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对具有可控分析深度的部分脱矿化定向皮质骨进行X射线衍射研究。

X-ray diffraction studies of a partially demineralized oriented cortical bone with the controlled depth of analysis.

作者信息

Danilchenko Sergei, Kalinkevich Aleksei, Zhovner Mykhailo, Li He, Kochenko Aleksandr, Danylchenko Petro, Wang Jufang

机构信息

Institute of Applied Physics, NASU, 58 Petropavlivska St., 40000, Sumy, Ukraine.

Institute of Modern Physics, Chinese Academy of Sciences, 509 Nanchang Rd., Lanzhou, 730000, China.

出版信息

Heliyon. 2023 Jun 29;9(7):e17809. doi: 10.1016/j.heliyon.2023.e17809. eCollection 2023 Jul.

Abstract

The demineralization of bone tissue is used for simulating the osteoporosis related bone loss. This way would be helpful in observations of bone apatite dissolution in microstructural level and may give significant input for understanding crystal-chemistry of bone resorption. In the case of cortical bone, demineralization occurs inhomogeneously, with the formation of a superficial demineralized layer and a transition zone with a gradient of concentration and structural characteristics perpendicular to the reaction advance front. Changes in the microstructural parameters of the bone mineral in this interface zone are of great interest for understanding the resorptive processes in the bone associated with osteoporosis. In this work, the SEM-EDX method was used to estimate the sizes of the demineralized and interface layers in the cortical bone during stepwise demineralization in HCl water solution; the general patterns of changes in the concentrations of Ca, P, and Cl in these layers were established. The calculations of the effective penetration depth of X-rays in diffraction mode for the intact and partially demineralized cortical bone were performed. It is shown that the use of CoKα radiation (instead of the usual CuKα) ensures the depth of probing within the interface zone, which allows to adequately assess the microstructural parameters (crystallite sizes and lattice microdeformations) of altered bioapatite in the zone of its interaction with an acid agent. A nonmonotonic change in the average size of crystallites and microdeformations of the apatite lattice was revealed during acid demineralization of the bone. Using asymmetric XRD geometry, the evidence was obtained that the affected mineral of the transition zone does not contain other crystalline phases except for weakly crystallized apatite. For the first time, the depth-controlled XRD analysis was applied to such a complex (surface-gradient) object as partially demineralized cortical bone. Additionally, we propose a rapid, averaging, and non-destructive method for estimating the depth of the reaction front dividing the demineralized and non-demineralized portions of the bone by XRD. The consistency of XRD and SEM-EDX data on the thickness values of the demineralized layer is shown.

摘要

骨组织脱矿用于模拟与骨质疏松症相关的骨质流失。这种方法有助于在微观结构层面观察骨磷灰石的溶解,并可能为理解骨吸收的晶体化学提供重要依据。对于皮质骨而言,脱矿是不均匀发生的,会形成一个表面脱矿层以及一个过渡区,该过渡区具有垂直于反应前沿的浓度梯度和结构特征梯度。这个界面区域中骨矿物质微观结构参数的变化对于理解与骨质疏松症相关的骨吸收过程非常重要。在这项工作中,采用扫描电子显微镜 - 能谱仪(SEM - EDX)方法来估计在盐酸水溶液中逐步脱矿过程中皮质骨脱矿层和界面层的尺寸;确定了这些层中钙、磷和氯浓度变化的一般模式。对完整和部分脱矿的皮质骨在衍射模式下X射线的有效穿透深度进行了计算。结果表明,使用钴Kα辐射(而不是通常的铜Kα辐射)可确保在界面区域内的探测深度,这使得能够充分评估改变后的生物磷灰石在其与酸剂相互作用区域的微观结构参数(微晶尺寸和晶格微变形)。在骨的酸脱矿过程中,发现磷灰石晶格的微晶平均尺寸和微变形存在非单调变化。使用不对称X射线衍射几何结构,获得的证据表明,过渡区受影响的矿物质除了弱结晶的磷灰石外不包含其他晶相。首次将深度控制的X射线衍射分析应用于像部分脱矿的皮质骨这样复杂的(表面梯度)物体。此外,我们提出了一种快速、平均且无损的方法,通过X射线衍射估计划分骨脱矿和未脱矿部分的反应前沿深度。展示了X射线衍射和扫描电子显微镜 - 能谱仪关于脱矿层厚度值数据的一致性。

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