首页> 美国卫生研究院文献>International Journal of Endocrinology >Microarchitecture but Not Bone Mechanical Properties Is Rescued with Growth Hormone Treatment in a Mouse Model of Growth Hormone Deficiency
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Microarchitecture but Not Bone Mechanical Properties Is Rescued with Growth Hormone Treatment in a Mouse Model of Growth Hormone Deficiency

机译:在生长激素缺乏症的小鼠模型中用生长激素治疗可以挽救微结构而非骨骼的机械性能

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摘要

Growth hormone (GH) deficiency is related to an increased fracture risk although it is not clear if this is due to compromised bone quality or a small bone size. We investigated the relationship between bone macrostructure, microarchitecture and mechanical properties in a GH-deficient (GHD) mouse model undergoing GH treatment commencing at an early (prepubertal) or late (postpubertal) time point. Microcomputed tomography images of the femur and L4 vertebra were obtained to quantify macrostructure and vertebral trabecular microarchitecture, and mechanical properties were determined using finite element analyses. In the GHD animals, bone macrostructure was 25 to 43% smaller as compared to the GH-sufficient (GHS) controls (P < 0.001). GHD animals had 20% and 19% reductions in bone volume ratio (BV/TV) and trabecular thickness (Tb.Th), respectively. Whole bone mechanical properties of the GHD mice were lower at the femur and vertebra (67% and 45% resp.) than the GHS controls (P < 0.001). Both early and late GH treatment partially recovered the bone macrostructure (15 to 32 % smaller than GHS controls) and the whole bone mechanical properties (24 to 43% larger than GHD animals) although there remained a sustained 27–52% net deficit compared to normal mice (P < 0.05). Importantly, early treatment with GH led to a recovery of BV/TV and Tb.Th with a concomitant improvement of trabecular mechanical properties. Therefore, the results suggest that GH treatment should start early, and that measurements of microarchitecture should be considered in the management of GHD.
机译:生长激素(GH)缺乏症与骨折风险增加有关,尽管尚不清楚这是否是由于骨质受损或骨小。我们研究了在早期(青春期前)或青春期(青春期后)开始进行GH治疗的GH缺陷(GHD)小鼠模型中骨骼宏观结构,微结构与力学性能之间的关系。获得股骨和L4椎骨的显微计算机断层扫描图像以量化宏观结构和椎骨小梁微结构,并使用有限元分析确定力学性能。在GHD动物中,与GH足量(GHS)对照相比,骨宏观结构小25%至43%(P <0.001)。 GHD动物的骨体积比(BV / TV)和小梁厚度(Tb.Th)分别降低了20%和19%。 GHD小鼠的股骨和椎骨的全骨力学性能低于GHS对照(分别为67%和45%)(P <0.001)。早期和晚期GH治疗均能部分恢复骨骼的宏观结构(比GHS对照小15%至32%)和整个骨骼的机械性能(比GHD动物大24%至43%),尽管与之相比仍存在持续的27%至52%的净亏损。正常小鼠(P <0.05)。重要的是,GH的早期治疗可导致BV / TV和Tb.Th的恢复,同时改善小梁的机械性能。因此,结果提示GH治疗应尽早开始,在GHD的管理中应考虑对微结构的测量。

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