Solid State Physics and Nanostructures Department, Voronezh State University, University sq.1, 394018 Voronezh, Russia.
Scientific and Educational Center "Nanomaterials and Nanotechnologies", Ural Federal University named after the first President of Russia B. N. Yeltsin, Mir av., 620002 Yekaterinburg, Russia.
Int J Mol Sci. 2021 Jun 17;22(12):6510. doi: 10.3390/ijms22126510.
The aim of this work is to develop a biomimetic interface between the natural tooth tissue and the restorative composite and to study it on the basis of synchrotron micro-FTIR mapping and multidimensional processing of the spectral data array. Using hierarchical cluster analysis of 3D FTIR data revealed marked improvements in the formation of the dentine/adhesive/dental hybrid interface using a biomimetic approach. The use of a biomimetic strategy (application of an amino acid-modified primer, alkaline calcium and a nano-c-HAp-modified adhesive) allowed the formation of a matrix that can be structurally integrated with natural dentine and dental composite. The biomimetic hybrid layer was characterised by homogeneous chemical composition and a higher degree of conversion of the adhesive during polymerisation, which should provide optimal integration of the dental composite with the dentine.
本工作旨在开发一种仿生界面,使天然牙组织与修复复合材料相连接,并基于同步加速器微傅里叶变换红外光谱映射和光谱数据矩阵的多维处理对其进行研究。采用分层聚类分析三维傅里叶变换数据,结果表明,仿生方法可明显改善牙本质/黏结剂/牙本质复合界面的形成。仿生策略的应用(使用氨基酸改性底漆、碱性钙和纳米 c-HAp 改性黏结剂)允许形成一种基质,该基质可以与天然牙本质和牙复合树脂在结构上整合。仿生混合层的特点是化学组成均匀,黏结剂聚合过程中的转化率更高,这应为牙复合树脂与牙本质的最佳整合提供条件。