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首页> 外文期刊>Science of advanced materials >Biological Evaluation of Polydimethylsiloxane Modified by Calcium Phosphate Nanoparticles for Potential Application in Spine Surgery
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Biological Evaluation of Polydimethylsiloxane Modified by Calcium Phosphate Nanoparticles for Potential Application in Spine Surgery

机译:磷酸钙纳米粒子修饰的聚二甲基硅氧烷在脊柱外科手术中的潜在应用的生物评价

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摘要

The biological properties of a composite made of polydimethylsiloxane matrix and two kinds of calcium phosphate nanoparticles (hydroxyapatite, beta tricalcium phosphate) were tested by means of in vitro and in vivo investigations. Chemical and phase analyses of the nanoparticles were performed. The effects of different volume fractions of nanoparticles were investigated. Human osteoblast-like cell cultures (MG 63) demonstrated that the addition of 5-15 vol.% of nanoparticles had a significantly positive effect on osteoblast viability, and that high concentration did not support cell proliferation. The highest rates of osteointegration in pig bone were attained for implants modified by 15 vol.% hydroxyapatite and more intensive formation of new bone tissue was observed. Our study indicates that hydroxyapatite probably better imitates the composition and structure of the mineral phase of real bone.
机译:通过体外和体内研究,测试了由聚二甲基硅氧烷基质和两种磷酸钙纳米颗粒(羟基磷灰石,β-磷酸三钙)制成的复合材料的生物学特性。进行了纳米颗粒的化学和相分析。研究了纳米颗粒的不同体积分数的影响。人类成骨细胞样细胞培养物(MG 63)证明,添加5-15 vol。%的纳米颗粒对成骨细胞的活力具有明显的积极影响,并且高浓度不支持细胞增殖。用15%(体积)的羟基磷灰石修饰的植入物可以达到猪骨中最高的骨整合率,并且观察到新骨组织形成的强度更高。我们的研究表明,羟基磷灰石可能更好地模仿了真实骨骼的矿物相的组成和结构。

著录项

  • 来源
    《Science of advanced materials 》 |2013年第5期| 484-493| 共10页
  • 作者单位

    Department of Composite and Carbon Materials, Institute of Rock Structure and Mechanics,Academy of Sciences of the Czech Republic, v.v.i., V HoleSovidkach 41, 182 09 Prague 8, Czech Republic,Faculty of Mechanical Engineering, Department of Mechanics, Czech Technical University in Prague,Biomechanics and Mechatronics, Technicka 4, 166 07 Prague 6, Czech Republic;

    Department of Composite and Carbon Materials, Institute of Rock Structure and Mechanics,Academy of Sciences of the Czech Republic, v.v.i., V HoleSovidkach 41, 182 09 Prague 8, Czech Republic;

    Department of Composite and Carbon Materials, Institute of Rock Structure and Mechanics,Academy of Sciences of the Czech Republic, v.v.i., V HoleSovidkach 41, 182 09 Prague 8, Czech Republic;

    1st Faculty of Medicine, Institute of Anatomy, Charles University, U Nemocnice 3, 128 00 Prague 2, Czech Republic;

    Department of Composite and Carbon Materials, Institute of Rock Structure and Mechanics,Academy of Sciences of the Czech Republic, v.v.i., V HoleSovidkach 41, 182 09 Prague 8, Czech Republic;

    Department of Composite and Carbon Materials, Institute of Rock Structure and Mechanics,Academy of Sciences of the Czech Republic, v.v.i., V HoleSovidkach 41, 182 09 Prague 8, Czech Republic;

    Institute of Physiology, Academy of Sciences of the Czech Republic, v.v.i., Videnska 1083,142 20 Prague 4, Czech Republic;

    Institute of Physiology, Academy of Sciences of the Czech Republic, v.v.i., Videnska 1083,142 20 Prague 4, Czech Republic;

    Institute of Physiology, Academy of Sciences of the Czech Republic, v.v.i., Videnska 1083,142 20 Prague 4, Czech Republic;

    Nanotechnology Centre, VSB-Technical University of Ostrava, 17. Listopadu 1512172, Ostrava-Poruba, 708 33,Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Composite Materials; Biomaterials; Polymers; Ceramics;

    机译:复合材料;生物材料;聚合物;陶瓷;

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