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通过三维打印和微波烧结制备具有骨诱导性的分级多孔羟基磷灰石支架。

Creating hierarchical porosity hydroxyapatite scaffolds with osteoinduction by three-dimensional printing and microwave sintering.

机构信息

National Engineering Research Center for Biomaterials, Sichuan University, Chengdu, 610064, People's Republic of China.

出版信息

Biofabrication. 2017 Nov 14;9(4):045008. doi: 10.1088/1758-5090/aa90ed.

Abstract

Hierarchical porosity, which includes micropores and macropores in scaffolds, contributes to important multiple biological functions for tissue regeneration. This paper introduces a two-step method of combining three-dimensional printing (3DP) and microwave sintering to fabricate two-level hierarchical porous scaffolds. The results showed that 3D printing made the macroporous structure well-controlled and microwave sintering generated micropores on the macropore surface. The resulting hierarchical macro/microporous hydroxyapatite scaffold induced bone formation following intramuscular implantation. Moreover, when comparing the hierarchical macro/microporous hydroxyapatite scaffold to the non-osteoinductive hydroxyapatite scaffolds (either 3D printed or HO foamed) subjected to muffle sintering which do not have micropores, the critical role of micropores in material-driven bone formation was shown. The findings presented herein could be useful for the further optimization of bone grafting materials for bone regeneration.

摘要

层级多孔性,包括支架中的微孔和大孔,有助于组织再生的重要的多种生物学功能。本文介绍了一种两步法,结合三维打印(3DP)和微波烧结来制备两级分层多孔支架。结果表明,3D 打印使大孔结构得到很好的控制,微波烧结在大孔表面产生微孔。由此产生的分级大/微孔羟基磷灰石支架在肌肉内植入后诱导骨形成。此外,当将分级大/微孔羟基磷灰石支架与非成骨性羟基磷灰石支架(无论是 3D 打印还是 HO 发泡)进行比较时,这些支架经过闷烧烧结没有微孔,结果表明微孔在材料驱动的骨形成中起着关键作用。本文的研究结果可能有助于进一步优化用于骨再生的骨移植物材料。

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