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多梯度羟基磷灰石支架的制备及其骨诱导性能评估。

Preparation of multigradient hydroxyapatite scaffolds and evaluation of their osteoinduction properties.

作者信息

Huang Hao, Yang Anchun, Li Jinsheng, Sun Tong, Yu Shangke, Lu Xiong, Guo Tailin, Duan Ke, Zheng Pengfei, Weng Jie

机构信息

Key Laboratory of Advanced Technologies of Materials (MOE), School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, P.R. China.

Engineering Laboratory of Orthopedic Implant Device Development and Application Technology, Clinical College of Medicine, Southwest Medical University, Luzhou 646000, P.R. China.

出版信息

Regen Biomater. 2022 Feb 1;9:rbac001. doi: 10.1093/rb/rbac001. eCollection 2022.

Abstract

Porous hydroxyapatite (HA) scaffolds are often used as bone repair materials, owing to their good biocompatibility, osteoconductivity and low cost. Vascularization and osteoinductivity of porous HA scaffolds were limited in clinical application, and these disadvantages were need to be improved urgently. We used water-in-oil gelation and pore former methods to prepare HA spheres and a porous cylindrical HA container, respectively. The prepared HA spheres were filled in container to assemble into composite scaffold. By adjusting the solid content of the slurry (solid mixture of chitin sol and HA powder) and the sintering temperature, the porosity and crystallinity of the HA spheres could be significantly improved; and mineralization of the HA spheres significantly improved the biological activity of the composite scaffold. The multigradient (porosity, crystallinity and mineralization) scaffold (HA-700) filled with the mineralized HA spheres exhibited a lower compressive strength; however, results showed that their vascularization ability were higher than those of other groups, and their osteogenic Gini index (Go: an index of bone mass, and inversely proportional to bone mass) showed a continuous decrease with the implantation time. This study provides a new method to improve porous HA scaffolds and meet the demands of bone tissue engineering applications.

摘要

多孔羟基磷灰石(HA)支架由于其良好的生物相容性、骨传导性和低成本,常被用作骨修复材料。多孔HA支架的血管化和成骨诱导性在临床应用中受到限制,这些缺点亟待改善。我们分别采用油包水凝胶化和造孔剂方法制备了HA球体和多孔圆柱形HA容器。将制备好的HA球体填充到容器中组装成复合支架。通过调节浆料(几丁质溶胶和HA粉末的固体混合物)的固含量和烧结温度,HA球体的孔隙率和结晶度可得到显著提高;HA球体的矿化显著提高了复合支架的生物活性。填充有矿化HA球体的多梯度(孔隙率、结晶度和矿化)支架(HA-700)表现出较低的抗压强度;然而,结果表明其血管化能力高于其他组,并且其成骨基尼指数(Go:骨量指标,与骨量成反比)随植入时间持续下降。本研究提供了一种改进多孔HA支架并满足骨组织工程应用需求的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ef4/9071058/3e77836a10a6/rbac001f12.jpg

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