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Characterization of Hydroxyapatite/Silk Fibroin/Chitosan Scaffold for Cartilage Tissue Engineering

机译:羟基磷灰石/丝纤维蛋白/壳聚糖支架对软骨组织工程的表征

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Tissue engineering (TE) is a modern medical approach to reconstruct damage tissue in a shorter period. Scaffold is the main structure for cells adhesion and provides 3D space for cell proliferation and growth. Biomaterials were selected to fabricate a scaffold according to properties and target tissues. In this study, Hydroxyapatite (HA), Silk Fibroin (SF), and Chitosan (CS) were selected to fabricate the scaffold in different combination ratios by freeze drying (FD) technique. According to the physical properties of the fabricated scaffold, cartilage tissue was selected as a study target area for the future medical application. Scaffold characterization was performed to observe the scaffolds properties in each materials ratio. In this study, CS scaffold provided highest abilities which related to cartilage tissue structure. Moreover, the combination of SF in CS provided highest ability for cartilage cell proliferation in vitro. Therefore, CS could be used as a cartilage scaffold for cartilage TE and SF could be added to increased the cells viability of the scaffold.
机译:组织工程(TE)是一种在较短时期重建损伤组织的现代医学方法。支架是细胞粘附的主要结构,并为细胞增殖和生长提供3D空间。选择生物材料以根据性质和靶组织制造支架。在该研究中,选择羟基磷灰石(HA),丝素蛋白(SF)和壳聚糖(CS),通过冷冻干燥(FD)技术在不同的组合比中制造支架。根据制造的支架的物理性质,选择软骨组织作为未来医学应用的研究目标区域。进行支架表征以观察每个材料比中的支架性质。在本研究中,CS支架提供了与软骨组织结构有关的最高能力。此外,CS中的SF中的组合为软骨细胞增殖的体外提供了最高能力。因此,Cs可以用作软骨TE的软骨支架,并且可以加入SF以增加支架的电池活力。

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