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IGF-I improved bone mineral density and body composition of weaver mutant mice.

机译:IGF-1改善了织布突变小鼠的骨矿物质密度和身体组成。

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Our recent report on a parallel decrease in the body weights and serum IGF-I levels of weaver mice suggests that IGF-I's endocrine function may be impaired in neurodegenerative diseases. To further understand the overall effects of IGF-I deficiency on the postnatal growth, we measured bone mineral density (BMD), bone mineral content (BMC), lean body mass (LBM) and fat mass in male and female weaver mice and wild-type littermates on D21 (prepuberty), D45 (puberty), and D60 (postpuberty) using dual-energy X-ray absorptiometry (DEXA). In both male and female weaver mice, we found that the levels of circulating IGF-I paralleled those of BMD, BMC, and LBM, but not the fat mass. Male weaver mice have normal fat mass at all three ages studied, whereas female weaver mice showed a trend to increase their fat mass as they mature. To determine whether circulating IGF-I is a determinant of body composition, we crossbred IGF-I transgenic mice with homozygous weaver mice, which resulted in a significant increase in circulating IGF-I levels in both male and female weaver mice and normalization of their BMD, BMC and body weights. In summary, our results demonstrated that normal circulating IGF-I levels are important in maintaining BMD, BMC, and body composition in neurodegenerative diseases, such as hereditary cerebellar ataxia.
机译:我们最近关于织布鼠的体重和血清IGF-I水平平行下降的报告表明,IGF-I的内分泌功能在神经退行性疾病中可能受到损害。为了进一步了解IGF-I缺乏症对产后生长的总体影响,我们测量了雄性和雌性韦弗小鼠和野生动物的骨矿物质密度(BMD),骨矿物质含量(BMC),瘦体重(LBM)和脂肪质量使用双能X射线吸收法(DEXA)在D21(青春期前),D45(青春期)和D60(青春期后)上键入同窝幼仔。在雄性和雌性韦弗小鼠中,我们发现循环中的IGF-I水平与BMD,BMC和LBM相似,但与脂肪量不相近。在所有研究的三个年龄段中,雄性韦弗小鼠的脂肪量均正常,而雌性韦弗小鼠在成熟时呈增加脂肪量的趋势。为了确定循环中的IGF-I是否是机体组成的决定因素,我们将IGF-I转基因小鼠与纯合的Weaver小鼠杂交,这导致雄性和雌性Weaver小鼠中循环IGF-I水平显着增加,并且其BMD正常化,BMC和体重。总而言之,我们的结果表明,正常的循环IGF-I水平对于维持神经退行性疾病(如遗传性小脑共济失调)中的BMD,BMC和身体成分很重要。

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