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首页> 外文期刊>Journal of Applied Polymer Science >Ultraporous poly(lactic acid) scaffolds with improved mechanical performance using high-pressure molding and salt leaching
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Ultraporous poly(lactic acid) scaffolds with improved mechanical performance using high-pressure molding and salt leaching

机译:超高压聚乳酸支架,通过高压成型和盐浸提高了机械性能

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摘要

A novel processing technique, i.e. high-pressure compression molding/salt leaching, was developed to fabricate ultraporous poly(lactic acid) (PLA) scaffolds. The optimized composition was studied in relation to the porosity, pore morphology, thermal property, and mechanical performance of the PLA scaffolds. At a porogen (CaCO_3) content of 90 wt %, the scaffolds have an interconnected open pore structure and a porosity above 80%. It was truly interesting that the structural stability of high-pressure molded scaffolds was remarkably improved based on the fact that its glass transition temperature (83.5°C) increased about 20°C, as compared to that of the conventional compression-molded PLA (60°C), which is not far from physiological temperature (~37°C) at the risk of structural relaxation or physical aging. More importantly, the mechanical performance of PLA scaffolds was drastically enhanced under optimized processing conditions. At pressure and temperature of 1000 MPa and 190°C, the porous PLA scaffolds attained a storage modulus of 283.7 MPa, comparable to the high-end value of trabecular bone (250 MPa) ever reported. In addition, our prepared PLA scaffolds showed excellent cellular compatibility and biocompatibility in vitro tests, further suggesting that the high-pressure molded PLA scaffolds have high potential for bone tissue engineering applications.
机译:开发了一种新颖的加工技术,即高压压缩模塑/盐浸,以制造超多孔聚乳酸(PLA)支架。研究了与PLA支架的孔隙率,孔形貌,热性能和机械性能有关的优化组成。在成孔剂(CaCO 3)含量为90wt%时,所述支架具有相互连接的开孔结构,并且孔隙率高于80%。真正有趣的是,高压模制脚手架的结构稳定性显着提高,这是由于其玻璃化转变温度(83.5°C)与传统的压模PLA相比增加了约20°C(60)。 °C),距离生理温度(〜37°C)不远,有结构松弛或物理老化的风险。更重要的是,在优化的加工条件下,PLA支架的机械性能得到了极大的提高。在1000 MPa和190°C的压力和温度下,多孔PLA支架的储能模量为283.7 MPa,与以前报道的小梁骨的高端价值(250 MPa)相当。此外,我们制备的PLA支架在体外测试中显示出优异的细胞相容性和生物相容性,进一步表明高压成型的PLA支架在骨组织工程应用中具有很高的潜力。

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