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Establishment of a preclinical ovine screening model for the investigation of bone tissue engineering strategies in cancellous and cortical bone defects

机译:建立临床前绵羊筛查模型以研究松质和皮质骨缺损的骨组织工程策略

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Background New tissue engineering strategies for bone regeneration need to be investigated in a relevant preclinical large animal model before making the translation into human patients. Therefore, our interdisciplinary group established a simplified large animal screening model for intramembranous bone defect regeneration in cancellous and cortical bone. Methods Related to a well-established model of cancellous drill hole defect regeneration in sheep, both the proximal and distal epimetaphyseal regions of the femur and the humerus were used bilaterally for eight drill hole cancellous defects (? 6?mm, 15?mm depth). Several improvements of the surgical procedure and equipment for an easier harvest of samples were invented. For the inclusion of cortical defect regeneration, a total of eight unicortical diaphyseal drill holes (6?mm ?) were placed in the proximal-lateral and distal-medial parts of the metacarpal (MC) and metatarsal (MT) diaphyseal bone bilaterally. Acting moments within a normal gait cycle in the musculoskeletal lower limb model were compared with the results of the biomechanical in vitro torsion test until failure to ensure a low accidental fracture risk of utilized bones (ANOVA, p Results The in vitro tests confirmed this model a high comparability between drilled MC and MT bones and a high safety margin until fracture. The exclusion of one animal from the in vivo study, due to a spiral fracture of the left MC bone led to a tolerable failure rate of 8?%. Conclusions As a screening tool, promising biomaterials can be tested in this cancellous and cortical bone defect model prior to the application in a more complex treatment site.
机译:背景技术在翻译成人类患者之前,需要在相关的临床前大型动物模型中研究用于骨再生的新组织工程策略。因此,我们的跨学科小组建立了简化的大型动物筛查模型,用于在松质骨和皮质骨中再生膜内骨缺损。方法与公认的绵羊松质钻孔缺损再生模型相关,股骨和肱骨近端和远端上met干区均被双向用于八个钻孔松质缺损(?6?mm,15?mm深度) 。发明了对外科手术程序和设备的一些改进,以便于收集样品。为了包括皮质缺损的再生,在双侧掌骨(MC)和meta骨(MT)的近端-外侧和远端-内侧部分总共设置了八个单皮质干端钻孔(6?mm?)。将肌肉骨骼下肢模型在正常步态周期内的作用力矩与生物力学体外扭转试验的结果进行比较,直到未能确保所用骨骼的意外骨折风险较低(ANOVA,p结果)体外试验证实了该模型钻出的MC和MT骨之间具有很高的可比性,并且在骨折前具有很高的安全裕度;由于左MC骨呈螺旋状骨折,因此从体内研究中排除一只动物导致了8%的可容许失败率。作为一种筛选工具,可以在该松质和皮质骨缺损模型中测试有前途的生物材料,然后再应用于更复杂的治疗部位。

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