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Bioreactor Cultivation of Anatomically Shaped Human Bone Grafts

机译:解剖型人骨移植的生物反应器培养

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摘要

In this chapter, we describe a method for engineering bone grafts in vitro with the specific geometry of the temporomandibular joint (TMJ) condyle. The anatomical geometry of the bone grafts was segmented from computed tomography (CT) scans, converted to G-code, and used to machine decellularized trabecular bone scaffolds into the identical shape of the condyle. These scaffolds were seeded with human bone marrow-derived mesenchymal stem cells (MSCs) using spinner flasks and cultivated for up to 5 weeks in vitro using a custom-designed perfusion bioreactor system. The flow patterns through the complex geometry were modeled using the FloWorks module of SolidWorks to optimize bioreactor design. The perfused scaffolds exhibited significantly higher cellular content, better matrix production, and increased bone mineral deposition relative to non-perfused (static) controls after 5 weeks of in vitro cultivation. This technology is broadly applicable for creating patient-specific bone grafts of varying shapes and sizes.
机译:在本章中,我们将介绍一种在体外设计具有颞下颌关节(TMJ)dy特定几何形状的骨移植物的方法。从计算机断层扫描(CT)扫描中将骨移植物的解剖学几何结构进行分割,转换为G代码,并用于将脱细胞的小梁骨支架加工成into的相同形状。使用旋转瓶将这些支架植入人骨髓来源的间充质干细胞(MSC),并使用定制设计的灌注生物反应器系统在体外培养长达5周。使用SolidWorks的FloWorks模块对通过复杂几何形状的流动模式进行建模,以优化生物反应器的设计。相对于非灌注(静态)对照,在体外培养5周后,灌注的支架显示出明显更高的细胞含量,更好的基质产生以及增加的骨矿物质沉积。该技术广泛适用于创建各种形状和大小的患者特定的骨移植物。

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