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Microstructural and mechanical study of PCL coated Mg scaffolds

机译:PCL涂层镁支架的微观结构和力学研究

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In recent years, attention has been focused on the magnesium (Mg) as a promising material in biodegradable metallic scaffolds for bone tissue engineering. Since an orthopedic scaffold is supposed to repair and regenerate fractured bones, its mechanical integrity is vital throughout the healing process. In this study, a biocompatible polymeric layer made of polycaprolactone (PCL) in different concentrations of 3% w/v and 6% w/v was coated on the surface of Mg scaffolds. The structural characteristics and mechanical behaviour of the Mg scaffolds during the immersion in physiological saline solution (PSS) were investigated. According to our results, the PCL coating hindered the diminution of mechanical stability of scaffolds to provide adequate support for bone healing. Specifically, scaffold coated with 3% w/v and 6% w/v PCL demonstrated 24 and 100% improvement in the elastic modulus and 41 and 83% enhancement in compressive strength respectively, after 24 h immersion in PSS, compare to the uncoated scaffold. Thus, PCL coating of Mg scaffolds may be a promising approach in the development of mechanically stable bone scaffolds.
机译:近年来,注意力已集中在镁(Mg)上,它是用于骨组织工程的可生物降解金属支架中的一种有前途的材料。由于骨科支架应该修复和再生骨折的骨骼,因此其机械完整性在整个愈合过程中至关重要。在这项研究中,将由聚己内酯(PCL)制成的生物相容性聚合物层以3%w / v和6%w / v的不同浓度涂覆在Mg支架表面。研究了镁支架浸入生理盐水溶液(PSS)过程中的结构特征和力学行为。根据我们的结果,PCL涂层阻碍了脚手架机械稳定性的下降,无法为骨愈合提供足够的支持。具体而言,与未涂布的脚手架相比,在PSS中浸泡24小时后,涂有3%w / v和6%w / v PCL的脚手架分别显示出24和100%的弹性模量提高和41%和83%的抗压强度提高。 。因此,镁支架的PCL涂层可能是开发机械稳定的骨支架的一种有前途的方法。

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