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首页> 外文期刊>Journal of biomedical materials research, Part A >Injectable calcium sulfate/mineralized collagen-based bone repair materials with regulable self-setting properties.
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Injectable calcium sulfate/mineralized collagen-based bone repair materials with regulable self-setting properties.

机译:可注射硫酸钙/矿化胶原基骨修复材料,具有可调节的自定结构。

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摘要

An injectable and self-setting bone repair materials (nano-hydroxyapatite/collagen/calcium sulfate hemihydrate, nHAC/CSH) was developed in this study. The nano-hydroxyapatite/collagen (nHAC) composite, which is the mineralized fibril by self-assembly of nano-hydrocyapatite and collagen, has the same features as natural bone in both main hierarchical microstructure and composition. It is a bioactive osteoconductor due to its high level of biocompatibility and appropriate degradation rate. However, this material lacks handling characteristics because of its particle or solid-preformed block shape. Herein, calcium sulfate hemihydrate (CSH) was introduced into nHAC to prepare an injectable and self-setting in situ bone repair materials. The morphology of materials was observed using SEM. Most important and interesting of all, calcium sulfate dihydrate (CSD), which is not only the reactant of preparing CSH but also the final solidified product of CSH, was introduced into nHAC as setting accelerator to regulate self-setting properties of injectable nHAC/CSH composite, and thus the self-setting time of nHAC/CSH composite can be regulated from more than 100 min to about 30 min and even less than 20 min by adding various amount of setting accelerator. The compressive properties of bone graft substitute after final setting are similar to those of cancellous bone. CSD as an excellent setting accelerator has no significant effect on the mechanical property and degradability of bone repair materials. In vitro biocompatibility and in vivo histology studies demonstrated that the nHAC/CSH composite could provide more adequate stimulus for cell adhesion and proliferation, embodying favorable cell biocompatibility and a strong ability to accelerate bone formation. It can offer a satisfactory biological environment for growing new bone in the implants and for stimulating bone formation.
机译:本研究开发了一种可注射和自置骨修复材料(纳米 - 羟基磷灰石/胶原/硫酸钙半水合物,NHAC / CSH)。纳米羟基磷灰石/胶原(NHAC)复合材料,其是通过纳米氢麦磷灰石和胶原的自组装成矿化原纤维,具有与主要等级微观结构和组成的天然骨骼相同的特征。由于其高水平的生物相容性和适当的降解速率,它是一种生物活性骨腐极导体。然而,由于其颗粒或固体预成型的块形状,这种材料缺乏处理特性。在此,将硫酸钙半水合物(CSH)引入NHAC中,以制备原位骨修复材料的可注射和自定义。使用SEM观察材料的形态。所有重要和有趣的所有硫酸钙二水合物(CSD),这不仅是制备CSH的反应物,也不仅将CSH的最终固化产物引入NHAC中,以调节注射NHAC / CSH的自定义性能复合材料,因此通过添加各种量的设定的加速器,可以将NHAC / CSH复合材料的自设定时间从大于100分钟调节到约30分钟,甚至小于20分钟。骨移植物替代在最终设置后的压缩性能与松质骨骼相似。 CSD作为优异的设定促进剂对骨修复材料的机械性能和可降解性没有显着影响。体外的生物相容性和体内组织学研究表明,NHAC / CSH复合材料可以提供更适当的细胞粘附和增殖刺激,体现有利的细胞生物相容性和加速骨形成的强能力。它可以提供令人满意的生物环境,用于种植植入物中的新骨骼和刺激骨形成。

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