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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Polypeptide nanocoatings for preventing dental and orthopaedic device-associated infection: pH-induced antibiotic capture, release, and antibiotic efficacy.
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Polypeptide nanocoatings for preventing dental and orthopaedic device-associated infection: pH-induced antibiotic capture, release, and antibiotic efficacy.

机译:预防牙齿和整形外科设备相关感染的多肽纳米涂层:pH诱导的抗生素捕获,释放和抗生素功效。

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摘要

Implant-associated infection is one of the most common and problematic complications for dental and orthopaedic patients. Modification of currently used implant surfaces aimed at bestowing them with antibacterial properties is a promising approach in the development of new biomaterials. In this study, a novel nanotechnology, that is, electrostatic self-assembly, was developed to construct biomimetic polypeptide nanocoatings on commonly used metal implants. A model antibacterial drug, cefazolin, was captured in the polypeptide nanocoating and its release was studied. We have shown that the capture and release of cefazolin was pH-induced and could be controlled, and the developed antibiotic-incorporated polypeptide multilayer nanocoatings could prevent Staphylococcus aureus colonization thus showing great potential for preventing implant-associated infection.
机译:种植体相关感染是牙科和整形外科患者最常见且最有问题的并发症之一。旨在赋予其抗菌特性的当前使用的植入物表面改性是开发新生物材料的一种有前途的方法。在这项研究中,开发了一种新的纳米技术,即静电自组装,以在常用的金属植入物上构建仿生多肽纳米涂层。在多肽纳米涂层中捕获了一种典型的抗菌药物头孢唑林,并对其释放进行了研究。我们已经表明头孢唑啉的捕获和释放是pH诱导的,并且可以被控制,并且开发的结合抗生素的多肽多层纳米涂层可以防止金黄色葡萄球菌定植,因此在预防植入物相关感染方面显示出巨大的潜力。

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