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Osteogenesis of human stem cells in silk biomaterial for regenerative therapy

机译:丝绸生物材料中人干细胞的成骨作用以进行再生治疗

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The limitations of therapeutic options such as bone grafting and protein based therapy in the repair of massive bone defects shift interest to stem cell based regenerative medicine. Stem cells are able to perform the dual roles in regenerative medicine of cellular machinery and gene delivery vehicles. However, the discussion of stem cells in this review is narrowed to the current status of genetically unmodified human mesenchymal stem cells in clinical purpose. Nevertheless, the constructs are prepared ex vivo, which lacks the multitude cues of in vivo microenvironments. Scaffolds provide control to the local environment, along with the sustainable release of different growth factors and the delivery of therapeutic proteins. The review focuses the present approaches on fabricating biomimetic extra cellular matrices such as engineered porous scaffolds of silk fibroin protein origin, with appropriate fundamental mechanisms of stem cell regulation to specific lineage under the defined environment of bioreactors by key signaling molecules.
机译:在大量骨缺损的修复中,诸如骨移植和基于蛋白质的治疗等治疗选择的局限性将注意力转移到了基于干细胞的再生医学上。干细胞能够在细胞机械和基因传递载体的再生医学中发挥双重作用。然而,在这篇综述中,干细胞的讨论仅限于临床上未经基因修饰的人间充质干细胞的当前状态。然而,构建体是离体制备的,缺乏体内微环境的多种线索。支架提供对当地环境的控制,以及不同生长因子的可持续释放和治疗性蛋白质的输送。这篇综述着眼于目前的方法,以制造仿生细胞外基质,如丝素蛋白蛋白来源的工程化多孔支架,并通过关键信号分子在特定的生物反应器环境下,将干细胞调节至特定谱系的适当基本机制。

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