Li P, Ohtsuki C, Kokubo T, Nakanishi K, Soga N, de Groot K
Faculty of Engineering, Kyoto University, Japan.
J Biomed Mater Res. 1994 Jan;28(1):7-15. doi: 10.1002/jbm.820280103.
Pure soluble silica prepared by a sol-gel method induced bone-like hydroxyapatite formation onto its surface when the silica was immersed in a simulated body fluid (SBF), whereas silica glass and quartz did not. This finding directly supports the hypothesis that hydrated silica plays an important role in biologically active hydroxyapatite formation on the surfaces of bioactive glasses and glass-ceramics, which leads to bone-bonding. Gel-derived titania is also a hydroxyapatite inducer because of its abundant TiOH groups. These results provide further insight into the unique osseointegration of titanium and its alloys. It is suspected that gel-derived titania develops an apatite layer by taking calcium and phosphate from the body fluid, thus producing bone-bonding. Although sufficient AlOH groups may remain in the alumina gel, they do not serve to initiate apatite generation when immersed in SBF. This phenomenon explains the fact that an intermediate fibrous tissue is usually found to separate the alumina implant from bone. One may infer that both abundant OH groups and negatively charged surfaces of gel-derived silica and titania are important for hydroxyapatite induction. material which possesses and/or develops both a negatively charged surface and abundant OH groups in a physiologically-related fluid is most likely to be an efficient apatite inducer. Such materials are suitable candidates to serve as bone-bonding biomaterials.
通过溶胶 - 凝胶法制备的纯可溶性二氧化硅,当将其浸入模拟体液(SBF)中时,会在其表面诱导形成类骨羟基磷灰石,而石英玻璃和石英则不会。这一发现直接支持了以下假设:水合二氧化硅在生物活性玻璃和玻璃陶瓷表面生物活性羟基磷灰石的形成中起重要作用,这导致了骨结合。凝胶衍生的二氧化钛也是一种羟基磷灰石诱导剂,因为其含有大量的TiOH基团。这些结果为钛及其合金独特的骨整合提供了进一步的见解。据推测,凝胶衍生的二氧化钛通过从体液中摄取钙和磷来形成磷灰石层,从而产生骨结合。尽管氧化铝凝胶中可能保留足够的AlOH基团,但当浸入SBF中时,它们并不能引发磷灰石的生成。这一现象解释了通常会发现中间纤维组织将氧化铝植入物与骨分开的事实。可以推断,凝胶衍生的二氧化硅和二氧化钛的大量OH基团和带负电荷的表面对于羟基磷灰石的诱导都很重要。在生理相关流体中具有和/或形成带负电荷表面和大量OH基团的材料最有可能是一种有效的磷灰石诱导剂。这些材料是用作骨结合生物材料的合适候选者。