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Outer-inner dual reinforced micro/nano hierarchical scaffolds for promoting osteogenesis

机译:外在双重强化微/纳米层次促进骨生成的支架

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摘要

Biomimetic scaffolds have been extensively studied for guiding osteogenesis through structural cues. Inspired by the natural bone growth process, we have employed a hierarchical outer-inner dual reinforcing strategy, which relies on the interfacial ionic bond interaction between amine/calcium and carboxyl groups, to build a nanofiber/particle dual strengthened hierarchical silk fibroin scaffold. This scaffold can provide an applicable form of osteogenic structural cue and mimic the natural bone forming process. Owing to the active interaction between compositions located in the outer pore space and the inner pore wall, the scaffold has over 4 times improvement in the mechanical properties, followed by a significant alteration of the cell-scaffold interaction pattern, demonstrated by over 2 times elevation in the spreading area and enhanced osteogenic activity potentially involving the activities of integrin, vinculin and Yes-associated protein (YAP). The in vivo performance of the scaffold identified the inherent osteogenic effect of the structural cue, which promotes rapid and uniform regeneration. Overall, the hierarchical scaffold is promising in promoting uniform bone regeneration through its specific structural cue endowed by its micro-nano construction.
机译:仿生支架都已经被广泛地研究过了通过结构线索引导骨生成。灵感来自于自然骨生长过程,我们采用分层和外在双吗加强战略,这依赖于界面离子键之间的交互胺/钙和羧基组,建立纳米纤维/粒子双重强化等级丝素蛋白支架。一种适用的成骨的结构线索和模拟天然骨形成过程。活性成分之间的相互作用位于外孔隙空间和内部孔壁,脚手架有超过4倍改善机械性能,紧随其后的是一个重要的改变cell-scaffold交互模式,展示了除以2乘以高度的传播区域可能和增强成骨的活动涉及的活动整合素,vinculin和Yes-associated蛋白质(笨蛋)。支架的性能确定了固有的成骨效应的结构线索,促进快速、统一的再生。总的来说,分层脚手架是光明的在促进统一的骨再生其具体结构线索赋予它的微纳结构。

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