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采用结构致孔法制备的 PCL/β-TCP 骨组织支架的生物相容性和生物降解研究。

Biocompatibility and biodegradation studies of PCL/β-TCP bone tissue scaffold fabricated by structural porogen method.

机构信息

Department of Mechanical Engineering and Mechanics, Drexel University, Philadelphia, PA 19104, USA.

出版信息

J Mater Sci Mater Med. 2012 Sep;23(9):2217-26. doi: 10.1007/s10856-012-4695-2. Epub 2012 Jun 6.

Abstract

Three-dimensional printer (3DP) (Z-Corp) is a solid freeform fabrication system capable of generating sub-millimeter physical features required for tissue engineering scaffolds. By using plaster composite materials, 3DP can fabricate a universal porogen which can be injected with a wide range of high melting temperature biomaterials. Here we report results toward the manufacture of either pure polycaprolactone (PCL) or homogeneous composites of 90/10 or 80/20 (w/w) PCL/beta-tricalcium phosphate (β-TCP) by injection molding into plaster composite porogens fabricated by 3DP. The resolution of printed plaster porogens and produced scaffolds was studied by scanning electron microscopy. Cytotoxicity test on scaffold extracts and biocompatibility test on the scaffolds as a matrix supporting murine osteoblast (7F2) and endothelial hybridoma (EAhy 926) cells growth for up to 4 days showed that the porogens removal process had only negligible effects on cell proliferation. The biodegradation tests of pure PCL and PCL/β-TCP composites were performed in DMEM with 10 % (v/v) FBS for up to 6 weeks. The PCL/β-TCP composites show faster degradation rate than that of pure PCL due to the addition of β-TCP, and the strength of 80/20 PCL/β-TCP composite is still suitable for human cancellous bone healing support after 6 weeks degradation. Combining precisely controlled porogen fabrication structure, good biocompatibility, and suitable mechanical properties after biodegradation, PCL/β-TCP scaffolds fabricated by 3DP porogen method provide essential capability for bone tissue engineering.

摘要

三维打印机(3DP)(Z-Corp)是一种固体自由成型制造系统,能够生成组织工程支架所需的亚毫米物理特征。通过使用石膏复合材料,3DP 可以制造通用的造孔剂,可将其与多种高熔点生物材料一起注射。在此,我们报告了通过注塑到由 3DP 制造的石膏复合造孔剂中,制造纯聚己内酯(PCL)或 90/10 或 80/20(w/w)PCL/β-磷酸三钙(β-TCP)均匀复合材料的结果。通过扫描电子显微镜研究了打印石膏造孔剂和生产支架的分辨率。支架提取物的细胞毒性测试和支架作为支持鼠成骨细胞(7F2)和内皮杂交瘤(EAhy 926)细胞生长长达 4 天的生物相容性测试表明,造孔剂去除过程对细胞增殖几乎没有影响。在含有 10%(v/v)FBS 的 DMEM 中进行了纯 PCL 和 PCL/β-TCP 复合材料的生物降解测试,持续长达 6 周。由于添加了β-TCP,PCL/β-TCP 复合材料的降解速度比纯 PCL 快,并且在 6 周降解后,80/20 PCL/β-TCP 复合材料的强度仍适合用于人类松质骨愈合支持。3DP 造孔方法制造的 PCL/β-TCP 支架具有精确控制的造孔剂制造结构、良好的生物相容性和生物降解后的合适机械性能,为骨组织工程提供了必要的能力。

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