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成骨不全症 Brtl/+ 小鼠模型的皮质骨特性的声传输显微镜证据。

Cortical bone properties in the Brtl/+ mouse model of Osteogenesis imperfecta as evidenced by acoustic transmission microscopy.

机构信息

Ludwig Boltzmann Institute of Osteology at the Hanusch Hospital of WGKK and AUVA Trauma Centre Meidling, 1st Medical Department Hanusch Hospital, Vienna, Austria.

Ludwig Boltzmann Institute of Osteology at the Hanusch Hospital of WGKK and AUVA Trauma Centre Meidling, 1st Medical Department Hanusch Hospital, Vienna, Austria.

出版信息

J Mech Behav Biomed Mater. 2019 Feb;90:125-132. doi: 10.1016/j.jmbbm.2018.10.010. Epub 2018 Oct 11.

Abstract

Higher skeletal fragility has been established for the Brtl/+ mouse model of osteogenesis imperfecta at the whole bone level, but previous investigations of mechanical properties at the bone material level were inconclusive. Bone material was analyzed separately at endosteal (ER) and periosteal regions (PR) on transverse femoral midshaft sections for 2-month old mice (wild-type n = 6; Brtl/+ n = 6). Quantitative backscattered electron imaging revealed that the mass density computed from mineral density maps was higher in PR than in ER for both wild-type (+2.1%, p < 0.05) and Brtl/+ mice (+1.8%, p < 0.05). Electron induced X-ray fluorescence analysis indicated significantly lower atomic Ca/P ratios and higher Na/Ca, Mg/Ca and K/Ca ratios in PR bone compared to ER independently of genotype. Second harmonic generation microscopy indicated that the occurrence of periodically alternating collagen orientation in ER of Brtl/+ mice was strongly reduced compared to wild-type mice. Scanning acoustic microscopy in time of flight mode revealed that the sound velocity and Young's modulus (estimated based on sound velocity and mass density maps) were significantly greater in PR (respectively +6% and +15%) compared to ER in wild-type mice but not in Brtl/+ mice. ER sound velocity and Young's modulus were significantly increased in Brtl/+ mice (+9.4% and +22%, respectively) compared to wild-type mice. These data demonstrate that the Col1a1 G349C mutation in Brtl/+ mice affects the mechanical behavior of bone material predominantly in the endosteal region by altering the collagen orientation.

摘要

在整体骨骼水平上,已经证实 Brtl/+ 型成骨不全症小鼠模型的骨骼脆性更高,但之前对骨材料水平机械性能的研究结果并不一致。对 2 月龄小鼠(野生型 n=6;Brtl/+ n=6)的股骨中段横切面的骨内膜(ER)和骨外膜(PR)区域分别进行了骨材料分析。定量背散射电子成像显示,从矿物密度图计算得出的质量密度在 PR 高于 ER,在野生型(+2.1%,p<0.05)和 Brtl/+ 小鼠中(+1.8%,p<0.05)均如此。电子诱导 X 射线荧光分析表明,无论基因型如何,PR 骨中的原子 Ca/P 比值均显著较低,而 Na/Ca、Mg/Ca 和 K/Ca 比值均较高。二次谐波产生显微镜表明,与野生型小鼠相比,Brtl/+ 小鼠 ER 中周期性交替胶原取向的发生明显减少。基于声速和质量密度图的声速和杨氏模量(基于声速和质量密度图估计)在野生型小鼠的 PR 中显著大于 ER(分别为+6%和+15%),但在 Brtl/+ 小鼠中则不然。与野生型小鼠相比,Brtl/+ 小鼠的 ER 声速和杨氏模量分别显著增加(分别为+9.4%和+22%)。这些数据表明,Brtl/+ 小鼠的 Col1a1 G349C 突变主要通过改变胶原取向来影响骨材料的力学行为,主要影响骨内膜区域。

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本文引用的文献

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Osteogenesis imperfecta.成骨不全症。
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