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Cortical and trabecular morphology is altered in the limb bones of mice artificially selected for faster skeletal growth

机译:人工选择的小鼠的四肢骨骼中的皮质和小梁形态发生了变化以加快骨骼生长

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摘要

Bone strength is influenced by mineral density and macro- and microstructure. Research into factors that contribute to bone morphology and strength has focused on genetic, environmental and morphological factors (e.g., body mass index), but little is known regarding the impact of rates of skeletal elongation on adult skeletal morphology and strength. Using micro-CT, we examined the impact of rates of skeletal elongation on bone cortical and trabecular morphology, and on rates of estrogen-dependent bone loss in the tibia in CD-1 mice, and in mice with accelerated skeletal growth (Longshanks). Groups of adult mice (n = 7/group) were subjected to ovariectomy or sham surgeries, scanned for 6 weeks, and indices of bone morphology were collected. Results show that Longshanks mice had significantly less trabecular bone at skeletal maturity, characterized by fewer, thinner trabeculae, and furthermore lost trabecular bone more slowly in response to ovariectomy. Artificial selection for rapid skeletal growth relative to somatic growth thus had a significant impact on trabecular bone morphology in Longshanks. Our data do not unequivocally demonstrate a causal relationship between rapid bone growth and reduced trabecular bone quality, but suggest that rapid linear bone growth may influence the risk of cancellous bone fragility.
机译:骨强度受矿物质密度以及宏观和微观结构的影响。对有助于骨骼形态和强度的因素的研究集中在遗传,环境和形态因素(例如体重指数)上,但关于骨骼伸长率对成年骨骼形态和强度的影响知之甚少。使用micro-CT,我们检查了CD-1小鼠和加速骨骼生长的小鼠(Longshanks)中骨骼伸长率对骨皮质和小梁形态的影响,以及胫骨中雌激素依赖性骨质流失率的影响。成年小鼠组(n == 7 /组)进行卵巢切除或假手术,扫描6周,并收集骨形态指标。结果显示,Longshanks小鼠骨骼成熟时的小梁骨明显减少,其特征是小梁变少,变细,并且对卵巢切除术的反应失去小梁的速度更慢。因此,人工选择相对于体细胞生长的快速骨骼生长对龙胫骨的小梁骨形态具有重大影响。我们的数据并未明确表明快速骨生长与骨小梁质量降低之间存在因果关系,但表明线性骨的快速生长可能会影响松质骨脆性的风险。

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