Lyutova Ekaterina S, Tkachuk Valeriya A, Zakharkiva Alexandra M, Borilo Lyudmila P, Buzaev Aleksandr A, Chen Yu-Wen
National Research Tomsk State University, 36 Lenina Avenue, Tomsk 634050, Russia.
Department of Chemical Engineering, National central University, Jhongli 32001, Taiwan.
ACS Omega. 2024 Feb 2;9(6):6880-6887. doi: 10.1021/acsomega.3c08268. eCollection 2024 Feb 13.
The spherical materials TiO-SiO-PO/CaO, TiO-SiO-PO/LaO, and TiO-SiO-PO/ZnO deposited on the Tokem-250 cation exchanger have been synthesized with an alcoholic solution by the sol-gel method. The macroporous cation exchanger Tokem-250, which has high Ca, Zn, and La ion selectivity, was used in the present study. This material has the ability to precipitate and mineralize calcium phosphates on its surface in biological media, since it has high porosity, a homogeneous structure with a uniform variation of elements, and the presence of active centers (Si, Ti) on the surface. The effect of lanthanum and zinc additives on biological properties has been studied. It was established that accumulation of Ca and Mg occurs faster on the surface of TiO-SiO-PO/ZnO in the SBF (simulated body fluid) model solution, showing higher reaction capacity. The amount of calcium and phosphorus ions on the surface of sample TiO-SiO-PO/LaO is greater due to the ability of lanthanum to coordinate a large number of ions (lanthanum coordination number is 10). The presence of zinc ions in the system causes the partial hemoglobin release from erythrocytes into the supernatant fluid. The samples with lanthanum ions reduce the amount of protein in plasma after incubation, which has a positive effect on the practical application.
通过溶胶 - 凝胶法,用醇溶液合成了负载在Tokem - 250阳离子交换剂上的球形材料TiO - SiO - PO/CaO、TiO - SiO - PO/LaO和TiO - SiO - PO/ZnO。本研究使用了对Ca、Zn和La离子具有高选择性的大孔阳离子交换剂Tokem - 250。这种材料能够在生物介质中在其表面沉淀和矿化磷酸钙,因为它具有高孔隙率、元素均匀变化的均匀结构以及表面存在活性中心(Si、Ti)。研究了镧和锌添加剂对生物学性质的影响。结果表明,在SBF(模拟体液)模型溶液中,Ca和Mg在TiO - SiO - PO/ZnO表面的积累更快,显示出更高的反应能力。由于镧能够配位大量离子(镧的配位数为10),样品TiO - SiO - PO/LaO表面的钙和磷离子量更大。体系中锌离子的存在导致红细胞中的部分血红蛋白释放到上清液中。含有镧离子的样品在孵育后可降低血浆中的蛋白质含量,这对实际应用具有积极作用。