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Surface-adhesive layer-by-layer assembled hydroxyapatite for bioinspired functionalization of titanium surfaces

机译:用于钛表面生物启发功能化的表面粘合剂层层组装羟基磷灰石

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摘要

A novel and versatile fabrication route for titanium-based biocomposites has been realized by mussel adhesion chemistry through layer-by-layer assembly of polydopamine (PDOA) and hydroxyapatite (HA). The assembly process was monitored by XPS analysis and weight shifts. The chemical structure and the surface morphologies of the assembly layers were analyzed by FTIR, XPS and SEM, respectively. It was found that the assembly between PDOA and HA can be repeated indefinitely, and that a continued growth of this multilayer is possible. The as-prepared hybrid biocomposite materials present a rough surface, and such a structure is beneficial for bone cell adhesion. Primary cell proliferation experiments indicated that PDOA-HA-modified Ti substrates exhibit a good bioactivity. The hybrid assembly layers displayed an outstanding adhesion stability, which suggests that PDOA can be employed as an on-demand robust glue for creating functional biomaterials. These new materials can find widespread use in the field of orthopedic and dental implants due to their excellent mechanical properties and biocompatibility.
机译:通过贻贝粘附化学,通过聚多巴胺(PDOA)和羟基磷灰石(HA)的逐层组装,已经实现了基于钛的生物复合材料的新颖且通用的制造路线。通过XPS分析和重量转移监控组装过程。通过FTIR,XPS和SEM分别分析了组装层的化学结构和表面形貌。发现PDOA和HA之间的组装可以无限期地重复,并且该多层的连续生长是可能的。如此制备的杂化生物复合材料具有粗糙的表面,并且这种结构有利于骨细胞粘附。原代细胞增殖实验表明,PDOA-HA修饰的Ti底物具有良好的生物活性。混合组件层表现出出色的粘合稳定性,这表明PDOA可以用作按需使用的坚固胶水,用于制造功能性生物材料。这些新材料由于其优异的机械性能和生物相容性,可以在整形外科和牙科植入物领域广泛使用。

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