School of Materials Science and Engineering, Zhengzhou University, Zhengzhou, China.
Colloids Surf B Biointerfaces. 2011 Nov 1;88(1):254-9. doi: 10.1016/j.colsurfb.2011.06.040. Epub 2011 Jul 6.
In present paper, an in vivo study was carried out on uncoated and calcium-deficient hydroxyapatite (Ca-def HA) coated Mg-Zn-Ca alloy to investigate the effect of Ca-def HA coating on the degradation behavior and bone response of magnesium substrate. Magnesium alloy rods were implanted into rabbit femora and evaluated during 24 weeks implantation. The characterization of both implants indicates that in vivo degradation of the Ca-def HA coating and magnesium substrate occurs almost simultaneously, and in vivo valid life of the coating is about 8 weeks, after that the degradation rate of the coated implants increases obviously. The main reasons for the Ca-def HA coating degradation can be attributed to its reaction with body fluid and the substitution of Mg(2+) ions in Ca-def HA. Histopathological examinations show that the Ca-def HA coating has good osteoconductivity and is in favor of the formation of more new bone on the surface of magnesium alloy. So the Ca-def HA coating could not only slow down in vivo degradation of magnesium alloy but also improve its bone response.
本研究对未涂层和缺钙羟基磷灰石(Ca-def HA)涂层的 Mg-Zn-Ca 合金进行了体内研究,旨在探讨 Ca-def HA 涂层对镁基体降解行为和骨反应的影响。将镁合金棒植入兔股骨中,并在植入后 24 周进行评估。对两种植入物的特性分析表明,Ca-def HA 涂层和镁基体的体内降解几乎是同时发生的,涂层的体内有效寿命约为 8 周,之后涂层植入物的降解速率明显增加。Ca-def HA 涂层降解的主要原因可归因于其与体液的反应以及 Ca-def HA 中 Mg(2+)离子的取代。组织病理学检查表明,Ca-def HA 涂层具有良好的骨诱导性,有利于在镁合金表面形成更多的新骨。因此,Ca-def HA 涂层不仅可以减缓镁合金的体内降解,还可以改善其骨反应。