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不同尺度长度下人肱骨近端与骨质疏松相关的骨小梁特性变化。

Osteoporosis-related variations of trabecular bone properties of proximal human humeral heads at different scale lengths.

机构信息

Politecnico di Torino, Department of Applied Science and Technology, Corso Duca degli Abruzzi 24, 10129, Torino, Italy.

Laboratory for Orthopaedic Pathophysiology and Regenerative Medicine, IRCCS Istituto Ortopedico Rizzoli, Bologna, Italy.

出版信息

J Mech Behav Biomed Mater. 2019 Dec;100:103373. doi: 10.1016/j.jmbbm.2019.103373. Epub 2019 Jul 26.

Abstract

Osteoporosis (OP) is a skeletal disorder responsible for the weakening of the bone structure and, consequently, for an increased fracture risk in the elderly population. In the past, bone mineral density (BMD) variation was considered the best OP indicator, but recently the focus has shifted toward the variation of microstructural bone parameters. This work is based on the characterisation of 8-mm cylindrical biopsies harvested from proximal humeral heads belonging to healthy and osteoporotic patients, in order to assess the OP-related variations of bone properties at different scale lengths. In particular, bone biopsies underwent micro-computed tomography analysis to study the most relevant features of bone architecture and extrapolate the tissue mineral density (TMD) value of bone trabeculae. Compression tests and nanoindentations were performed to investigate the macro- and micromechanical properties of bone biopsies, respectively. In addition, XRD analyses were performed to obtain the mean hydroxyapatite (HA) crystallite size, while Raman spectroscopy investigated the collagen secondary structure. Thermogravimetric analysis was performed to evaluate the ratio between organic and inorganic phases. From the obtained results, OP samples showed a more anisotropic and less interconnected structure responsible for reduced compression strength. From this, it can be supposed that OP caused an alteration of bone structure that led to inferior macroscopic mechanical properties. Furthermore, OP samples possessed higher TMD and bigger HA crystals that are correlated to an increase of the hardness value obtained by means of nanoindentation. This less controlled HA crystal growth is probably due to an alteration of the organic matrix structure, as revealed by the increase of the random coil contribution in the Raman spectra of the OP bone. This higher crystal content led to an increase in trabecular density and hardness. In conclusion, the obtained data showed that OP affects bone properties at different scale lengths causing an alteration of its morphological, structural and mechanical features.

摘要

骨质疏松症(OP)是一种骨骼疾病,会导致骨骼结构变弱,从而使老年人群的骨折风险增加。过去,骨密度(BMD)变化被认为是 OP 的最佳指标,但最近人们的注意力已转向微观结构骨参数的变化。这项工作基于对取自健康和骨质疏松症患者的近侧肱骨头部的 8 毫米圆柱形活检的特征化,以评估不同尺度长度下与 OP 相关的骨特性变化。特别是,对骨活检进行了微计算机断层扫描分析,以研究骨结构的最相关特征,并推断骨小梁的组织矿物质密度(TMD)值。分别进行了压缩测试和纳米压痕测试,以研究骨活检的宏观和微观力学性能。此外,还进行了 XRD 分析以获得平均羟基磷灰石(HA)微晶尺寸,而拉曼光谱则研究了胶原二级结构。热重分析用于评估有机相与无机相的比例。从获得的结果来看,OP 样本显示出更各向异性和更少相互连接的结构,这导致压缩强度降低。由此可以推测,OP 导致了骨骼结构的改变,从而导致宏观力学性能下降。此外,OP 样本具有更高的 TMD 和更大的 HA 晶体,这与通过纳米压痕获得的硬度值增加有关。这种 HA 晶体生长的控制程度较低可能是由于有机基质结构的改变,这在 OP 骨的拉曼光谱中随机卷曲贡献的增加中得到了揭示。这种更高的晶体含量导致了小梁密度和硬度的增加。总之,所获得的数据表明,OP 会在不同尺度长度上影响骨骼特性,导致其形态、结构和力学特性发生改变。

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