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Composite Scaffolds Containing Silk Fibroin Gelatin and Hydroxyapatite for Bone Tissue Regeneration and 3D Cell Culturing

机译:包含丝素蛋白明胶和羟基磷灰石的复合支架用于骨组织再生和3D细胞培养。

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摘要

Three-dimensional (3D) silk fibroin scaffolds were modified with one of the major bone tissue derivatives (nano-hydroxyapatite) and/or a collagen derivative (gelatin). Adhesion and proliferation of mouse embryonic fibroblasts (MEF) within the scaffold were increased after modification with either nano-hydroxyapatite or gelatin. However, a significant increase in MEF adhesion and proliferation was observed when both additives were introduced into the scaffold. Such modified composite scaffolds provide a new and better platform to study wound healing, bone and other tissue regeneration, as well as artificial organ bioengineering. This system can further be applied to establish experimental models to study cell-substrate interactions, cell migration and other complex processes, which may be difficult to address using the conventional two-dimensional culture systems.
机译:使用主要的骨组织衍生物(纳米羟基磷灰石)和/或胶原蛋白衍生物(明胶)之一修饰三维(3D)丝素蛋白支架。用纳米羟基磷灰石或明胶修饰后,支架中的小鼠胚胎成纤维细胞(MEF)的粘附和增殖增加。然而,当将两种添加剂都引入到支架中时,观察到MEF粘附和增殖的显着增加。这种修饰的复合支架为研究伤口愈合,骨骼和其他组织再生以及人工器官生物工程学提供了一个新的更好的平台。该系统可以进一步用于建立实验模型来研究细胞-底物的相互作用,细胞迁移和其他复杂的过程,而使用常规的二维培养系统可能很难解决这一问题。

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