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Porous Carbonated Hydroxyapatite-Based Paraffin Wax Nanocomposite Scaffold for Bone Tissue Engineering: A Physicochemical Properties and Cell Viability Assay Analysis

机译:基于多孔碳酸羟基磷灰石的石蜡蜡纳米复合支架用于骨组织工程:物理化学性质和细胞活力测定分析

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Porosity is one of the parameters of scaffold pore structure that must be developed using paraffin wax as a synthetic polymer for making porous bioceramics carbonated hydroxyapatite (CHA). This study fabricated CHA based on abalone mussel shells (Halioitis asinina); CHA/paraffin wax nanocomposite scaffolds were synthesized using paraffin wax with concentration variations of 10, 20, and 30 wt.%. The energy-dispersive X-ray spectroscopy (EDS) results showed that the Ca/P molar ratio of CHA was 1.72, which approaches the natural bone. The addition of paraffin wax in all concentration variation treatments caused the crystallographic properties of the CHA/paraffin wax nanocomposite scaffolds to decrease. The results of pore analysis suggest that the high concentration of paraffin wax in the CHA suspension is involved in the formation of more pores on the surface of the scaffold, but only CHA/paraffin wax 30 wt.% had a scaffold with potential to be used in media with a cellular growth orientation. The micropore analysis was also supported by the cell viability assay results for CHA/paraffin wax 30 wt.% nanocomposite scaffold, where serial doses of scaffold concentrations to mouse osteoblast cells were secure. Overall, based on this analysis, the CHA/paraffin wax scaffold can be a candidate for bone tissue engineering.
机译:孔隙率是支架孔结构的参数之一,必须使用石蜡蜡作为合成聚合物来开发,用于制备多孔生物陶瓷碳酸羟基磷灰石(CHA)。本研究制作了基于鲍鱼贻贝壳(卤代氏炎)的CHA;使用浓度变化为10,20和30重量%的石蜡蜡合成CHA /石蜡纳米复合支架。%。能量分散X射线光谱(EDS)结果表明,CHA的CA / P摩尔比为1.72,接近天然骨骼。在所有浓度变异处理中加入石蜡蜡导致CHA /石蜡纳米复合支架的结晶性能降低。孔隙分析结果表明,CHA悬浮液中的石蜡蜡的高浓度涉及在支架表面上形成更多的孔,但只有CHA /石蜡30重量%。%具有潜力的支架在具有细胞生长取向的培养基中。 CHA /石蜡30重量%的细胞活力测定结果也支持微孔分析。%纳米复合支架,其中连续剂量的支架浓度与小鼠成骨细胞浓度是固定的。总的来说,基于该分析,CHA /石蜡支架可以是骨组织工程的候选者。

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