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In vitro and in vivo evaluation of silicated hydroxyapatite and impact of insulin adsorption

机译:二氧化硅羟基磷灰石的体内外评价及胰岛素吸附的影响

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摘要

This study evaluates the biological behaviour, in vitro and in vivo, of silicated hydroxyapatite with and without insulin adsorbed on the material surface. Insulin was successfully adsorbed on hydroxyapatite and silicated hydroxyapatite bioceramics. The modification of the protein secondary structure after the adsorption was investigated by means of infrared and circular dichroism spectroscopic methods. Both results were in agreement and indicated that the adsorption process was likely to change the secondary structure of the insulin from a majority of α-helix to a β-sheet form. The biocompatibility of both materials, with and without adsorbed insulin on their surface, was demonstrated in vitro by indirect and direct assays. A good viability of the cells was found and no proliferation effect was observed regardless of the material composition and of the presence or absence of insulin. Dense granules of each material were implanted subcutaneously in mice for 1, 3 and 9 weeks. At 9 weeks of implantation, a higher inflammatory response was observed for silicated hydroxyapatite than for pure hydroxyapatite but no significant effect of adsorbed insulin was detected. Though the presence of silicon in hydroxyapatite did not improve the biological behaviour, the silicon substituted hydroxyapatite remained highly viable.
机译:这项研究评估了有和没有胰岛素吸附在材料表面上的二氧化硅羟基磷灰石的体外和体内生物学行为。胰岛素已成功吸附在羟基磷灰石和硅化羟基磷灰石生物陶瓷上。通过红外和圆二色光谱法研究了吸附后蛋白质二级结构的修饰。两项结果一致,表明吸附过程可能会将胰岛素的二级结构从大多数的α-螺旋转变为β-折叠形式。通过间接和直接测定在体外证明了两种材料在其表面上有和没有吸附胰岛素的生物相容性。发现细胞具有良好的生存力,并且没有观察到增殖作用,无论物质的组成和胰岛素的存在与否。将每种材料的致密颗粒皮下植入小鼠体内1、3和9周。植入9周后,观察到硅化羟基磷灰石的炎症反应高于纯羟基磷灰石的炎症反应,但未检测到明显的胰岛素吸收作用。尽管羟基磷灰石中硅的存在不能改善生物学行为,但是硅取代的羟基磷灰石仍然具有很高的可行性。

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  • 来源
    《Journal of materials science》 |2014年第10期|2383-2393|共11页
  • 作者单位

    Universite de Limoges, CNRS, SPCTS UMR 7315 Centre Europeen de la Ceramique, 12 rue Atlantis, 87068 Limoges, France;

    CBPF, Xavier Sigaud Street 140, Rio de Janeiro, RJ, Brazil;

    CBPF, Xavier Sigaud Street 140, Rio de Janeiro, RJ, Brazil;

    CBPF, Xavier Sigaud Street 140, Rio de Janeiro, RJ, Brazil;

    CBPF, Xavier Sigaud Street 140, Rio de Janeiro, RJ, Brazil;

    CBPF, Xavier Sigaud Street 140, Rio de Janeiro, RJ, Brazil;

    CBPF, Xavier Sigaud Street 140, Rio de Janeiro, RJ, Brazil;

    Universite de Limoges, CNRS, SPCTS UMR 7315 Centre Europeen de la Ceramique, 12 rue Atlantis, 87068 Limoges, France;

    Universite de Limoges, CNRS, SPCTS UMR 7315 Centre Europeen de la Ceramique, 12 rue Atlantis, 87068 Limoges, France;

    Universite de Limoges, CNRS, SPCTS UMR 7315 Centre Europeen de la Ceramique, 12 rue Atlantis, 87068 Limoges, France;

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