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Effect of HydroxyapatiteiFibroin Ratio on Hydroxyapatite/Fibroin/Chitosan Porous Scaffold Characteristics

机译:羟基磷钛素比对羟基磷灰石/纤维素/壳聚糖多孔支架特性的影响

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Autografting is a bone replacement technique used in orthopedic surgery. Bone tissue engineering is a new technique that offers promise, and could help alleviate this risk. Bioceramics, biopolymers or composite can be fabricated for artificial bone scaffold and used for bone regeneration. This study used three types of biomaterials - hydroxyapatite (HA), fibroin, and chitosan - to form porous scaffold. HA and fibroin were prepared from natural materials. HA was synthesized from mollusk shell by wet chemical precipitation method, while silk fibroin was extracted from silk worm's cocoons. The HA and fibroin were mixed in a variety of ratios along with a fixed amount of chitosan before fabricating composite porous scaffolds by freeze-drying. The resulting scaffolds were evaluated for biodegradability, biocompatibility, porosity pore morphology and mechanical property, The fabricated scaffolds had an interconnected porous structure with a pore size of 200-400 urn and porosity in a range of 93-95%. The average degradation rate of the scaffold in lysozyme was between 7-17% at 7 days. A biocompatibility test showed that the scaffold was non-cytotoxic, making it a good candidate for future bone tissue engineering applications.
机译:自动化是骨科手术中使用的骨替代技术。骨组织工程是一种提供承诺的新技术,可以帮助缓解这种风险。可以制造生物陶瓷,生物聚合物或复合材料用于人造骨支架并用于骨再生。本研究使用了三种类型的生物材料 - 羟基磷灰石(HA),纤维素和壳聚糖 - 形成多孔支架。 HA和纤维蛋白由天然材料制备。通过湿化学沉淀法从Mollusk壳合成HA,而丝纤维蛋白从丝绸蠕虫的茧中提取。在通过冷冻干燥制造复合多孔支架之前,在多种比率中,在多种比率中混合HA和纤维蛋白,并通过冷冻干燥制造复合多孔支架。得到了所得支架的用于生物降解性,生物相容性,孔隙率孔形态和机械性能,制造的支架具有孔径为200-400瓮的孔径,孔隙率在93-95%的范围内。在溶菌酶中支架的平均降解率在7天内在7-17%之间。一种生物相容性测试表明,支架是非细胞毒性的,使其成为未来骨组织工程应用的良好候选者。

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