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首页> 外文期刊>Journal of Materials Science and Chemical Engineering >Evaluation of Two Highly Porous Microcrystalline Biphasic Calcium Phosphate-Based Bone Grafts for Bone Regeneration: An Experimental Study in Rabbits
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Evaluation of Two Highly Porous Microcrystalline Biphasic Calcium Phosphate-Based Bone Grafts for Bone Regeneration: An Experimental Study in Rabbits

机译:评价两种高孔微晶双相磷酸盐基骨再生骨移植物:兔的实验研究

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A biphasic bone grafting biomaterial based on a mixture of calcium phosphates and beta-tricalcium phosphate ( β -TCP) phases with high nanoporosity was synthesized. The synthesis route was based on calcium phosphate composition and the incorporation of glycolic acid as a pore former, giving a material composed of 97% β -TCP and 3% calcium orthophosphates (CaPO_(4)). An i n vitro study of the purity, microstructure, crystalline domain, and pores size for the material obtained was performed by SEM analysis as well as full structural characterization. The region of interest related to the surface was determined by the specific surface area measured with the BET method. In vivo evaluation of bone response was performed by implanting the new low-cost biphasic manufacturing material synthesized in this work, which was compared with a biphasic material of similar chemical and microstructural composition existing in the commercial market and with higher cost called Synergy Odontit~( ® ) β -TCP. The materials were implanted separately into 5 mm diameter defects in the tibias of New Zealand White rabbits at 30, 60, and 90 days. The results obtained showed that the host tissue well accepted the new biphasic material; the presence of new bone formation was observed. A more complete resorption was observed for the new microcrystalline biphasic material compared to for a commercial β -TCP material.
机译:合成基于磷酸钙和β-三钙(β-TCP)相的混合物的双相骨移植生物材料合成,合成具有高纳米孔隙度的磷酸钙(β-TCP)相。合成途径基于磷酸钙组合物和乙醇酸的掺入作为孔前成形物,给出由97%β-TCP和3%官能磷酸钙(Capo_(4))组成的材料。通过SEM分析和全结构表征进行所得材料的纯度,微观结构,结晶结构域和孔尺寸的I n体外研究。与表面相关的感兴趣区域由用BET方法测量的比表面积确定。在体内评估骨反应通过植入在这项工作中合成的新的低成本双相制造材料进行,与商业市场中存在的类似化学和微观结构组合物的双相材料进行比较,并且具有更高的成本称为Synergy Odontit〜( ®)β-TCP。将材料分别植入到新西兰白兔的胫骨上的5毫米缺陷,30,60,60天。得到的结果表明,宿主组织很好地接受了新的双相材料;观察到新骨形成的存在。与商业β-TCP材料相比,新的微晶双相材料观察到新的微晶双相材料更完全的吸收。

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