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Effect of in vivo loading on bone composition varieswith animal age

机译:体内负荷对骨组成的影响各不相同与动物年龄有关

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摘要

Loading can increase bone mass and size and this response is reduced with aging. It is unclear, however how loading affects bone mineral and matrix properties. Fourier Transform Infrared Imaging and high resolution synchrotron scanning small angle X-ray scattering were used to study how bone’s microscale and nanoscale compositional properties were altered in the tibial midshaft of young, adult, and elderly female C57Bl/6J mice after two weeks of controlled in vivo compressive loading in comparison to physiological loading. The effect of controlled loading on bone composition varied with animal age, since it predominantly influenced the bone composition of elderly mice. Interestingly, controlled loading led to enhanced collagen maturity in elderly mice. In addition, although the rate of bone formation was increased by controlled loading based on histomorphometry, the newly formed tissue had similar material quality to new bone tissue formed during physiological loading. Similar to previous studies, our data showed that bone composition was animal and tissue age dependent during physiological loading. The findings that the new tissue formed in response to controlled loading and physiological loading had similar bone composition and that controlled loadingenhanced bone composition in elderly mice further supports the use of physicalactivity as a noninvasive treatment to enhance bone quality as well as maintainbone mass in individuals suffering from age-related bone loss.
机译:负荷会增加骨骼质量和大小,并且随着年龄的增长,这种反应会减弱。目前尚不清楚,但是负载如何影响骨矿物质和基质特性。傅立叶变换红外成像和高分辨率同步加速器扫描小角度X射线散射被用来研究在C57Bl / 6J雌性小鼠中控制两个星期后,它们在青年,成年和老年雌性C57Bl / 6J胫骨中轴中如何改变骨骼的微米级和纳米级组成特性。与生理负荷相比,体内压缩负荷。受控负荷对骨骼组成的影响随动物年龄而变化,因为它主要影响老年小鼠的骨骼组成。有趣的是,控制负荷可提高老年小鼠的胶原蛋白成熟度。另外,尽管通过基于组织形态计量学的受控加载增加了骨形成的速率,但是新形成的组织具有与生理加载期间形成的新的骨组织相似的材料质量。与以前的研究相似,我们的数据表明,在生理负荷过程中,骨骼组成与动物和组织的年龄有关。响应于受控负荷和生理负荷而形成的新组织具有相似的骨组成和受控负荷的发现老年小鼠骨骼组成的增强进一步支持物理方法的使用作为无创治疗的活动,可增强骨骼质量并保持患有与年龄有关的骨质流失的个体的骨量。

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