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High-Resolution X-Ray Techniques as New Tool to Investigate the 3D Vascularization of Engineered-Bone Tissue

机译:高分辨率X射线技术作为研究工程骨组织3D血管化的新工具

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摘要

The understanding of structure–function relationships in normal and pathologic mammalian tissues is at the basis of a tissue engineering (TE) approach for the development of biological substitutes to restore or improve tissue function. In this framework, it is interesting to investigate engineered bone tissue, formed when porous ceramic constructs are loaded with bone marrow stromal cells (BMSC) and implanted in vivo. To monitor the relation between bone formation and vascularization, it is important to achieve a detailed imaging and a quantitative description of the complete three-dimensional vascular network in such constructs. Here, we used synchrotron X-ray phase-contrast micro-tomography to visualize and analyze the three-dimensional micro-vascular networks in bone-engineered constructs, in an ectopic bone formation mouse-model. We compared samples seeded and not seeded with BMSC, as well as samples differently stained or unstained. Thanks to the high quality of the images, we investigated the 3D distribution of both vessels and collagen matrix and we obtained quantitative information for all different samples. We propose our approach as a tool for quantitative studies of angiogenesis in TE and for any pre-clinical investigation where a quantitative analysis of the vascular network is required.
机译:了解正常和病理性哺乳动物组织中的结构-功能关系是组织工程学(TE)方法的基础,该方法用于开发生物替代品以恢复或改善组织功能。在这种框架下,研究工程化的骨组织是很有趣的,该工程是在多孔陶瓷结构中加载骨髓基质细胞(BMSC)并植入体内后形成的。为了监测骨形成与血管形成之间的关系,重要的是在此类构造中实现详细的成像和对完整三维血管网络的定量描述。在这里,我们使用异位骨形成小鼠模型中的同步加速器X射线相衬显微断层摄影术来可视化和分析骨工程结构中的三维微血管网络。我们比较了用BMSC接种和未接种的样品,以及染色或未染色的样品。由于图像的高质量,我们研究了血管和胶原蛋白基质的3D分布,并获得了所有不同样品的定量信息。我们建议将我们的方法用作定量研究TE中血管生成的工具,以及任何需要对血管网络进行定量分析的临床前研究的工具。

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