首页> 美国卫生研究院文献>International Journal of Nanomedicine >Long-lasting bactericidal activity through selective physical puncture and controlled ions release of polydopamine and silver nanoparticles–loaded TiO2 nanorods in vitro and in vivo
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Long-lasting bactericidal activity through selective physical puncture and controlled ions release of polydopamine and silver nanoparticles–loaded TiO2 nanorods in vitro and in vivo

机译:通过选择性地物理穿刺和控制离子释放聚多巴胺和载有纳米银的TiO2纳米棒在体外和体内的持久杀菌活性

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摘要

>Background: Titanium (Ti) implant-associated infection, which is mostly caused by bacterial adhesion and biofilm formation, may result in implant failure and secondary surgery. Thus it is an urgent issue to prevent bacterial infections at the earliest step.>Purpose: To develop a novel surface strategy of polydopamine (PDA) and silver (Ag) nanoparticle-loaded TiO2 nanorods (NRDs) coatings on Ti alloy.>Materials and methods: Ag-TiO2@PDA NRDs was fabricated on Ti alloy by hydrothermal synthesis. The antibacterial activity of Ag-TiO2@PDA NRDs against Escherichia coli and methicillin-resistant Staphylococcus aureus were tested by FE-SEM, Live/Dead staining, zone of inhibition, bacteria counting method and protein leakage analysis in vitro. In addition, an implant infection model was conducted and the samples were tested by X-ray, Micro-CT and histological analysis in vivo. Besides, cell morphology and cytotoxicity of Mouse calvarial cells (MC3T3-E1) were characterized by FE-SEM, immunofluorescence and CCK-8 test in vitro.>Results: Our study successfully developed a new surface coating of Ag-TiO2@PDA NRDs. The selective physical puncture of bacteria and controlled release of Ag+ ions of Ag-TiO2@PDA NRDs achieved a long-lasting bactericidal ability and anti-biofilm activity with satisfied biocompatibility.>Conclusion: This strategy may be promising for clinical applications to reduce the occurrence of infection in the implant surgeries
机译:>背景:钛(Ti)植入物相关感染主要由细菌粘附和生物膜形成引起,可能导致植入物失效和二次手术。因此,尽早预防细菌感染是迫在眉睫的问题。>目的:开发一种新型的表面策略,在其上涂覆聚多巴胺(PDA)和银(Ag)纳米颗粒的TiO2纳米棒(NRDs)涂层>材料与方法:通过水热合成法在Ti合金上制备了Ag-TiO2 @ PDA NRDs。通过FE-SEM,活/死染色,抑菌圈,细菌计数法和蛋白渗漏分析测试了Ag-TiO2 @ PDA NRDs对大肠杆菌和耐甲氧西林金黄色葡萄球菌的抗菌活性。此外,进行了植入物感染模型,并通过体内X射线,Micro-CT和组织学分析对样品进行了测试。此外,通过FE-SEM,免疫荧光和CCK-8体外测试表征了小鼠颅盖细胞(MC3T3-E1)的细胞形态和细胞毒性。>结果:我们的研究成功开发了一种新型的Ag表面涂层-TiO2 @ PDA NRD。选择性的细菌穿刺和Ag-TiO2 @ PDA NRDs的Ag +离子的受控释放实现了持久的杀菌能力和抗生物膜活性,并具有令人满意的生物相容性。>结论:减少植入手术中感染发生的临床应用

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