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采用固-液相分离法制备多孔聚(L-丙交酯)支架及其表征

Fabrication and characterization of porous poly(L-lactide) scaffolds using solid-liquid phase separation.

作者信息

Goh Yan Qi, Ooi Chui Ping

机构信息

Division of Bioengineering, School of Chemical and Biomedical Engineering, Nanyang Technological University, Nanyang Avenue, Singapore, 639798, Singapore.

出版信息

J Mater Sci Mater Med. 2008 Jun;19(6):2445-52. doi: 10.1007/s10856-008-3366-9. Epub 2008 Jan 25.

Abstract

Freeze-extraction, which involves phase separation principle, gave highly porous scaffolds without the time and energy consuming freeze-drying process. The presented method eliminates the problem of formation of surface skin observed in freeze-drying methods. The effects of different freezing temperature (-80 and -24 degrees C), medium (dry ice/ethanol bath and freezer) and polymer concentrations (1, 3, and 5 wt.%) on the scaffold properties were investigated in connection with the porous morphology and physicomechanical characteristics of the final scaffolds. The FESEM micrographs showed porous PLLA scaffolds with ladder-like architecture. The size of the longitudinal pores was in the range of 20-40 microm and the scaffolds had high porosity values ranging from 90% to 98%. Variation in porosity, mechanical resistance, and degree of regularity in the spatial organization of pores were observed when polymer concentration was changed. More open scaffold architecture with enhanced pore interconnectivity was achieved when a dry ice/ethanol bath of -80 degrees C was used. Polymer concentration played an important role in fabricating highly porous scaffolds, with ladder-like architecture only appearing at polymer concentrations of above 3 wt.%. With the freeze-extraction method used here, highly porous and interconnected poly(L-lactide) scaffolds were successfully fabricated, holding great potential for tissue engineering applications.

摘要

冷冻萃取法基于相分离原理,可制备出高度多孔的支架,且无需耗时耗能的冷冻干燥过程。该方法解决了冷冻干燥法中出现的表面结皮问题。结合最终支架的多孔形态和物理力学特性,研究了不同冷冻温度(-80℃和-24℃)、介质(干冰/乙醇浴和冷冻箱)以及聚合物浓度(1%、3%和5%重量比)对支架性能的影响。场发射扫描电子显微镜(FESEM)显微照片显示,聚乳酸(PLLA)支架具有梯状结构。纵向孔隙尺寸在20 - 40微米范围内,支架孔隙率较高,在90%至98%之间。当聚合物浓度改变时,观察到孔隙率、机械强度以及孔隙空间组织规则度的变化。使用-80℃的干冰/乙醇浴时,可实现具有增强孔隙连通性的更开放的支架结构。聚合物浓度在制备高度多孔支架中起着重要作用,只有当聚合物浓度高于3%重量比时才会出现梯状结构。采用此处的冷冻萃取法,成功制备出了高度多孔且相互连通的聚(L-丙交酯)支架,在组织工程应用中具有巨大潜力。

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