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Composite scaffolds for osteochondral repair obtained by combination of additive manufacturing, leaching processes and hMSC-CM functionalization

机译:通过增材制造,浸出工艺和hMSC-CM功能化相结合获得的用于骨软骨修复的复合支架

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摘要

Articular repair is a relevant and challenging area for the emerging fields of tissue engineering and biofabrication. The need of significant gradients of properties, for the promotion of osteochondral repair, has led to the development of several families of composite biomaterials and scaffolds, using different effective approaches, although a perfect solution has not yet been found. In this study we present the design, modeling, rapid manufacturing and in vitro testing of a composite scaffold aimed at osteochondral repair. The presented composite scaffold stands out for having a functional gradient of density and stiffness in the bony phase, obtained in titanium by means of computer-aided design combined with additive manufacture using selective laser sintering. The chondral phase is obtained by sugar leaching, using a PDMS matrix and sugar as porogen, and is joined to the bony phase during the polymerization of PDMS, therefore avoiding the use of supporting adhesives or additional intermediate layers. The mechanical performance of the construct is biomimetic and the stiffness values of the bony and chondral phases can be tuned to the desired applications, by means of controlled modifications of different parameters. A humanmesenchymal stemcell (h-MSC) conditionedmedium(CM) is used for improving scaffold response. Cell culture results provide relevant information regarding the viability of the composite scaffolds used.
机译:对于新兴的组织工程和生物制造领域,关节修复是一个相关且充满挑战的领域。尽管尚未找到完美的解决方案,但为了促进骨软骨修复,需要显着的梯度特性已导致使用复合有效材料开发了几类复合生物材料和支架。在这项研究中,我们介绍了针对骨软骨修复的复合支架的设计,建模,快速制造和体外测试。提出的复合支架在骨相中具有密度和刚度的功能梯度,而钛是通过计算机辅助设计结合选择性激光烧结的增材制造在钛中获得的。通过使用PDMS基质和糖作为致孔剂,通过糖浸出获得软骨相,并在PDMS聚合期间将其连接至骨相,因此避免了使用支撑粘合剂或额外的中间层。构造物的机械性能是仿生的,并且可以通过对不同参数的受控修改,将骨相和软骨相的刚度值调整到所需的应用。人类间充质干细胞(h-MSC)条件培养基(CM)用于改善支架反应。细胞培养结果提供了有关使用的复合支架的生存能力的相关信息。

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