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Development of an atrophic nonunion model and comparison to a closed healing fracture in rat femur

机译:大鼠股骨萎缩性骨不连模型的建立及闭合性愈合骨折的比较

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摘要

Although most fractures heal, some fail to heal and become nonunions. Many animal models have been developed to study problems of fracture healing. The majority of nonunion models have involved segmental bone defects, but this may not adequately represent the biologic condition in which nonunions clinically develop. The objective of the present study is to develop a nonunion model that better simulates the clinical situation in which there is soft tissue damage including periosteal disruption and to compare this model to a standard closed fracture model utilizing identical fracture stabilization, providing a similar mechanical environment. A total of 96 three month old Long Evans rats were utilized. A 1.25 mm diameter K-wire was inserted into the femur in a retrograde fashion, and a middiaphyseal closed transverse fracture was created using a standard three-point bending device. To create a non-union, 48 of the rats received additional surgery to the fractured femur. The fracture site was exposed and 2mm of the periosteum was cauterized on each side of the fracture. Fracture healing was evaluated with serial radiographs every two weeks. Animals were maintained for intervals of two, four, six or eight weeks after surgery. Specimens from each time interval were subjected to biomechanical and histological evaluation. None of the cauterized fractures healed throughout the eight weeks experimental duration. The radiographical appearance of nonunion models was atrophic. This investigation showed pronounced differences between the experimental nonunions and standard closed fractures both histologically and biomechanically. In conclusion, we have developed a reproducible atrophic nonunion model in the rat femur that simulates the clinical condition in which there is periosteal disruption but no bone defect.
机译:虽然大多数骨折愈合,但有些人没有愈合并变得不安。已经开发了许多动物模型来研究骨折愈合问题。大多数洋葱模型都涉及节段骨缺陷,但这可能无法充分代表临床上发展的生物学条件。本研究的目的是开发一种不沉积的模型,可以更好地模拟临床局部,其中存在软组织损伤,包括骨膜破坏,并将该模型与具有相同骨折稳定化的标准封闭式裂缝模型进行比较,提供类似的机械环境。共有96个三个月大的长欧安斯大鼠。将1.25mm直径的K线以逆行方式插入股骨中,使用标准的三点弯曲装置产生肌椎间性闭合横向骨折。为了创造非联合,48只大鼠接受额外的手术到骨折股骨。将骨折部位暴露,将2mm的骨膜浸润在裂缝的每一侧烧灼。每两周一次评价裂缝愈合每两周一次评价串行射线照相。在手术后的两个,四个,六或八周的间隔保持动物。每次间隔的标本都受到生物力学和组织学评估。在八周的实验持续时间内没有任何含腐蚀的骨折愈合。非主轴模型的射线照相外观是萎缩的。该研究表明实验性壬酮和标准封闭骨折之间的显着差异,两者在组织学和生物力学上。总之,我们在大鼠股骨中开发了一种可重复的萎缩性壬芯模型,用于模拟临床状况,其中脑膜破坏但没有骨缺损。

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