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首页> 外文期刊>Tissue engineering >Synchrotron radiation microtomography of bone engineered from bone marrow stromal cells.
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Synchrotron radiation microtomography of bone engineered from bone marrow stromal cells.

机译:从骨髓基质细胞工程改造的骨骼的同步辐射显微照相术。

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摘要

Osteoprogenitor cells expanded in vitro and associated with porous ceramic scaffolds have been proposed as bone substitutes. Animal models have been developed to test the efficacy of various cell populations and scaffolds in promoting bone repair. Qualitative analysis of the new bone formed within the ceramic scaffold is relatively easy by conventional histology. On the other hand, quantitative data are difficult to obtain. X-ray computed microtomography was used as a possible experimental technique to obtain quantitative data on the three-dimensional structure of newly formed bone and of remaining scaffold in implants after 8 weeks in vivo. Measurements were performed at the European Synchrotron Radiation Facility on beamline ID19 with a spatial resolution of about 5 microm. This study clearly indicates the possibility of nondestructive quantitative analysis of bone-engineered constructs. The technique appears suitable to compare different scaffolds (and possibly different cell populations) with regard to bone formation efficiency and reabsorbability of biomaterials in the immunodeficient mouse model.
机译:已经提出在体外扩增并与多孔陶瓷支架相关的骨祖细胞作为骨替代物。已经开发出动物模型以测试各种细胞群和支架在促进骨修复中的功效。通过常规组织学,对在陶瓷支架内形成的新骨骼的定性分析相对容易。另一方面,难以获得定量数据。 X射线计算机断层摄影术被用作一种可能的实验技术,以获取有关体内8周后新形成的骨骼和植入物中剩余支架的三维结构的定量数据。在欧洲同步加速器辐射设施上对光束线ID19进行测量,其空间分辨率约为5微米。这项研究清楚地表明了对骨工程构造物进行非破坏性定量分析的可能性。该技术似乎适合在免疫缺陷小鼠模型中就骨形成效率和生物材料的重吸收性比较不同的支架(可能还有不同的细胞群)。

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