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首页> 外文期刊>Materials Letters >Porous fluorhydroxyapatite-magnesium-gelatin novel composite scaffold based on freeze-drying mechanism for bone tissue engineering application
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Porous fluorhydroxyapatite-magnesium-gelatin novel composite scaffold based on freeze-drying mechanism for bone tissue engineering application

机译:基于冷冻干燥机制的骨组织工程应用,多孔氟羟基磷灰石 - 镁 - 明胶新型复合支架

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Porous fluorhydroxyapatite (FHA)/magnesium (Mg)/gelatin (Gel) scaffolds with various amounts of FHA (30, 40, 50 wt%) were fabricated through freeze-drying procedure. Microscopic investigations indicated a porous microstructure with pores diameter in the range of 150-250 mu m, which is acceptable for osteoblastic cells to proliferate. Additionally, successful replacement of fluorine ion in the structure of hydroxyapatite and suitable incorporation of compounds in the scaffolds were verified. Hence increasing the amount of fluohydroxyapatite in the structure of scaffolds has also played a significant role in improving mechanical properties and promoting biological aspects. The results showed that using Mg, Gel and FHA as a fuctional compound, due to the development of non-toxic aspects and mechanical properties, can lead to a massive evolution in bone tissue engineering applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过冷冻干燥程序制造具有各种量FHA(30,40,50wt%)的多孔氟羟基磷灰石(FHA)/镁(Mg)/明胶(凝胶)支架。微观研究表明,具有孔径的多孔微观结构,其范围为150-250μm,可接受骨细胞促进骨细胞。另外,验证了羟基磷灰石结构中的氟离子的成功替代,并在支架中合适地掺入支架中的化合物。因此,增加支架结构中的氟羟基磷灰石的量也在改善机械性能和促进生物学方面的显着作用。结果表明,由于无毒方面的发展和机械性能,使用Mg,凝胶和FHA作为灭篷化合物,可以导致骨组织工程应用中的大规模演变。 (c)2019 Elsevier B.v.保留所有权利。

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