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Biomimetic Biphasic Nanocomposite Scaffold for Osteochondral Regenration

机译:仿生双相纳米复合支架骨软骨再生。

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Due to the disparity in composition and mechanical properties of the osteochondral interface, tissue engineering approaches to the regenration of the osteochondral site face unique challenges that are both biochemical and mechanical in nature. The current work has developed a novel biomimetic biphasic nanocomposite osteochondral scaffold integrating two biocompatible polymers each containing tissue-specific growth factor-encapsulated core-shell nanospheres. Specifically, a poly(caprolactone) based bone layer was successfully integrated with a poly(ethylene glycol) hydrogel cartilage layer. The current work also developed a novel nanosphere fabrication technique for efficient growth factor encapsulation and sustained delivery via wet co-axial electrospray. Human bone marrow mesenchymal stem cell adhesion, osteogenic and chondrogenic differentiation were evaluated in our constructs and showed significantly improved hMSC adhesion and differentiation in vitro.
机译:由于骨软骨界面的组成和机械性能的差异,组织工程方法再生软骨的位点面临着生化和机械性质的独特挑战。当前的工作已经开发了一种新型的仿生双相纳米复合骨软骨支架,该支架整合了两种生物相容性聚合物,每种聚合物均包含组织特异性生长因子包封的核-壳纳米球。具体地,将基于聚己内酯的骨层成功地与聚乙二醇水凝胶软骨层整合。当前的工作还开发了一种新颖的纳米球制造技术,用于有效的生长因子封装和通过湿式同轴电喷雾的持续输送。在我们的构建体中评估了人骨髓间充质干细胞的粘附,成骨和软骨形成的分化,并显示在体外hMSC的粘附和分化显着改善。

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