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Processing, properties, and in vitro bioactivity of polysulfone-bioactive glass composites

机译:聚砜-生物活性玻璃复合材料的加工,性能和体外生物活性

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The mismatch between the mechanical properties of bioceramics and natural tissue has restricted in several cases a wider application of ceramics in medical and dental fields. To overcome this problem, polymer matrix composites can be designed to combine bioactive properties of some bioceramics with the superior mechanical properties of some engineering plastics. In this work, polymer particulate composites composed of a high mechanical-property polymer and bioactive glass particles were produced and both the in vitro bioactivity and properties of the system were investigated. Composites with different volume fraction and particle size were prepared. In vitro tests showed that hydroxy-carbonate-apatite can be depos-ited on the surface of a composite as early as 20 h in a simulated body fluid. Ionic evolution from a composite with 40 percent volume fraction of particles was demonstrated to be similar to bulk bioactive glasses. The mechanical properties of some of the obtained composites had values comparable with the ones reported for bone. Moreover, a physical model based on dynamical mechanical tests showed evidences that the interface of the composite was aiding in the stress transfer process.
机译:在某些情况下,生物陶瓷与天然组织的机械性能之间的不匹配限制了陶瓷在医学和牙科领域的广泛应用。为了克服这个问题,可以设计聚合物基复合材料以将某些生物陶瓷的生物活性与某些工程塑料的优异机械性能相结合。在这项工作中,生产了由高机械性能聚合物和生物活性玻璃颗粒组成的聚合物颗粒复合材料,并研究了该系统的体外生物活性和性能。制备了具有不同体积分数和粒径的复合材料。体外试验表明,碳酸羟基磷灰石最早可在20 h的模拟体液中沉积在复合材料的表面。离子从体积分数为40%的复合材料中析出的过程与大块生物活性玻璃相似。一些获得的复合材料的机械性能具有与报道的骨相当的值。此外,基于动态力学测试的物理模型表明,复合材料的界面有助于应力传递过程。

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