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评价大鼠股骨骨折愈伤组织的组成和矿物结构。

Evaluation of composition and mineral structure of callus tissue in rat femoral fracture.

机构信息

University of Eastern Finland, Department of Applied Physics, POB 1627, FIN-70211 Kuopio, Finland.

Lund University, Division of Physical Chemistry, POB 124, SE-22100 Lund, Sweden.

出版信息

J Biomed Opt. 2014 Feb;19(2):025003. doi: 10.1117/1.JBO.19.2.025003.

Abstract

Callus formation is a critical step for successful fracture healing. Little is known about the molecular composition and mineral structure of the newly formed tissue in the callus. The aim was to evaluate the feasibility of small angle x-ray scattering (SAXS) to assess mineral structure of callus and cortical bone and if it could provide complementary information with the compositional analyses from Fourier transform infrared (FTIR) microspectroscopy. Femurs of 12 male Sprague-Dawley rats at 9 weeks of age were fractured and fixed with an intramedullary 1.1 mm K-wire. Fractures were treated with the combinations of bone morphogenetic protein-7 and/or zoledronate. Rats were sacrificed after 6 weeks and both femurs were prepared for FTIR and SAXS analysis. Significant differences were found in the molecular composition and mineral structure between the fracture callus, fracture cortex, and control cortex. The degree of mineralization, collagen maturity, and degree of orientation of the mineral plates were lower in the callus tissue than in the cortices. The results indicate the feasibility of SAXS in the investigation of mineral structure of bone fracture callus and provide complementary information with the composition analyzed with FTIR. Moreover, this study contributes to the limited FTIR and SAXS data in the field.

摘要

骨痂形成是骨折愈合成功的关键步骤。对于新形成的骨痂组织的分子组成和矿物质结构知之甚少。本研究旨在评估小角 X 射线散射(SAXS)评估骨痂和皮质骨矿物质结构的可行性,以及它是否可以提供与傅里叶变换红外(FTIR)微光谱分析的组成分析互补的信息。9 周龄雄性 Sprague-Dawley 大鼠的 12 根股骨骨折并用 1.1mm 髓内 K 线固定。骨折用骨形成蛋白-7 和/或唑来膦酸处理。6 周后处死大鼠,对双侧股骨进行 FTIR 和 SAXS 分析。在骨折骨痂、骨折皮质和对照皮质之间发现了分子组成和矿物质结构的显著差异。矿化程度、胶原成熟度和矿物质板的取向程度在骨痂组织中均低于皮质骨。结果表明 SAXS 可用于研究骨折骨痂的矿物质结构,并提供与 FTIR 分析的组成互补的信息。此外,本研究为该领域有限的 FTIR 和 SAXS 数据做出了贡献。

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