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一种在标准化生物力学条件下分析小鼠软骨内骨折愈合的微创模型。

A Minimally Invasive Model to Analyze Endochondral Fracture Healing in Mice Under Standardized Biomechanical Conditions.

作者信息

Histing Tina, Bremer Philipp, Rollmann Mika F, Herath Steven, Klein Moritz, Pohlemann Tim, Menger Michael D, Fritz Tobias

机构信息

Department of Trauma, Hand and Reconstructive Surgery, Saarland University;

Department of Trauma, Hand and Reconstructive Surgery, Saarland University.

出版信息

J Vis Exp. 2018 Mar 22(133):57255. doi: 10.3791/57255.

Abstract

Bone healing models are necessary to analyze the complex mechanisms of fracture healing to improve clinical fracture treatment. During the last decade, an increased use of mouse models in orthopedic research was noted, most probably because mouse models offer a large number of genetically-modified strains and special antibodies for the analysis of molecular mechanisms of fracture healing. To control the biomechanical conditions, well-characterized osteosynthesis techniques are mandatory, also in mice. Here, we report on the design and use of a closed bone healing model to stabilize femur fractures in mice. The intramedullary screw, made of medical-grade stainless steel, provides through fracture compression an axial and rotational stability compared to the mostly used simple intramedullary pins, which show a complete lack of axial and rotational stability. The stability achieved by the intramedullary screw allows the analysis of endochondral healing. A large amount of callus tissue, received after stabilization with the screw, offers ideal conditions to harvest tissue for biochemical and molecular analyses. A further advantage of the use of the screw is the fact that the screw can be inserted into the femur with a minimally invasive technique without inducing damage to the soft tissue. In conclusion, the screw is a unique implant that can ideally be used in closed fracture healing models offering standardized biomechanical conditions.

摘要

骨愈合模型对于分析骨折愈合的复杂机制以改善临床骨折治疗是必要的。在过去十年中,人们注意到小鼠模型在骨科研究中的使用有所增加,这很可能是因为小鼠模型提供了大量基因改造品系和特殊抗体,用于分析骨折愈合的分子机制。为了控制生物力学条件,在小鼠中也必须采用特征明确的骨固定技术。在此,我们报告一种用于稳定小鼠股骨骨折的闭合性骨愈合模型的设计与应用。与大多使用的简单髓内针相比,由医用级不锈钢制成的髓内螺钉通过骨折加压提供轴向和旋转稳定性,而简单髓内针完全缺乏轴向和旋转稳定性。髓内螺钉实现的稳定性允许对软骨内愈合进行分析。用螺钉固定后获得的大量骨痂组织为采集用于生化和分子分析的组织提供了理想条件。使用该螺钉的另一个优点是可以采用微创技术将螺钉插入股骨,而不会对软组织造成损伤。总之,该螺钉是一种独特的植入物,非常适合用于提供标准化生物力学条件的闭合性骨折愈合模型。

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本文引用的文献

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A new model to analyze metaphyseal bone healing in mice.一种分析小鼠干骺端骨愈合的新模型。
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Development of a stable closed femoral fracture model in mice.小鼠稳定闭合性股骨骨折模型的建立。
J Surg Res. 2009 May 1;153(1):71-5. doi: 10.1016/j.jss.2008.02.042. Epub 2008 Mar 24.
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Development of a locking femur nail for mice.一种用于小鼠的锁定股骨钉的研发。
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