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Cortical Bone Mechanical Properties Are Altered in an Animal Model of Progressive Chronic Kidney Disease

机译:进行性慢性肾脏疾病的动物模型中皮质骨力学性质发生改变。

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摘要

Chronic kidney disease (CKD), which leads tocortical bone loss and increasedporosity,increases therisk of fracture. Animal models have confirmed that these changes compromise whole bone mechanical properties. Estimates from whole bone testing suggest that material properties are negatively affected, though tissue-level assessmentshavenot been conducted. Therefore, the goal of the present study was to examine changes in cortical bone at different length scales using a rat model with theprogressive development of CKD. At 30 weeks of age (∼75% reduction in kidney function), skeletally mature male Cy/+ rats were compared to their normal littermates. Cortical bone material propertieswere assessed with reference point indentation (RPI), atomic force microscopy (AFM), Raman spectroscopy,and high performance liquid chromatography (HPLC). Bones from animals with CKD had higher (+18%) indentation distance increase and first cycle energy dissipation (+8%) as measured by RPI.AFM indentation revealed a broader distribution of elastic modulus values in CKD animals witha greater proportion of both higher and lower modulus values compared to normal controls. Yet, tissue composition, collagen morphology, and collagen cross-linking fail to account for these differences. Though the specific skeletal tissue alterations responsible for these mechanical differences remain unclear, these results indicate that cortical bone material properties are altered in these animals and may contribute to the increased fracture risk associated with CKD.
机译:慢性肾病(CKD)导致皮质骨丢失和疏松性增加,增加了骨折的风险。动物模型已经证实,这些变化会损害整个骨骼的机械性能。尽管尚未进行组织水平的评估,但从全骨测试得出的估计值表明材料性能受到负面影响。因此,本研究的目的是使用具有CKD进行性发展的大鼠模型检查不同长度尺度的皮质骨的变化。在30周龄时(肾功能下降约75%),将骨骼成熟的雄性Cy / +大鼠与正常同窝仔进行比较。使用参考点压痕(RPI),原子力显微镜(AFM),拉曼光谱和高效液相色谱(HPLC)评估皮质骨材料的性能。用RPI测得,患有CKD的动物的骨骼的压痕距离增加较高(+ 18%),且第一周期能量耗散(+8%)。AFM压痕显示CKD动物的弹性模量值分布较广,较高和较高的比例与正常对照组相比,模量值更低。然而,组织组成,胶原蛋白形态和胶原蛋白交联不能解释这些差异。尽管尚不清楚引起这些机械差异的具体骨骼组织改变,但这些结果表明这些动物的皮质骨材料性质发生了改变,并可能导致与CKD相关的骨折风险增加。

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