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Optimal scaffold design and effective progenitor cell identification for the regeneration of vascularized bone

机译:最佳的支架设计与血管化骨再生的有效祖细胞鉴定

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Bone tissue engineering offers perhaps the most attractive treatment option for bone repair/regeneration as it eliminates complications of other bone grafting options (i.e., availability and immunogenicity issues of autografts and allografts, respectively). However, scaffold-based bone tissue engineering is largely limited by inadequate vascaularization, and as a result, bone formation is often restricted to the construct's periphery. In this study, we offer a two-pronged approach to overcome periphery-limited bone and vascular formation. We have developed optimally designed, mechanically strong, biodegradable scaffolds with increased porosity and interconnectivity. We have also identified and isolated superior, clinically-relevant cell populations (peripheral blood-derived endothelial progenitor cells (EPCs), and bone marrow-derived mesenchymal stem cells (MSCs)). In combination, we have developed a synthetic graft system suitable for the regeneration of vascularized bone.
机译:骨组织工程提供骨修复/再生的最具吸引力的治疗选择,因为它消除了其他骨移植选择的并发症(即自体移植物和同种异体移植物的可用性和免疫原性问题)。然而,基于支架的骨组织工程在很大程度上受到血管化不足的限制,结果,骨形成通常仅限于构建体的周边。在这项研究中,我们提供了一种双管齐下的方法来克服周围有限的骨和血管形成。我们开发了最佳设计,机械强,可生物降解的支架,具有增加的孔隙率和互连。我们还发现和孤立的临床相关的细胞群(外周血血液源性内皮祖细胞(EPC)和骨髓衍生的间充质干细胞(MSCs))。组合,我们开发了一种适用于血管化骨再生的合成移植系统。

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