De Santis Serena, Sotgiu Giovanni, Porcelli Francesco, Marsotto Martina, Iucci Giovanna, Orsini Monica
Department of Engineering, Roma Tre University, via Vito Volterra 62, 00146 Rome, Italy.
Department of Science, Roma Tre University, Via della Vasca Navale 79, 00146 Rome, Italy.
Nanomaterials (Basel). 2021 Feb 10;11(2):445. doi: 10.3390/nano11020445.
Despite the well-known favorable chemical and mechanical properties of titanium-based materials for orthopedic and dental applications, poor osseointegration of the implants, bacteria adhesion, and excessive inflammatory response from the host remain major problems to be solved. Here, the antioxidant and anti-inflammatory enzyme-like abilities of ceria (CeO) were coupled to the advantageous features of titanium nanotubes (TiNTs). Cost-effective and fast methods, such as electrochemical anodization and drop casting, were used to build active surfaces with enhanced bioactivity. Surface composition, electrochemical response, and in vitro ability to induce hydroxyapatite (HA) precipitation were evaluated. The amount of cerium in the coating did not significantly affect wettability, yet a growing ability to induce early HA precipitation from simulated body fluid (SBF) was observed as the oxide content at the surface increased. The presence of 4%wt CeO was also able to stimulate rapid HA maturation in a (poorly) crystalline form, indicating an interesting potential to induce rapid in vivo osseointegration process.
尽管钛基材料在骨科和牙科应用中具有众所周知的良好化学和机械性能,但植入物的骨整合不良、细菌粘附以及宿主的过度炎症反应仍然是有待解决的主要问题。在此,将二氧化铈(CeO)的抗氧化和抗炎酶样能力与钛纳米管(TiNTs)的优势特性相结合。采用了具有成本效益且快速的方法,如电化学阳极氧化和滴铸法,来构建具有增强生物活性的活性表面。对表面成分、电化学响应以及诱导羟基磷灰石(HA)沉淀的体外能力进行了评估。涂层中铈的含量对润湿性没有显著影响,但随着表面氧化物含量的增加,观察到从模拟体液(SBF)中诱导早期HA沉淀的能力不断增强。4%wt CeO的存在还能够刺激(结晶度较差的)HA快速成熟,这表明其在诱导快速体内骨整合过程方面具有有趣的潜力。