infection, which is a significant clinical complication for both civilian and military patients.
机译:使用静电逐层自组装纳米技术制备多肽多层纳米膜。将小的带电药物分子(例如,头孢唑林,庆大霉素和亚甲基蓝)负载在多肽多层纳米膜中。发现它们的负载和释放是pH依赖性的,并且还可以通过改变膜层数和药物温育时间并在膜形成后进行热处理来控制。载有抗生素的多肽多层纳米膜对金黄色葡萄球菌显示出可控的抗菌性能。研制的可生物降解的多肽多层纳米膜能够装载带正电和带负电的药物分子,并有望作为生物医学设备上的药物递送系统,以防止与生物医学设备相关的感染,这对于平民和军人患者都是重大的临床并发症。

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