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Nucleation and Growth of Bone-like Apatite on Surfaces of Metals, Ceramics and Polymers in Simulated Body Fluids

机译:在模拟体液中金属,陶瓷和聚合物表面的骨状磷灰石的成核和生长

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The biomimetic approach of mineralization in vitro is adopted to investigate systematically the nucleation and growth of bone-like apatite on the surface of biomaterials such as bioceramics, metals and polymers, and those chemically surface-treated. The simulated environment is kept isothermic at the human body temperature of 36.5C with three kinds of simulated physiological fluids. The experimental results show that (1) inherent properties of biomaterials determine their bioactivity and the different crystalline structure of same materials results in the difference in bioactivity; (2) the bioactivity can effectively be improved by the surface treatment of biomaterials via chemical methods and by the addition of bioactive particles in a polymer matrix; (3) the bone-like apatite, nucleated and grown in the simulated body fluid with the same ion concentrations to that of the human plasma, possesses the same composition, structure and morphology despite of matrixes; (4) the difference in bioactivity with biomaterials is indicated by the different time for bone-like apatite to nucleate and to grow on their surfaces.
机译:体外矿化的仿生方法被采用来系统地研究的成核和生长的骨样磷灰石的生物材料如生物陶瓷,金属和聚合物的表面上,和那些化学表面处理。模拟环境是在人体体温36.5℃的具有三种模拟生理体液的保持等温。实验结果表明:(1)生物材料的固有性质确定其生物活性和在生物活性的差异相同的材料的结果不同的晶体结构; (2)生物活性能有效地通过经由化学方法,通过加入在聚合物基质中的生物活性颗粒的生物材料的表面处理来改善; (3)类骨磷灰石,成核并在使用相同的离子浓度,以使得人血浆的模拟体液中生长,具有相同的组成,结构和形态,尽管矩阵的; (4)用的生物材料中的生物活性的差异是由不同的时间对类骨磷灰石成核并在其表面上生长指示。

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