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首页> 外文期刊>Analytical and bioanalytical chemistry >Analytical investigations of poly(acrylic acid) coatings electrodeposited on titanium-based implants: a versatile approach to biocompatibility enhancement
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Analytical investigations of poly(acrylic acid) coatings electrodeposited on titanium-based implants: a versatile approach to biocompatibility enhancement

机译:电沉积在钛基植入物上的聚(丙烯酸)涂层的分析研究:增强生物相容性的通用方法

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A polyacrylic acid film was synthesized on titanium substrates from aqueous solutions via an electroreductive process for the first time. This work was done in order to develop a versatile coating for titanium-based orthopaedic implants that acts as both an effective bioactive surface and an effective anti-corrosion barrier. The chemical structure of the PAA coating was investigated by X-ray photoelectron spectroscopy (XPS). Scanning electron microscopy (SEM) was employed to evaluate the effect of annealing treatment on the morphology of the coatings in terms of their uniformity and porosity. Inductively coupled plasma mass spectrometry was used to measure ion concentrations in ion release tests performed on Ti-6Al-4V sheets modified with PAA coatings (annealed and unannealed). Results indicate that the annealing process produces coatings that possess considerable anti-corrosion performance. Moreover, the availability and the reactivity of the surface carboxylic groups were exploited in order to graft biological molecules onto the PAA-modified titanium implants. The feasibility of the grafting reaction was tested using a single aminoacid residue. A fluorinated aminoacid was selected, and the grafting reaction was monitored both by XPS, using fluorine as a marker element, and via quartz crystal microbalance (QCM) measurements. The success of the grafting reaction opens the door to the synthesis of a wide variety of PAA-based coatings that are functionalized with selected bioactive molecules and promote positive reactions with the biological system interfacing the implant while considerably reducing ion release into surrounding tissues.
机译:首次通过电还原工艺在水溶液中从水溶液中合成了聚丙烯酸薄膜。进行这项工作是为了开发用于钛基整形外科植入物的多功能涂层,该涂层既可作为有效的生物活性表面,又可作为有效的防腐蚀屏障。通过X射线光电子能谱(XPS)研究了PAA涂层的化学结构。扫描电子显微镜(SEM)用于评估退火处理对涂层形态的均匀性和孔隙率的影响。在对用PAA涂层(退火和未退火)改性的Ti-6Al-4V薄板进行的离子释放测试中,使用电感耦合等离子体质谱法测量离子浓度。结果表明,退火过程产生的涂料具有相当大的防腐性能。而且,为了将生物分子接枝到PAA修饰的钛植入物上,利用了表面羧基的可利用性和反应性。使用单个氨基酸残基测试了接枝反应的可行性。选择氟化氨基酸,并通过XPS(使用氟作为标记元素)和通过石英晶体微量天平(QCM)测量来监测接枝反应。接枝反应的成功为合成多种基于PAA的涂层打开了大门,这些涂层已使用选定的生物活性分子进行了功能化,并促进了与连接植入物的生物系统的正反应,同时大大减少了离子向周围组织的释放。

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