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3D-Bioprinting Strategies Based on In Situ Bone-Healing Mechanism for Vascularized Bone Tissue Engineering

机译:基于血管化骨组织工程原位骨愈合机制的3D-生物制版策略

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摘要

Over the past decades, a number of bone tissue engineering (BTE) approaches have been developed to address substantial challenges in the management of critical size bone defects. Although the majority of BTE strategies developed in the laboratory have been limited due to lack of clinical relevance in translation, primary prerequisites for the construction of vascularized functional bone grafts have gained confidence owing to the accumulated knowledge of the osteogenic, osteoinductive, and osteoconductive properties of mesenchymal stem cells and bone-relevant biomaterials that reflect bone-healing mechanisms. In this review, we summarize the current knowledge of bone-healing mechanisms focusing on the details that should be embodied in the development of vascularized BTE, and discuss promising strategies based on 3D-bioprinting technologies that efficiently coalesce the abovementioned main features in bone-healing systems, which comprehensively interact during the bone regeneration processes.
机译:在过去几十年中,已经制定了许多骨组织工程(BTE)方法,以解决临界大小骨缺陷管理中的大量挑战。尽管在实验室中发展的大多数BTE策略由于翻译中缺乏临床相关性而受到限制,但血管化功能骨移植的初次先决条件由于累积的骨质原因,骨诱导性和骨导电性能的累积知识而获得了信心间充质干细胞和反映骨愈合机制的骨相关生物材料。在这篇综述中,我们总结了对骨骼治疗机制的目前的知识,重点是在血管化BTE开发中的开发中的细节,并讨论了基于3D-BioPlinting技术的有希望的策略,这些技术有效地将上述骨骼愈合中的主要特征结合在一起系统,在骨再生过程中全面交互。

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