首页> 美国卫生研究院文献>Tissue Engineering. Part A >Autologously Generated Tissue-Engineered Bone Flaps for Reconstruction of Large Mandibular Defects in an Ovine Model
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Autologously Generated Tissue-Engineered Bone Flaps for Reconstruction of Large Mandibular Defects in an Ovine Model

机译:自体产生的组织工程化的骨瓣在绵羊模型中重建下颌大缺损

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摘要

The reconstruction of large craniofacial defects remains a significant clinical challenge. The complex geometry of facial bone and the lack of suitable donor tissue often hinders successful repair. One strategy to address both of these difficulties is the development of an in vivo bioreactor, where a tissue flap of suitable geometry can be orthotopically grown within the same patient requiring reconstruction. Our group has previously designed such an approach using tissue chambers filled with morcellized bone autograft as a scaffold to autologously generate tissue with a predefined geometry. However, this approach still required donor tissue for filling the tissue chamber. With the recent advances in biodegradable synthetic bone graft materials, it may be possible to minimize this donor tissue by replacing it with synthetic ceramic particles. In addition, these flaps have not previously been transferred to a mandibular defect. In this study, we demonstrate the feasibility of transferring an autologously generated tissue-engineered vascularized bone flap to a mandibular defect in an ovine model, using either morcellized autograft or synthetic bone graft as scaffold material.
机译:大颅面缺陷的重建仍然是一项重大的临床挑战。面部骨骼的复杂几何形状和缺乏合适的供体组织经常阻碍成功的修复。解决这两个难题的一种策略是开发体内生物反应器,其中可以在需要重建的同一位患者中原位生长具有合适几何形状的组织瓣。我们的小组以前设计了这样一种方法,即使用装有碎骨骨自体移植物的组织腔作为支架,自体产生具有预定几何形状的组织。但是,这种方法仍然需要供体组织来填充组织腔。随着可生物降解的合成骨移植材料的最新进展,有可能通过用合成陶瓷颗粒替代该供体组织而使其最小化。此外,这些皮瓣以前没有转移到下颌骨缺损中。在这项研究中,我们证明了将自体产生的组织工程化血管化骨瓣转移到绵羊模型中的下颌骨缺损的可行性,使用粉碎的自体移植物或合成骨移植物作为支架材料。

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