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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry >Calcification mechanism and bony bonding studies of calcium carbonate and composite aluminosilicate/calcium phosphate applied as biomaterials by using radioactivation methods
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Calcification mechanism and bony bonding studies of calcium carbonate and composite aluminosilicate/calcium phosphate applied as biomaterials by using radioactivation methods

机译:碳酸钙和铝硅酸盐/磷酸钙复合材料作为生物材料的放射性机理及钙化机理研究

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摘要

Bony grafts are used as a filling biomaterial for defective bone. The introduction of new range of synthetic materials offers to surgeons additional possibilities to avoid virus transmission risks by using natural grafts in bony surgery. In this work, two materials, synthetic calcium carbonate and composite aluminosilicate/calcium phosphate were synthesized by an original method and experimented “in vivo” as biomaterials for bony filling. Extracted biopsies were studied by several physico chemical and biological methods. The aim was to evaluate the kinetic resorption and bioconsolidation of these materials. We focused on the bioconsolidation between implant and bone by realising cartographies from the implant to the bone and on the calcification mechanism by determination of the origin of Ca and Sr responsible of the neo-formed bone. Neutron activation analysis (NAA), radiotracers 45Ca* and 85Sr* and proton-induced X-ray emission (PIXE) were used. Concerning the synthetic calcium carbonate, results show that twelve months after implantation, the mineral composition of implant becomes similar to that of the mature bone. The neoformed bone is composed with Ca and Sr coming from the organism when the Ca and Sr of the implant were progressively eliminated. Concerning the composite geopolymer/calcium phosphate, PIXE and histological studies reveal the intimate links between the bone and the implant starting with the first month after implantation.
机译:骨移植物用作骨缺损的填充生物材料。新型合成材料的引入为外科医生提供了在骨外科手术中使用天然移植物来避免病毒传播风险的更多可能性。在这项工作中,通过原始方法合成了两种材料,即合成碳酸钙和铝硅酸盐/磷酸钙复合材料,并在“体内”作为骨填充的生物材料进行了实验。通过几种物理化学和生物学方法研究了提取的活组织检查。目的是评估这些材料的动力学吸收和生物固结。通过实现从植入物到骨骼的制图,我们专注于植入物与骨骼之间的生物固结,并通过确定负责新形成骨骼的Ca和Sr的来源来研究钙化机制。使用中子活化分析(NAA),放射性示踪剂45 Ca *和85 Sr *以及质子诱导的X射线发射(PIXE)。关于合成碳酸钙,结果表明,植入后十二个月,植入物的矿物质成分变得与成熟骨骼的矿物质成分相似。当逐渐消除植入物的Ca和Sr时,新形成的骨骼由来自生物体的Ca和Sr组成。关于复合地质聚合物/磷酸钙,PIXE和组织学研究表明,从植入后的第一个月开始,骨骼与植入物之间就存在着紧密的联系。

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    Campus de Beaulieu Université de Rennes 1 CNRS-UMR 6226 263 av. Général Leclerc 35042 Rennes France;

    Campus de Beaulieu Université de Rennes 1 CNRS-UMR 6226 263 av. Général Leclerc 35042 Rennes France;

    Campus de Beaulieu Université de Rennes 1 CNRS-UMR 6226 263 av. Général Leclerc 35042 Rennes France;

    Campus de Beaulieu Université de Rennes 1 CNRS-UMR 6226 263 av. Général Leclerc 35042 Rennes France;

    Campus de Beaulieu Université de Rennes 1 CNRS-UMR 6226 263 av. Général Leclerc 35042 Rennes France;

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