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Macro/microporous silk fibroin scaffolds with potential for articular cartilage and meniscus tissue engineering applications

机译:具有关节软骨和半月板组织工程应用潜力的大孔/微孔丝素蛋白支架

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摘要

This study describes the developmental physicochemical properties of silk fibroin scaffolds derived from high-concentration aqueous silk fibroin solutions. The silk fibroin scaffolds were prepared with different initial concentrations (8, 10, 12 and 16%, in wt.%) and obtained by combining the salt-leaching and freeze-drying methodologies. The results indicated that the antiparallel β-pleated sheet (silk-II) conformation was present in the silk fibroin scaffolds. All the scaffolds possessed a macro/microporous structure. Homogeneous porosity distribution was achieved in all the groups of samples. As the silk fibroin concentration increased from 8 to 16%, the mean porosity decreased from 90.8 ± 0.9 to 79.8 ± 0.3% and the mean interconnectivity decreased from 97.4 ± 0.5 to 92.3 ± 1.3%. The mechanical properties of the scaffolds exhibited concentration dependence. The dry state compressive modulus increased from 0.81 ± 0.29 to 15.14 ± 1.70 MPa and the wet state dynamic storage modulus increased by around 20- to 30-fold at each testing frequency when the silk fibroin concentration increased from 8 to 16%. The water uptake ratio decreased with increasing silk fibroin concentration. The scaffolds present favorable stability as their structure integrity, morphology and mechanical properties were maintained after in vitro degradation for 30 days. Based on these results, the scaffolds developed in this study are proposed to be suitable for use in meniscus and cartilage tissue-engineered scaffolding.
机译:这项研究描述了从高浓度的丝素蛋白水溶液衍生的丝素蛋白支架的发展理化特性。制备具有不同初始浓度(8、10、12和16%,以重量%计)的丝素蛋白支架,并通过结合盐浸和冷冻干燥方法获得。结果表明,在丝素蛋白支架中存在反平行的β-折叠片(silk-II)构象。所有的支架都具有大/微孔结构。在所有样品组中均质孔隙分布。随着丝素蛋白浓度从8%增加到16%,平均孔隙度从90.8±0.9降低到79.8±0.3%,平均互连度从97.4±0.5降低到92.3±1.3%。支架的机械性能表现出浓度依赖性。当丝素蛋白浓度从8%增加到16%时,在每个测试频率下,干态压缩模量从0.81±0.29增至15.14±1.70 MPa,湿态动态储能模量增加约20至30倍。吸水率随丝素蛋白浓度的增加而降低。支架在体外降解30天后仍保持其结构完整性,形态和机械性能,因此具有良好的稳定性。基于这些结果,本研究开发的支架被建议适用于半月板和软骨组织工程支架。

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