首页> 外文期刊>Acta biomaterialia >The in vitro bioactivity of two novel hydrophilic, partially degradable bone cements.
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The in vitro bioactivity of two novel hydrophilic, partially degradable bone cements.

机译:两种新型亲水性可部分降解的骨水泥的体外生物活性。

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摘要

Composite bone cements were prepared with bioactive glasses (MgO-SiO(2)-3CaO.P(2)O(5)) of different reactivities. The matrix of these so-called hydrophilic, partially degradable and bioactive cements was composed of a starch/cellulose acetate blend and poly(2-hydroxyethyl methacrylate). The addition of 30 wt.% of glasses to this system made them bioactive in acellular medium: a dense apatite layer formed on the surface after 7 days of immersion in simulated body fluid. This was demonstrated both by microscopic and infrared spectroscopic techniques. The composition of the glass and, consequently, its structure was found to have important effects on the rate of the apatite formation. The combination of reactivity obtained by one formulation with the hydrophilic and degradable character of these cements makes them a very promising alternative to conventional acrylic bone cements, by allowing a better stabilization of the implant and a stronger adhesion to the bone.
机译:复合骨水泥制备具有不同反应活性的生物活性玻璃(MgO-SiO(2)-3CaO.P(2)O(5))。这些所谓的亲水性,可部分降解的生物活性水泥的基质由淀粉/醋酸纤维素共混物和聚(甲基丙烯酸2-羟乙酯)组成。向该系统中添加30 wt。%的玻璃使它们在无细胞培养基中具有生物活性:浸入模拟体液7天后,在表面上形成了致密的磷灰石层。显微和红外光谱技术都证明了这一点。发现玻璃的组成及其结构对磷灰石的形成速率有重要影响。通过一种配方获得的反应性与这些胶粘剂的亲水性和可降解特性的结合,使植入物具有更好的稳定性并与骨头具有更强的附着力,使其成为常规丙烯酸类骨水泥的非常有前途的替代品。

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