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Characterization of biomimetically synthesized Hap–Gel nanocomposites as bone substitute

机译:仿生合成的Hap–Gel纳米复合材料作为骨替代物的表征

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摘要

There is an increasing demand for an affordable and easy-to-fabricate material to help patients having a long bone gap. In this paper, we describe the biomimetic synthesis of Hap–Gel in situ nanocomposite powders with varied proportions. Their biocompatibility and bone regeneration abilities were assessed on a rabbit model. The use of Hap crystals and Gel molecule, the soluble form of bone protein, makes the nanocomposites comparable to natural bone in constituents. The application of biomimetic principles improves crystal morphology and the interaction of Hap crystals with the Gel molecules as seen through in vitro characterizations. Out of the various compositions studied, one with 80:20 proportions of Hap to Gel proved to be closest to the characteristics of natural bone. The immunological response to this composite, assessed through intradermal inoculation, did not reveal any reaction. The in vivo implantation studies in the femoral condyle of the animals, as assessed by serial post-operative follow-up radiography and the histological evaluation, revealed a good biocompatibility and bone-regeneration ability of the material. Thus, nanocomposites of Hap–Gel have a great potential for serving as an effective and affordable biomaterial for bone grafting applications.
机译:人们越来越需要负担得起且易于制造的材料来帮助具有长骨间隙的患者。在本文中,我们描述了仿生合成Hap-Gel原位纳米复合粉体的方法。在兔子模型上评估了它们的生物相容性和骨再生能力。 Hap晶体和凝胶分子(骨蛋白的可溶形式)的使用使纳米复合材料的成分与天然骨相当。仿生原理的应用可以改善晶体形态,并通过体外表征观察到Hap晶体与Gel分子的相互作用。在研究的各种成分中,Hap与Gel的比例为80:20的成分被证明与天然骨的特性最接近。通过皮内接种评估了对该复合物的免疫反应,未发现任何反应。通过连续的术后放射照相和组织学评估,对动物股骨dy进行的体内植入研究表明该材料具有良好的生物相容性和骨再生能力。因此,Hap-Gel纳米复合材料具有巨大的潜力,可作为一种有效且价格合理的生物材料用于骨移植应用。

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