Kozik Vladimir V, Borilo Lyudmila P, Lyutova Ekaterina S, Brichkov Anton S, Chen Yu-Wen, Izosimova Elena A
National Research Tomsk State University, 36 Lenina Avenue, Tomsk 634050, Russia.
Department of Chemical Engineering, National Central University, Zhongli, Taoyuan City 32001 Taiwan.
ACS Omega. 2020 Oct 15;5(42):27221-27226. doi: 10.1021/acsomega.0c03335. eCollection 2020 Oct 27.
The calcium phosphate spherical material with a hierarchical structure has been used as a bone implantation material. To improve the properties of the implant material, the compositions of calcium phosphate, silicon, and titanium are crucial. The presence of silicon on the surface of the phosphate-calcium material accelerates the bonding of the implant with the bone (osseointegration). The aim of this work was to develop a sol-gel method to prepare spherical calcium-phosphate@TiO-SiO biomaterials for bone implantation. The CaO@TiO-SiO biomaterial with a core-shell structure was synthesized by the sol-gel method. The biological properties of the materials were studied with a simulated body fluid (SBF). The sample had a spherical shape. The sample exhibited bioactive properties because an increase in the content of calcium and phosphorus ions in the shell and the presence of precipitated ions from the solution were detected on the surface. The TiO-SiO framework was uniformly fixed on the CaO core. Heat treatment of the hybrid mesostructure led to the formation of mesoporous materials with a specific regular structure in the nanometer size in the shell, which is necessary for the fixation of biological cells when the sample is introduced into the biological medium. The formation of a calcium-phosphate layer on the materials and the release of soluble silicon and calcium ions into the SBF are the key factors for the rapid connection of these materials with tissue. The results demonstrate that the CaO@TiO-SiO biomaterial with a core-shell structure is a good candidate for bone implantation.
具有分级结构的磷酸钙球形材料已被用作骨植入材料。为了改善植入材料的性能,磷酸钙、硅和钛的组成至关重要。磷酸钙材料表面硅的存在加速了植入物与骨的结合(骨整合)。这项工作的目的是开发一种溶胶 - 凝胶法来制备用于骨植入的球形磷酸钙@TiO - SiO生物材料。通过溶胶 - 凝胶法合成了具有核壳结构的CaO@TiO - SiO生物材料。用模拟体液(SBF)研究了材料的生物学性能。样品呈球形。该样品表现出生物活性,因为在其表面检测到壳中钙和磷离子含量增加以及溶液中沉淀离子的存在。TiO - SiO骨架均匀地固定在CaO核上。混合介观结构的热处理导致在壳中形成具有特定规则结构的纳米尺寸介孔材料,当将样品引入生物介质时,这对于生物细胞的固定是必要的。材料上磷酸钙层的形成以及可溶性硅和钙离子向SBF中的释放是这些材料与组织快速连接的关键因素。结果表明,具有核壳结构的CaO@TiO - SiO生物材料是骨植入的良好候选材料。