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聚(L-丙交酯)/碳酸羟基磷灰石纳米复合微球用于多孔组织工程支架的选择性激光烧结

Selective laser sintering of porous tissue engineering scaffolds from poly(L: -lactide)/carbonated hydroxyapatite nanocomposite microspheres.

作者信息

Zhou Wen You, Lee Siu Hang, Wang Min, Cheung Wai Lam, Ip Wing Yuk

机构信息

Department of Mechanical Engineering, The University of Hong Kong, China.

出版信息

J Mater Sci Mater Med. 2008 Jul;19(7):2535-40. doi: 10.1007/s10856-007-3089-3. Epub 2007 Jul 10.

Abstract

This study focuses on the use of bio-nanocomposite microspheres, consisting of carbonated hydroxyapatite (CHAp) nanospheres within a poly(L: -lactide) (PLLA) matrix, to produce tissue engineering (TE) scaffolds using a modified selective laser sintering (SLS) machine. PLLA microspheres and PLLA/CHAp nanocomposite microspheres were prepared by emulsion techniques. The resultant microspheres had a size range of 5-30 microm, suitable for the SLS process. Microstructural analyses revealed that the CHAp nanospheres were embedded throughout the PLLA microsphere, forming a nanocomposite structure. A custom-made miniature sintering platform was installed in a commercial Sinterstation((R)) 2000 SLS machine. This platform allowed the use of small quantities of biomaterials for TE scaffold production. The effects of laser power; scan spacing and part bed temperature were investigated and optimized. Finally, porous scaffolds were successfully fabricated from the PLLA microspheres and PLLA/CHAp nanocomposite microspheres. In particular, the PLLA/CHAp nanocomposite microspheres appeared to be promising for porous bone TE scaffold production using the SLS technique.

摘要

本研究聚焦于使用生物纳米复合微球(由聚左旋乳酸(PLLA)基质中的碳酸羟基磷灰石(CHAp)纳米球组成),通过改良的选择性激光烧结(SLS)机器来制造组织工程(TE)支架。PLLA微球和PLLA/CHAp纳米复合微球通过乳液技术制备而成。所得微球尺寸范围为5至30微米,适合SLS工艺。微观结构分析表明,CHAp纳米球嵌入整个PLLA微球中,形成了纳米复合结构。在商用Sinterstation((R)) 2000 SLS机器中安装了一个定制的微型烧结平台。该平台允许使用少量生物材料来生产TE支架。研究并优化了激光功率、扫描间距和零件床温度的影响。最后,成功地由PLLA微球和PLLA/CHAp纳米复合微球制造出了多孔支架。特别是,PLLA/CHAp纳米复合微球似乎有望用于采用SLS技术生产多孔骨TE支架。

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