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A Standardized Critical Size Defect Model in Normal and Osteoporotic Rats to Evaluate Bone Tissue Engineered Constructs

机译:正常和骨质疏松大鼠的标准临界尺寸缺损模型用于评估骨组织工程构建体。

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摘要

Tissue engineered constructs should be tested for their efficacy not only in normal but also in osteoporotic bone. The rat is an established animal model for osteoporosis and is used often for bone healing studies. In this study a defined and standardized critical size defect model in the rat suitable for screening new tissue engineered constructs in normal and osteoporotic bone is described and validated. Normal and ovariectomised Wistar rats received a unilateral middiaphyseal 5 mm defect in the femur, which was instrumented with a radiolucent PEEK plate fixed with angular stable titanium screws and left untreated. All animals were euthanized eight weeks after defect surgery and the bone healing was evaluated using radiographs, computed tomography measurements, and histology. The developed fixation system provided good stability, even in osteoporotic bone. The implants and ancillary instruments ensured consistent and facile placement of the PEEK plates. The untreated defects did not heal without intervention making the model a well-defined and standardized critical size defect model highly useful for evaluating tissue engineered solutions in normal and osteoporotic bone.
机译:组织工程构建体不仅应在正常情况下,而且还应在骨质疏松性骨中测试其功效。大鼠是骨质疏松症的公认动物模型,经常用于骨骼愈合研究。在这项研究中,描述并验证了适用于在正常和骨质疏松性骨中筛选新的组织工程构造的大鼠中定义和标准化的临界大小缺陷模型。正常和切除卵巢的Wistar大鼠在股骨上出现了单侧中dia干5 mm缺损,用不透射线的PEEK板固定了角度稳定的钛螺钉,未进行治疗。缺损手术八周后对所有动物进行安乐死,并使用射线照片,计算机断层扫描测量和组织学评估骨愈合。发达的固定系统即使在骨质疏松性骨中也提供了良好的稳定性。植入物和辅助器械确保了PEEK板的一致性和便捷性。未经干预的未经治疗的缺损无法治愈,从而使该模型成为定义明确且标准化的临界尺寸缺损模型,对于评估正常和骨质疏松性骨的组织工程解决方案非常有用。

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