Solid State Physics and Nanostructures Department, Voronezh State University, University Sq. 1, 394018 Voronezh, Russia.
Laboratory of Organic Additives for the Processes of Chemical and Electrochemical Deposition of Metals and Alloys Used in the Electronics Industry, Voronezh State University, University Sq. 1, 394018 Voronezh, Russia.
Int J Mol Sci. 2023 Jul 19;24(14):11636. doi: 10.3390/ijms241411636.
The creation of buffer (hybrid) layers that provide improved adhesion to two heterogeneous materials is a promising and high-priority research area in the field of dental materials science. In our work, using FTIR and Raman microspectroscopy at the submicron level in a system of dental composites/intact dental enamel, we assessed the molecular features of formation and chemically visualized the hybrid interface formed on the basis of a nature-like adhesive, polydopamine (PDA). It is shown that a homogeneous bioinspired PDA-hybrid interface with an increased content of O-Ca-O bonds can be created using traditional methods of dental tissue pretreatment (diamond micro drilling, acid etching), as well as the subsequent alkalinization procedure and the developed synthesis technology. The development of the proposed technology for accelerated deposition of PDA-hybrid layers, as well as the creation of self-assembled biomimetic nanocomposites with antibacterial properties, may in the future find clinical application for minimally invasive dental restoration procedures.
在牙科材料科学领域,创建能够改善两种异质材料附着力的缓冲(混合)层是一个很有前景且优先级很高的研究领域。在我们的工作中,使用傅里叶变换红外和拉曼显微镜在牙科复合材料/完整牙釉质系统中的亚微米水平上,评估了形成的分子特征,并基于自然样的粘合剂聚多巴胺(PDA)对形成的混合界面进行了化学可视化。结果表明,可以使用传统的牙科组织预处理方法(金刚石微钻、酸蚀)以及随后的碱化处理程序和开发的合成技术,创建具有增加的 O-Ca-O 键含量的均匀的仿生 PDA-混合界面。提出的加速 PDA-混合层沉积的技术的发展,以及具有抗菌性能的自组装仿生纳米复合材料的创建,未来可能会在微创牙科修复程序中得到临床应用。