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Microsurgical Techniques Used to Construct the Vascularized and Neurotized Tissue Engineered Bone

机译:用于构建血管化和神经化组织工程化骨的显微外科技术

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摘要

The lack of vascularization in the tissue engineered bone results in poor survival and ossification. Tissue engineered bone can be wrapped in the soft tissue flaps which are rich in blood supply to complete the vascularization in vivo by microsurgical technique, and the surface of the bone graft can be invaded with new vascular network. The intrinsic vascularization can be induced via a blood vessel or an arteriovenous loop located centrally in the bone graft by microsurgical technique. The peripheral nerve especially peptidergic nerve has effect on the bone regeneration. The peptidergic nerve can be used to construct the neurotized tissue engineered bone by implanting the nerve fiber into the center of bone graft. Thus, constructing a highly vascularized and neurotized tissue engineered bone according with the theory of biomimetics has become a useful method for repairing the large bone defect. Many researchers have used the microsurgical techniques to enhance the vascularization and neurotization of tissue engineered bone and to get a better osteogenesis effect. This review aims to summarize the microsurgical techniques mostly used to construct the vascularized and neurotized tissue engineered bone.
机译:组织工程化骨中缺乏血管化导致存活和骨化不良。组织工程化的骨头可以包裹在充满血液供应的软组织瓣中,以通过显微外科技术完成体内血管化,并且可以用新的血管网络侵入骨移植物的表面。内在血管形成可以通过显微外科技术经由位于骨移植物中居中的血管或动静脉环来诱导。周围神经特别是肽能神经对骨骼再生有影响。通过将神经纤维植入骨移植物的中心,可将肽能神经用于构建神经化的组织工程化骨。因此,根据仿生学原理构建高度血管化和神经化的组织工程骨已成为修复大骨缺损的有用方法。许多研究人员已经使用显微外科技术来增强组织工程化骨的血管化和神经化作用,并获得更好的成骨作用。这篇综述旨在总结显微外科技术,主要用于构建血管化和神经化的组织工程化骨。

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