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Bio-safe fabrication of PLA scaffolds for bone tissue engineering by combining phase separation, porogen leaching and scCO2 drying

机译:通过相分离,致孔剂浸出和scCO2干燥相结合的生物安全方式制造用于骨组织工程的PLA支架

摘要

The present study reports a three-step bio-safe process for fabricating porous polylactic acid (PLA) scaffolds with a biomimetic design of the porosity and the architecture and applications in bone tissue engineering (bTE). The process starts with a PLA-ethyl lactate solution and involves the combination of thermal induced phase separation (TIPS) and supercritical CO2 (scCO2) drying techniques for the development of a nano-fibrous architecture. In a third step, it was further combined with a gelatin leaching technique to create an additional interconnected network of large pores of appropriate size and distribution. The effect of the size of the gelatin particles, selected in three different ranges: 100-200, 200-400 and 400-600 μm, on the morphology, porosity and textural features of PLA scaffolds is assessed by means of scanning electron microscopy analysis, gravimetric measurements, image analysis and low-temperature N2 adsorption. Finally, in vitro cell culture tests are carried out by using human osteosarcoma cell line MG63 in order to evaluate the biological response of the different scaffolds prepared and to assess their potential for bTE applications.
机译:本研究报告了一种三步生物安全工艺,用于多孔多孔聚乳酸(PLA)支架的仿生设计,其孔隙率及其在骨组织工程(bTE)中的结构和应用。该过程从PLA乳酸乙酯溶液开始,涉及热诱导相分离(TIPS)和超临界CO2(scCO2)干燥技术的组合,用于开发纳米​​纤维结构。在第三步中,将其与明胶浸出技术进一步结合,以创建具有适当大小和分布的大孔的附加互连网络。通过扫描电子显微镜分析来评估在三种不同范围(100-200、200-400和400-600μm)中选择的明胶颗粒大小对PLA支架的形态,孔隙率和质构特征的影响,重量测量,图像分析和低温N2吸附。最后,通过使用人骨肉瘤细胞系MG63进行体外细胞培养测试,以评估所制备的不同支架的生物学反应并评估其在bTE应用中的潜力。

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