Nobil Bio Ricerche srl, Via Valcastellana 26, 14037 Portacomaro, AT, Italy.
Int J Mol Sci. 2023 Jan 31;24(3):2661. doi: 10.3390/ijms24032661.
In view of endowing the surface of abutments, a component of titanium dental implant systems, with antioxidant and antimicrobial properties, a surface layer coated with epigallocatechin gallate (EGCg), a polyphenol belonging to the class of flavonoids, was built on titanium samples. To modulate interfacial properties, EGCg was linked either directly to the surface, or after populating the surface with terminally linked polyethyleneglycol (PEG) chains, Mw ~1600 Da. The underlying assumption is that fouling-resistant, highly hydrated PEG chains could reduce non-specific bioadhesion and magnify intrinsic EGCg properties. Treated surfaces were investigated by a panel of surface/interfacial sensitive techniques, to provide chemico-physical characterization of the surface layer and its interfacial environment. Results show: (i) successful EGCg coupling for both approaches; (ii) that both approaches endow the Ti surface with the same antioxidant properties; (iii) that PEG-EGCg coated surfaces are more hydrophilic and show a significantly higher (>50%) interaction force with water. Obtained results build up a rationale basis for evaluation of the merits of finely tuning interfacial properties of polyphenols coated surfaces in biological tests.
为了赋予钛牙科种植体系统中基台的表面具有抗氧化和抗菌性能,在钛样本上构建了一层涂有表没食子儿茶素没食子酸酯(EGCg)的表面层,EGCg 是一种属于类黄酮的多酚。为了调节界面性质,EGCg 要么直接连接到表面,要么在表面上填充末端连接的聚乙二醇(PEG)链(Mw~1600Da)后连接到表面。其基本假设是,抗污染、高度水合的 PEG 链可以减少非特异性生物黏附,并放大固有 EGCg 性质。通过一系列表面/界面敏感技术对处理过的表面进行了研究,以提供表面层及其界面环境的化学物理特性。结果表明:(i)两种方法都成功地进行了 EGCg 偶联;(ii)两种方法都赋予 Ti 表面相同的抗氧化性能;(iii)PEG-EGCg 涂层表面更亲水,与水的相互作用力高 50%以上。所获得的结果为在生物测试中评估精细调整涂有多酚的表面的界面性质的优点奠定了合理的基础。