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Preparation of 3-D regenerated fibroin scaffolds with freeze drying method and freeze drying/foaming technique

机译:冷冻干燥法和冷冻干燥/起泡技术制备3-D再生纤维蛋白支架

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摘要

Although three-dimensional fibroin scaffolds have been prepared with freeze drying method, the porosity and pore sizes still can not satisfy the requirement of tissue engineering. In this article, fibroin porous scaffold with high porosity and >100 μm diameter interconnected pores was firstly prepared with freeze drying method through adjusting fibroin concentration. The morphology of different scaffolds lyophilized from different fibroin concentration was observed by SEM. A novel freeze drying improved method, freeze drying/foaming technique, was also devised to prepare fibroin scaffolds at different fibroin concentrations. Using the said method, the porosity and pore size of fibroin scaffolds prepared from 12% concentration were 85.8 ± 4% and 109 ± 20 μm respectively with yield strength up to 450 ± 6 KPa while the porosity and pore size of fibroin scaffolds prepared from 8% concentration were 96.9 ± 3.6% and 120 ±30 μm respectively with yield strength up to 30 ± 1 KPa. The freeze drying/foaming technique produced scaffolds with a useful combination of high yield strength, interconnected pores, and pore sizes greater than 100 μm in diameter. Through adjusting fibroin concentration and thawing time, the porosity, pore sizes and mechanical properties could be controlled to satisfy the different requirements of tissue engineering. The results suggested that fibroin scaffolds prepared with the above methods could be formed for utility in biomaterial application.
机译:尽管已经用冷冻干燥法制备了三维纤维蛋白支架,但是其孔隙率和孔径仍然不能满足组织工程的要求。本文首先通过冻干法通过调节血纤蛋白浓度,制备了孔隙率高,直径> 100μm的连通孔的血纤蛋白多孔支架。通过扫描电镜观察从不同浓度的纤维蛋白冻干的不同支架的形态。还设计了一种新颖的冷冻干燥改进方法,即冷冻干燥/发泡技术,以制备不同纤维蛋白浓度的纤维蛋白支架。使用上述方法,由12%浓度制备的纤维蛋白支架的孔隙率和孔径分别为85.8±4%和109±20μm,屈服强度高达450±6KPa,而由8%制备的纤维蛋白支架的孔隙率和孔径为450±6KPa。 %浓度分别为96.9±3.6%和120±30μm,屈服强度高达30±1KPa。冷冻干燥/发泡技术生产的支架具有高屈服强度,互连的孔和直径大于100μm的孔的有用组合。通过调节丝蛋白浓度和解冻时间,可以控制孔隙率,孔径和机械性能,以满足组织工程的不同要求。结果表明,可以形成用上述方法制备的纤维蛋白支架,以用于生物材料应用。

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