Saravanapavan Priya, Jones Julian R, Pryce Russell S, Hench Larry L
Tissue Engineering Centre, Department of Materials, Imperial College of Science, Technology and Medicine, Prince Consort Road, London SW7 2BP, United Kingdom.
J Biomed Mater Res A. 2003 Jul 1;66(1):110-9. doi: 10.1002/jbm.a.10532.
Bioactive glasses react chemically with body fluids in a manner that is compatible with the repair processes of the tissues. This results in the formation of an interfacial bond between the glasses and living tissue. Bioactive glasses also stimulate bone-cell proliferation. This behavior is dependent on the chemical composition as well as the surface texture of the glasses. It has been recently reported that gel-derived monolith specimens in the binary SiO2 - CaO are bioactive over a similar molar range of SiO2 content as the previously studied ternary CaO-P2O5-SiO2 system. In this report, the preparation and bioactivity of the binary gel-glass powder with 70 mol % SiO2 is discussed and its bioactivity is compared with the melt-derived 45S5 (quaternary) Bioglass and sol-gel-derived 58S (ternary) bioactive gel-glass compositions. Dissolution kinetic parameters K(1) and K(2) were also computed based on the silicon release for all glass powders. It was shown that the simple two-component SiO2-CaO gel-glass powder is bioactive with comparable dissolution rates as the clinically used melt-derived 45S5 Bioglass powder and extensively studied sol-gel-derived 58S gel-glass powder.
生物活性玻璃与体液发生化学反应的方式与组织的修复过程相兼容。这导致在玻璃与活组织之间形成界面结合。生物活性玻璃还能刺激骨细胞增殖。这种行为取决于玻璃的化学成分以及表面质地。最近有报道称,二元SiO₂ - CaO体系中凝胶衍生的整体试样在与先前研究的三元CaO - P₂O₅ - SiO₂体系相似的SiO₂含量摩尔范围内具有生物活性。在本报告中,讨论了含70 mol% SiO₂的二元凝胶玻璃粉末的制备和生物活性,并将其生物活性与熔融衍生的45S5(四元)生物玻璃以及溶胶 - 凝胶衍生的58S(三元)生物活性凝胶玻璃成分进行了比较。还基于所有玻璃粉末的硅释放量计算了溶解动力学参数K(1)和K(2)。结果表明,简单的二元SiO₂ - CaO凝胶玻璃粉末具有生物活性,其溶解速率与临床使用的熔融衍生的45S5生物玻璃粉末以及广泛研究的溶胶 - 凝胶衍生的58S凝胶玻璃粉末相当。