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Preparation of Porous Scaffolds from Silk Fibroin Extracted from the Silk Gland of Bombyx mori (B. mori)

机译:从家蚕丝腺提取的丝素蛋白制备多孔支架

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摘要

In order to use a simple and ecofriendly method to prepare porous silk scaffolds, aqueous silk fibroin solution (ASF) was extracted from silk gland of 7-day-old fifth instar larvae of Bombyx mori (B. mori). SDS-page analysis indicated that the obtained fibroin had a molecular weight higher than 200 kDa. The fabrication of porous scaffolds from ASF was achieved by using the freeze-drying method. The pore of porous scaffolds is homogenous and tends to become smaller with an increase in the concentration of ASF. Conversely, the porosity is decreased. The porous scaffolds show impressive compressive strength which can be as high as 6.9 ± 0.4 MPa. Furthermore, ASF has high cell adhesion and growth activity. It also exhibits high ALP activity. This implies that porous scaffolds prepared from ASF have biocompatibility. Therefore, the porous scaffolds prepared in this study have potential application in tissue engineering due to the impressive compressive strength and biocompatibility.
机译:为了使用简单且环保的方法制备多孔丝支架,从家蚕(B. mori)的7天龄五龄幼虫的丝腺中提取丝素蛋白水溶液(ASF)。 SDS-页面分析表明,所获得的丝心蛋白的分子量高于200kDa。通过使用冷冻干燥方法,可以从ASF制备多孔支架。多孔支架的孔是均匀的,并且随着ASF浓度的增加而趋于变小。相反,孔隙率降低。多孔支架显示出令人印象深刻的抗压强度,可高达6.9±0.4 MPa。此外,ASF具有高的细胞粘附和生长活性。它还具有很高的ALP活性。这意味着由ASF制备的多孔支架具有生物相容性。因此,由于令人印象深刻的抗压强度和生物相容性,本研究中制备的多孔支架在组织工程中具有潜在的应用。

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