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Characterization of a Pre-Clinical Mini-Pig Model of Scaphoid Non-Union

机译:舟骨骨不愈合的临床前迷你猪模型的表征

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摘要

A fractured scaphoid is a common disabling injury that is frequently complicated by non-union. The treatment of non-union remains challenging because of the scaphoid’s small size and delicate blood supply. Large animal models are the most reliable method to evaluate the efficacy of new treatment modalities before their translation into clinical practice. The goal of this study was to model a human scaphoid fracture complicated by non-union in Yucatan mini-pigs. Imaging and perfusion studies were used to confirm that the anatomy and blood supply of the radiocarpal bone in mini-pigs were similar to the human scaphoid. A 3 mm osteotomy of the radiocarpal bone was generated and treated with immediate fixation or filled with a dense collagen gel followed by delayed fixation. Bone healing was assessed using quantitative micro computed tomography and histology. With immediate fixation, the osteotomy site was filled with new bone across its whole length resulting in complete bridging. The dense collagen gel, previously shown to impede neo-vascularization, followed by delayed fixation resulted in impaired bridging with less bone of lower quality. This model is an appropriate, easily reproducible model for the evaluation of novel approaches for the repair of human scaphoid fractures.
机译:舟骨骨折是常见的致残伤,常因不愈合而复杂化。由于舟骨尺寸小且血液供应微弱,因此不愈合的治疗仍然具有挑战性。大型动物模型是在将新治疗方式转化为临床实践之前评估其有效性的最可靠方法。这项研究的目的是在尤卡坦小型猪中建模一个人类舟骨骨折并伴有不愈合的模型。影像学和灌注研究用于确认小型猪中the骨的解剖结构和血液供应与人类舟骨相似。产生了3 mm的carp腕骨截骨,并立即进行固定治疗,或用致密的胶原蛋白凝胶填充,然后延迟固定。使用定量显微计算机断层扫描和组织学评估骨愈合。立即固定,截骨部位在其整个长度上都充满了新的骨头,导致了完全的桥接。先前显示,致密的胶原蛋白凝胶会阻碍新血管形成,然后延迟固定,从而导致桥联功能受损,且骨骼质量降低,质量降低。该模型是一种合适的,易于复制的模型,用于评估修复人类舟骨骨折的新方法。

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