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首页> 外文期刊>Calcified tissue international. >Characterizing the Composition of Bone Formed During Fracture Healing Using Scanning Electron Microscopy Techniques
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Characterizing the Composition of Bone Formed During Fracture Healing Using Scanning Electron Microscopy Techniques

机译:使用扫描电子显微镜技术表征骨折愈合过程中形成的骨的成分

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摘要

About 5-10 % of all bone fractures suffer from delayed healing, which may lead to non-union. Bone morphogenetic proteins (BMPs) can be used to induce differentiation of osteoblasts and enhance the formation of the bony callus, and bisphosphonates help to retain the newly formed callus. The aim of this study was to investigate if scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS) can identify differences in the mineral composition of the newly formed bone compared to cortical bone from a non-fractured control. Moreover, we investigate whether the use of BMPs and bisphosphonates-alone or combined-may have an effect on bone mineralization and composition. Twelve male Sprague-Dawley rats at 9 weeks of age were randomly divided into four groups and treated with (A) saline, (B) BMP-7, (C) bisphosphonates (Zoledronate), and (D) BMP-7 + Zoledronate. The rats were sacrificed after 6 weeks. All samples were imaged using SEM and chemically analyzed with EDS to quantify the amount of C, N, Ca, P, O, Na, and Mg. The Ca/P ratio was the primary outcome. In the fractured samples, two areas of interest were chosen for chemical analysis with EDS: the callus and the cortical bone. In the non-fractured samples, only the cortex was analyzed. Our results showed that the element composition varied to a small extent between the callus and the cortical bone in the fractured bones. However, the Ca/P ratio did not differ significantly, suggesting that the mineralization at all sites is similar 6 weeks post-fracture in this rat model.
机译:所有骨折中约有5-10%的骨折愈合延迟,这可能导致骨不愈合。骨形态发生蛋白(BMP)可用于诱导成骨细胞分化并增强骨call的形成,而双膦酸盐则有助于保留新形成的愈伤组织。这项研究的目的是调查扫描电子显微镜(SEM)和能量色散X射线能谱(EDS)是否可以识别出与未破裂对照相比,新形成的骨骼与皮质骨骼的矿物质成分差异。此外,我们调查单独或联合使用BMP和双膦酸盐是否可能对骨矿化和成分产生影响。将12只9周大的雄性Sprague-Dawley大鼠随机分为四组,并分别用(A)盐水,(B)BMP-7,(C)双膦酸盐(Zoledronate)和(D)BMP-7 + Zoledronate处理。 6周后处死大鼠。所有样品均使用SEM成像并用EDS进行化学分析,以量化C,N,Ca,P,O,Na和Mg的含量。 Ca / P比是主要结局。在破裂的样品中,选择了两个感兴趣的区域用于EDS化学分析:愈伤组织和皮质骨。在未破裂的样品中,仅分析了皮质。我们的结果表明,在骨折骨中的愈伤组织和皮质骨之间,元素组成变化很小。但是,Ca / P比值没有显着差异,这表明在该大鼠模型中,骨折后6周所有部位的矿化相似。

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