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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >An innovative method to obtain porous PLLA scaffolds with highly spherical and interconnected pores.
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An innovative method to obtain porous PLLA scaffolds with highly spherical and interconnected pores.

机译:一种具有高球形和相互连接的孔隙多孔PLLA支架的创新方法。

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摘要

Scaffolding is an essential issue in tissue engineering and scaffolds should answer certain essential criteria: biocompatibility, high porosity, and important pore interconnectivity to facilitate cell migration and fluid diffusion. In this work, a modified solvent casting-particulate leaching out method is presented to produce scaffolds with spherical and interconnected pores. Sugar particles (200-300 microm and 300-500 microm) were poured through a horizontal Meker burner flame and collected below the flame. While crossing the high temperature zone, the particles melted and adopted a spherical shape. Spherical particles were compressed in plastic mold. Then, poly-L-lactic acid solution was cast in the sugar assembly. After solvent evaporation, the sugar was removed by immersing the structure into distilled water for 3 days. The obtained scaffolds presented highly spherical interconnected pores, with interconnection pathways from 10 to 100 mum. Pore interconnection was obtained without any additional step. Compression tests were carried out to evaluate the scaffold mechanical performances. Moreover, rabbit bone marrow mesenchymal stem cells were found to adhere and to proliferate in vitro in the scaffold over 21 days. This technique produced scaffold with highly spherical and interconnected pores without the use of additional organic solvents to leach out the porogen.
机译:脚手架是组织工程的重要问题,并且支架应该应对某些基本标准:生物相容性,高孔隙率和重要的孔隙互连,以促进细胞迁移和流体扩散。在这项工作中,提出了一种改性溶剂铸造颗粒浸出方法,以产生具有球形和相互连接的孔的支架。通过水平墨料燃烧器火焰倒入糖颗粒(200-300 microm和300-500微米)并在火焰下收集。在穿过高温区的同时,颗粒熔化并采用球形。球形颗粒在塑料模具中被压缩。然后,将多L-乳酸溶液浇铸在糖组件中。溶剂蒸发后,通过将结构浸入蒸馏水中3天通过浸入蒸馏水后除去糖。所获得的支架呈现出高度球形的互连孔,互连途径为10至100毫米。没有任何额外的步骤获得孔互连。进行压缩试验以评估支架机械性能。此外,发现兔骨髓间充质干细胞粘附并在21天内在支架中体外增殖。该技术生产具有高球形和相互连接的孔的支架,而不使用额外的有机溶剂来浸出孔泡。

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