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Development and Characterization of Novel Porous 3D Alginate-Cockle Shell Powder Nanobiocomposite Bone Scaffold

机译:新型多孔3D藻酸盐-鸟蛤壳粉纳米生物复合骨支架的研制与表征

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摘要

A novel porous three-dimensional bone scaffold was developed using a natural polymer (alginate/Alg) in combination with a naturally obtained biomineral (nano cockle shell powderCP) through lyophilization techniques. The scaffold was developed in varying composition mixture of Alg-nCP and characterized using various evaluation techniques as well as preliminary in vitro studies on MG63 human osteoblast cells. Morphological observations using SEM revealed variations in structures with the use of different Alg-nCP composition ratios. All the developed scaffolds showed a porous structure with pore sizes ideal for facilitating new bone growth; however, not all combination mixtures showed subsequent favorable characteristics to be used for biological applications. Scaffolds produced using the combination mixture of 40% Alg and 60% nCP produced significantly promising results in terms of mechanical strength, degradation rate, and increased cell proliferation rates making it potentially the optimum composition mixture of Alg-nCP with future application prospects.
机译:通过冻干技术,使用天然聚合物(藻酸盐/ Alg)与天然获得的生物矿物质(纳米鸟蛤壳粉/ nCP)结合,开发了一种新型的多孔三维骨支架。用不同组成的Alg-nCP混合物开发了支架,并使用各种评估技术以及对MG63人成骨细胞的体外初步研究对其进行了表征。使用SEM进行的形态学观察表明,使用不同的Alg-nCP组成比会导致结构变化。所有开发的支架均显示出多孔结构,其孔径适合于促进新骨生长。然而,并非所有组合混合物都显示出随后的有利特性,可用于生物学应用。使用40%Alg和60%nCP的混合混合物生产的支架在机械强度,降解率和增加的细胞增殖速率方面产生了令人鼓舞的结果,使其成为具有潜在应用前景的Alg-nCP的最佳组成混合物。

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