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首页> 外文期刊>Acta biomaterialia >Early stage mineralization in tissue engineering mapped by high resolution X-ray microdiffraction
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Early stage mineralization in tissue engineering mapped by high resolution X-ray microdiffraction

机译:高分辨率X射线微衍射在组织工程中的早期矿化作用

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The specific routes of biomineralization in nature are here explored using a tissue engineering approach in which bone is formed in porous ceramic constructs seeded with bone marrow stromal cells and implanted in vivo. Unlike previous studies this model system reproduces mammalian bone formation, here investigated at high temporal resolution. Different mineralization stages were monitored at different distances from the scaffold interface so that their spatial analysis corresponded to temporal monitoring of the bone growth and mineralization processes. The micrometer spatial resolution achieved by our diffraction technique ensured highly accurate reconstruction of the different temporal mineralization steps and provided some hints to the challenging issue of the mineral deposit first formed at the organic-mineral interface. Our results indicated that in the first stage of biomineralization organic tissue provides bioavailable calcium and phosphate ions, ensuring a constant reservoir of amorphous calcium phosphate (ACP) during hydroxyapatite (HA) nanocrystal formation. In this regard we suggest a new role of ACP in HA formation, with a continuous organic-mineral transition assisted by a dynamic pool of ACP. After HA nanocrystals formed, the scaffold and collagen act as templates for nanocrystal arrangement on the microscopic and nanometric scales, respectively.
机译:这里使用组织工程方法探索自然生物矿化的具体途径,其中在接种有骨髓基质细胞并植入体内的多孔陶瓷结构中形成骨骼。与以前的研究不同,此模型系统可复制哺乳动物的骨形成,此处以高时间分辨率对其进行了研究。在距支架界面不同距离处监测了不同的矿化阶段,因此它们的空间分析与对骨骼生长和矿化过程的时间监测相对应。通过我们的衍射技术获得的微米级空间分辨率确保了不同时间矿化步骤的高精度重建,并为最初在有机-矿物界面形成的矿床具有挑战性的问题提供了一些提示。我们的结果表明,在生物矿化的第一阶段,有机组织提供了生物可利用的钙和磷酸根离子,从而确保了在羟基磷灰石(HA)纳米晶体形成过程中无定形磷酸钙(ACP)的恒定储存。在这方面,我们建议ACP在HA形成中的新作用,并通过动态ACP池辅助连续的有机-矿物过渡。 HA纳米晶体形成后,支架和胶原分别充当纳米级和纳米级纳米晶体排列的模板。

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