首页> 外文期刊>Journal of Materials Science >Fabrication of nanofibrous silkworm gland three-dimensional scaffold containing microanoscale pores and study of its effects on adipose tissue-derived stem cell growth
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Fabrication of nanofibrous silkworm gland three-dimensional scaffold containing microanoscale pores and study of its effects on adipose tissue-derived stem cell growth

机译:含微/纳米尺度孔的纳米纤维蚕腺三维支架的制备及其对脂肪组织来源干细胞生长的影响研究

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摘要

An ideal tissue engineering scaffold requires a structure similar to that of the natural extracellular matrix. The structure of a scaffold is the most important parameter for determining the behavior and functions of cells. Therefore, the importance of designing a suitable scaffold has been greatly emphasized. Electrospinning has been extensively used to fabricate scaffolds for tissue engineering. In this study, we developed a nanofibrous scaffold made from silkworm gland (SG), which contains the silk protein fibroin and other proteins that have functions including antigenotoxicity and the promotion of cell growth. To investigate the physical and biological functions of SG nanofibrous (SGN) scaffold, we fabricated silk fibroin nanofibrous (SFN) scaffold as a control lacking the SG functional proteins. Field emission scanning electron microscope images revealed that the SGN three-dimensional scaffold had a homogenous pore distribution with a high porosity and interconnected pore walls. In biological tests, the SGN scaffold supported excellent cell viability and had a stronger antioxidant property compared to the SFN scaffold. In addition, the SGN scaffold efficiently supported the growth of adipose tissue-derived stem cells and their osteogenic and fibrocartilage differentiation. Therefore, this novel SGN three-dimensional scaffold shows high promise for use in tissue engineering.
机译:理想的组织工程支架需要与天然细胞外基质相似的结构。支架的结构是确定细胞行为和功能的最重要参数。因此,已经大大强调了设计合适的支架的重要性。电纺丝已被广泛用于制造用于组织工程的支架。在这项研究中,我们开发了一种由蚕腺(SG)制成的纳米纤维支架,其中包含蚕丝蛋白纤维蛋白和其他具有抗原毒性和促进细胞生长功能的蛋白。为了研究SG纳米纤维(SGN)支架的物理和生物学功能,我们制造了丝素蛋白纳米纤维(SFN)支架作为缺少SG功能蛋白的对照。场发射扫描电子显微镜图像显示,SGN三维支架的孔分布均匀,孔隙率高,孔壁相互连接。在生物学测试中,与SFN支架相比,SGN支架具有出色的细胞活力并具有更强的抗氧化性能。此外,SGN支架可有效支持脂肪组织衍生干细胞的生长及其成骨和纤维软骨分化。因此,这种新颖的SGN三维支架在组织工程中具有很高的应用前景。

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