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Anisotropic properties of human cortical bone with osteogenesis imperfecta

机译:具有成骨不全的人皮质骨的各向异性

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摘要

The heterogeneity of bone shape and size variation is modulated by genetic, mechanical, nutritional, and hormonal patterning throughout its lifetime. Microstructural changes across cross sections are a result of mechanistic optimization that results over the years of evolution while being based on universal, time-invariant ingredients and patterns. Here we report changes across anatomical sections of bone with osteogenesis imperfecta (OI) that undermines the work of evolution through genetic mutation. This work examines the microstructure and molecular composition of different anatomical positions (anterior, medial, posterior, and lateral regions) in the diaphysis of an OI human tibia. The study shows that although there is no significant microstructural difference, molecular changes are observed using FTIR revealing differences in molecular composition of the four anatomical positions. In addition, the nanomechanical properties of anterior section of OI bone seem more heterogeneous. The nanomechanical properties of interstitial lamellae in all these bone samples are consistently greater than those of osteonal lamellae. The nanomechanical properties of bone depend on its anatomical section and on the measurement direction as well. Variations in molecular structure with anatomical positions and also corresponding differences in nanomechanical properties are reported. These are compared to those observed typically in healthy bone illustrating the unique influence of OI on bone multiscale behavior which results from an evolutionary process lasting for many years.
机译:骨骼形状和大小变化的异质性在其一生中都受到遗传,机械,营养和激素模式的调节。横断面的微观结构变化是机械优化的结果,这种优化是经过多年的发展而形成的,同时基于通用的时不变成分和模式。在这里,我们报告了成骨不全症(OI)在骨骼解剖区域的变化,这些变化破坏了通过基因突变进行进化的工作。这项工作检查了OI人胫骨的骨干中不同解剖位置(前,内侧,后和外侧区域)的微观结构和分子组成。研究表明,尽管没有明显的微观结构差异,但使用FTIR观察到的分子变化揭示了四个解剖位置的分子组成差异。此外,OI骨前节的纳米力学性能似乎更加异质。在所有这些骨样品中,间质薄片的纳米力学性能始终比骨质薄片更好。骨骼的纳米力学特性取决于其解剖部分以及测量方向。报告了具有解剖位置的分子结构变化以及纳米力学性质的相应差异。将这些结果与在健康骨骼中通常观察到的结果进行比较,说明OI对骨骼多尺度行为的独特影响,这是持续多年的进化过程所致。

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