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首页> 外文期刊>Bone >Selective osteoblast overexpression of IGF-I in mice prevents low protein-induced deterioration of bone strength and material level properties.
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Selective osteoblast overexpression of IGF-I in mice prevents low protein-induced deterioration of bone strength and material level properties.

机译:小鼠中IGF-I的选择性成骨细胞过度表达可防止蛋白质诱导的骨强度和物质水平特性下降。

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摘要

Protein deficiency is frequently observed in elderly osteoporotic patients. Undernutrition leads to decreased levels of IGF-I, an important factor in regulating bone homeostasis throughout life. IGF-I is produced in the liver and locally in the skeleton. We hypothesized that increasing IGF-I expression in the osteoblasts, the bone forming cells, would protect the skeleton from the negative effects of a low-protein diet. To test our hypothesis, we employed a mouse model in which IGF-I was overexpressed exclusively in osteoblasts and fed either a 15% (normal) or a 2.5% (low) protein isocaloric diet to the transgenic (TG) mice and their wild-type (WT) littermates for 8 weeks. Blood was collected for biochemical determinations and weight was monitored weekly. Bones were excised for microstructural analysis (muCT), as well as biomechanical and material level properties. Histomorphometric analysis was performed for bone formation parameters. A low protein diet decreased body weight, circulating IGF-I and osteocalcin levels regardless of genotype. Overexpression of IGF-I in the osteoblasts was, however, able to protect the negative effects of low protein diet on microstructure including tibia cortical thickness and volumetric density, and on bone strength. Overexpression of IGF-I in osteoblasts in these mice protected the vertebrae from the substantial negative effects of low protein on the material level properties as measured my nanoindentation. TG mice also had larger overall geometric properties than WT mice regardless of diet. This study provides evidence that while a low protein diet leads to decreased circulating IGF-I, altered microstructure and decreased bone strength, these negative effects can be prevented with IGF-I overexpression exclusively in bone cells.
机译:在老年骨质疏松症患者中经常观察到蛋白质缺乏症。营养不良导致IGF-I水平降低,这是一生中调节骨稳态的重要因素。 IGF-1在肝脏和骨骼的局部产生。我们假设成骨细胞(即成骨细胞)中IGF-1的表达增加会保护骨骼免受低蛋白饮食的负面影响。为了检验我们的假设,我们采用了一种小鼠模型,其中IGF-I仅在成骨细胞中过表达,并向转基因(TG)小鼠及其野生动物喂了15%(正常)或2.5%(低)蛋白质等热量饮食。型(WT)同窝仔8周。收集血液用于生化测定,每周监测体重。切除骨头以进行微结构分析(muCT)以及生物力学和材料水平特性。对骨形成参数进行组织形态分析。低蛋白饮食可降低体重,循环IGF-I和骨钙素水平,而与基因型无关。但是,成骨细胞中IGF-I的过度表达能够保护低蛋白饮食对包括胫骨皮质厚度和体积密度在内的微观结构以及对骨骼强度的负面影响。在这些小鼠中,成骨细胞中IGF-I的过表达可以保护椎骨免受低蛋白对材料水平特性的实质性负面影响,这是通过纳米压痕测得的。无论饮食如何,TG小鼠的整体几何特性都比WT小鼠大。这项研究提供了证据,尽管低蛋白饮食会导致循环中的IGF-I减少,微观结构改变和骨骼强度降低,但仅在骨细胞中过表达IGF-I可以预防这些负面影响。

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