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Fabrication and perfusion culture of anatomically shaped artificial bone using stereolithography

机译:立体光刻法制作解剖形状的人造骨并进行灌注培养

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摘要

Because patient bone defects are usually varied and complicated in geometry, it would be preferred to fabricate custom-made artificial bone grafts that are anatomically specific to individual patient defects. Using a rabbit femoral segment as a bone reconstruction model, we successfully produced customized ceramic scaffolds by stereolithography, which not only had an anatomically correct external shape according to computed tomography data but also contained an interconnecting internal network of channels designed for perfusion culture. Rabbit bone marrow stromal cells were isolated and cultured with these scaffolds using a novel oscillatory perfusion system that was stereolithographically fabricated to fit well to the unique scaffold shapes. After five days of three-dimensional culture with oscillatory perfusion, the cells attached and proliferated homogenously in the scaffolds. However, control cells inside the scaffolds cultured under static conditions were dead after prolonged in vitro culture. Cellular DNA content and alkaline phosphatase activities were significantly higher in the perfusion group versus the static group. Therefore, anatomically correct artificial bone can be successfully constructed using stereolithography and oscillatory culture technology, and could be useful for bone engraftment and defect repair.
机译:由于患者的骨缺损通常是多种多样的并且几何形状复杂,因此,最好制造在解剖学上对各个患者缺损而言特定的定制人造骨移植物。使用兔股骨段作为骨重建模型,我们通过立体光刻技术成功生产了定制的陶瓷支架,该支架不仅根据计算机断层扫描数据具有解剖学上正确的外部形状,而且还包含为灌注培养设计的相互连接的内部通道网络。分离兔骨髓基质细胞并使用新型振荡灌注系统与这些支架一起培养,该振荡灌注系统通过立体光刻技术制造,非常适合于独特的支架形状。经过振荡灌流的三维培养五天后,细胞在支架中附着并均匀增殖。然而,在长时间的体外培养后,在静态条件下培养的支架内部的对照细胞死亡。灌注组的细胞DNA含量和碱性磷酸酶活性明显高于静态组。因此,可以使用立体光刻和振荡培养技术成功地构建解剖学上正确的人造骨,并且对骨骼植入和缺损修复很有用。

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