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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Novel pH-responsive tobramycin-embedded micelles in nanostructured multilayer-coatings of chitosan/heparin with efficient and sustained antibacterial properties
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Novel pH-responsive tobramycin-embedded micelles in nanostructured multilayer-coatings of chitosan/heparin with efficient and sustained antibacterial properties

机译:新型pH-响应于氯氰酸/肝素的纳米结构多层涂层中的氯氰酸多层涂层的胶束嵌入胶束,具有有效且持续的抗菌性能

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摘要

To endow orthopaedic implants with satisfactory antibacterial properties, the design and development of antibiotic coating on the surface of implants is highly desired. In this work a novel and facile strategy was developed to form pH-responsive layer-by-layer (LbL) films implanted with polymeric micelles as nano-vehicles loaded with charge-weak antibiotic drugs, enabling high drug loading efficiency. Negatively charged tobramycin (Tob)-embeded heparin miscells (HET) and positively charged chitosan (CHT) were exploited as a pH-responsive LBL multilayer building block, respectively. The formation mechanism and pH-stimulated release behavior of the Tob-contained heparin micelles were studied. The characterization on the morphologies, chemical compositions and hydrophilicity of the modified surface confirmed the successuful deposition of the Tob-loaded CHT/HET multilayers coatings on the polydopamine-modified Ti surface. The drug release profiles displayed fast release at pH 7.4 and slow release after exposure to weakly acidic environments. Antibacterial tests indicated that the Tobembed CHT/HET nanostructured multilayers not only strongly inhibited initial bacterial adhesion, but also disruptted biofilm formation. Particularly, this functional coatings showed "long-term antibacterial" pattern in acid condition. Meanwhile, MC3T3 cells showed acceptable adhesion, spread and proliferation on the multilayer coatings in cytocompatible studies. In a word, these multilayer coatings incorporated with a wide variety of antibiotics show promisiong applications in preventing postoperative infection and resolving unmet clinical need.
机译:为了赋予骨整形植入物,具有令人满意的抗菌性能,非常需要植入物表面上的抗生素涂层的设计和开发。在这项工作中,开发了一种新颖的和容易的策略,形成用聚合物胶束植入的pH响应层逐层(LBL)膜作为纳米载体,作为纳米载体,该纳米载体负载较弱的抗生素药物,从而实现了高药物负载效率。作为pH响应LBL多层构建块,将带负电荷的伯类霉素(TOB) - 牛肝菌霉素(HET)和带正电荷的壳聚糖(CHT)被利用。研究了ToB含有肝素胶束的形成机制和pH刺激的释放行为。对改性表面的形态,化学成分和亲水性的表征证实了ToB加载的CHT / HET多层涂层的沉积沉积在多莫多氨酸改性的Ti表面上。药物释放型材在pH 7.4时显示快速释放,并在暴露于弱酸性环境后缓慢释放。抗菌试验表明,ToBembed CHT / HET纳米结构多层不仅强烈抑制初始细菌粘附,而且破坏了生物膜形成。特别是,这种功能性涂层在酸条件下显示出“长期抗菌”模式。同时,MC3T3细胞显示在细胞偶联研究中的多层涂层上可接受的粘附,扩散和增殖。总之,这些多层涂层包含多种抗生素,表明预防术后感染和解决未满足的临床需求的促进应用。

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