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成熟大鼠的骨皮质中,骨矿物质晶体的大小和组织结构各不相同。

Bone mineral crystal size and organization vary across mature rat bone cortex.

作者信息

Turunen Mikael J, Kaspersen Jørn D, Olsson Ulf, Guizar-Sicairos Manuel, Bech Martin, Schaff Florian, Tägil Magnus, Jurvelin Jukka S, Isaksson Hanna

机构信息

Department of Biomedical Engineering, Lund University, Lund, Sweden; Department of Applied Physics, University of Eastern Finland, Kuopio, Finland.

Department of Biomedical Engineering, Lund University, Lund, Sweden.

出版信息

J Struct Biol. 2016 Sep;195(3):337-344. doi: 10.1016/j.jsb.2016.07.005. Epub 2016 Jul 11.

Abstract

The macro- and micro-features of bone can be assessed by using imaging methods. However, nano- and molecular features require more detailed characterization, such as use of e.g., vibrational spectroscopy and X-ray scattering. Nano- and molecular features also affect the mechanical competence of bone tissue. The aim of the present study was to reveal the effects of mineralization and its alterations on the mineral crystal scale, by investigating the spatial variation of molecular composition and mineral crystal structure across the cross-section of femur diaphyses in young rats, and healthy and osteoporotic mature rats (N=5). Fourier transform infrared spectroscopy and scanning small- and wide-angle X-ray scattering (SAXS/WAXS) techniques with high spatial resolution were used at identical locations over the whole cross-section. This allowed quantification of point-by-point information about the spatial distribution of mineral crystal volume. All measured parameters (crystal dimensions, degree of orientation and predominant orientation) varied across the cortex. Specifically, the crystal dimensions were lower in the central cortex than in the endosteal and periosteal regions. Mineral crystal orientation followed the cortical circumference in the periosteal and endosteal regions, but was less well-oriented in the central regions. Central cortex is formed rapidly during development through endochondral ossification. Since rats possess no osteonal remodeling, this bone remains (until old age). Significant linear correlations were observed between the dimensional and organizational parameters, e.g., between crystal length and degree of orientation (R(2)=0.83, p<0.001). Application of SAXS/WAXS provides valuable information on bone nanostructure and its constituents, effects of diseases and, prospectively, mechanical competence.

摘要

骨骼的宏观和微观特征可通过成像方法进行评估。然而,纳米和分子特征需要更详细的表征,例如使用振动光谱和X射线散射等方法。纳米和分子特征也会影响骨组织的力学性能。本研究的目的是通过研究幼年大鼠、健康成年大鼠和骨质疏松成年大鼠(N = 5)股骨骨干横截面分子组成和矿物晶体结构的空间变化,揭示矿化及其改变对矿物晶体尺度的影响。在整个横截面上的相同位置使用具有高空间分辨率的傅里叶变换红外光谱和扫描小角和广角X射线散射(SAXS/WAXS)技术。这使得能够对矿物晶体体积的空间分布进行逐点信息量化。所有测量参数(晶体尺寸、取向度和主要取向)在皮质中均有变化。具体而言,中央皮质中的晶体尺寸低于骨内膜和骨膜区域。在骨膜和骨内膜区域,矿物晶体取向沿皮质圆周分布,但在中央区域取向较差。中央皮质在发育过程中通过软骨内成骨迅速形成。由于大鼠没有骨单位重塑,这块骨头会一直保留(直到老年)。在尺寸和组织参数之间观察到显著的线性相关性,例如晶体长度和取向度之间(R(2)=0.83,p<0.001)。SAXS/WAXS的应用为骨纳米结构及其成分、疾病影响以及前瞻性的力学性能提供了有价值的信息。

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