首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Establishment of a Segmental Femoral Critical-size Defect Model in Mice Stabilized by Plate Osteosynthesis
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Establishment of a Segmental Femoral Critical-size Defect Model in Mice Stabilized by Plate Osteosynthesis

机译:板骨合成稳定小鼠节段性股骨临界大小缺损模型的建立

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摘要

The use of tissue-engineered bone constructs is an appealing strategy to overcome drawbacks of autografts for the treatment of massive bone defects. As a model organism, the mouse has already been widely used in bone-related research. Large diaphyseal bone defect models in mice, however, are sparse and often use bone fixation which fills the bone marrow cavity and does not provide optimal mechanical stability. The objectives of the current study were to develop a critical-size, segmental, femoral defect in nude mice. A 3.5-mm mid-diaphyseal femoral ostectomy (approximately 25% of the femur length) was performed using a dedicated jig, and was stabilized with an anterior located locking plate and 4 locking screws. The bone defect was subsequently either left empty or filled with a bone substitute (syngenic bone graft or coralline scaffold). Bone healing was monitored noninvasively using radiography and in vivo micro-computed-tomography and was subsequently assessed by ex vivo micro-computed-tomography and undecalcified histology after animal sacrifice, 10 weeks postoperatively. The recovery of all mice was excellent, a full-weight-bearing was observed within one day following the surgical procedure. Furthermore, stable bone fixation and consistent fixation of the implanted materials were achieved in all animals tested throughout the study. When the bone defects were left empty, non-union was consistently obtained. In contrast, when the bone defects were filled with syngenic bone grafts, bone union was always observed. When the bone defects were filled with coralline scaffolds, newly-formed bone was observed in the interface between bone resection edges and the scaffold, as well as within a short distance within the scaffold. The present model describes a reproducible critical-size femoral defect stabilized by plate osteosynthesis with low morbidity in mice. The new load-bearing segmental bone defect model could be useful for studying the underlying mechanisms in bone regeneration pertinent to orthopaedic applications.
机译:组织工程化的骨结构的使用是一种有吸引力的策略,可以克服自体移植治疗大量骨缺损的弊端。作为模型生物,小鼠已被广泛用于骨骼相关研究。但是,小鼠的大型干dia端骨缺损模型稀疏,经常使用填充骨髓腔且无法提供最佳机械稳定性的骨固定术。当前研究的目的是在裸鼠中形成临界大小,节段性股骨缺损。使用专用夹具进行了3.5毫米的干dia端股骨造口术(约占股骨长度的25%),并使用前侧锁定板和4个锁定螺钉进行了稳定。随后将骨缺损留空或用骨替代物(同基因骨移植物或珊瑚支架)填充。使用放射线照相术和体内微计算机断层摄影术无创地监测骨愈合,随后在动物处死后10周通过离体微计算机断层摄影术和未脱钙的组织学进行评估。所有小鼠的恢复都非常好,在手术后一天之内观察到了全体重。此外,在整个研究中测试的所有动物中,都实现了稳定的骨固定和植入材料的固定固定。当骨缺损留空时,始终获得不愈合。相反,当用同基因骨移植物填充骨缺损时,总是观察到骨结合。当骨缺损被珊瑚状支架填充时,在骨切除边缘和支架之间的界面以及支架内的短距离内观察到了新形成的骨骼。本模型描述了一种可再现的临界大小的股骨缺损,其通过板状骨合成在小鼠中具有较低的发病率而得以稳定。新的承重节段性骨缺损模型可用于研究与骨科应用相关的骨再生的潜在机制。

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