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首页> 外文期刊>The international journal of artificial organs >Synthesis and characterization of a laminated hydroxyapatite/gelatin nanocomposite scaffold with controlled pore structure for bone tissue engineering.
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Synthesis and characterization of a laminated hydroxyapatite/gelatin nanocomposite scaffold with controlled pore structure for bone tissue engineering.

机译:具有可控孔隙结构的骨组织工程羟基磷灰石/明胶纳米复合层状支架的合成与表征。

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摘要

In this study, a nanostructured scaffold was designed for bone repair using hydroxyapatite (HA) and gelatin (GEL) as its main components. Nanopowders of HA were synthesized, and together with GEL, used to engineer a 3-dimensional nanocomposite combining 3 techniques of layer solvent casting, freeze-drying, and lamination. The results show that the scaffold possesses a 3-dimensional interconnected homogenous porous structure with a porosity of 82% and pore sizes ranging from 300 to 500 mum. It has also been shown that mechanical indices are in the range of spongy bones. Cultured osteoblast-like cells (SaOS-2) have shown an excellent level of cell attachment, migration, and penetration into the porosities of the nanocomposite scaffold. Here, we have shown that by a combination of widely available methods with simple experimental operations, nano-HA powders can be synthesized and used to make 3-dimensional HA/GEL nanocomposites in any desired shape, with mechanical properties comparable to spongy bone.
机译:在这项研究中,纳米结构支架被设计用于使用羟基磷灰石(HA)和明胶(GEL)作为其主要成分的骨修复。合成了HA纳米粉,并与GEL一起用于3维纳米复合材料的工程设计,结合了3种层溶剂浇铸,冷冻干燥和层压技术。结果表明,该支架具有3维互连的均匀多孔结构,其孔隙率为82%,孔径为300至500μm。还显示出机械指数在海绵状骨的范围内。培养的成骨细胞样细胞(SaOS-2)已表现出优异的细胞附着,迁移和渗透到纳米复合支架孔隙中的水平。在这里,我们已经表明,通过将广泛使用的方法与简单的实验操作相结合,可以合成纳米HA粉末,并将其用于制备任何所需形状的3维HA / GEL纳米复合材料,其机械性能可与海绵状骨媲美。

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