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成骨细胞中 Lrp5 的失活降低了杨氏模量和对机械加载的响应。

Inactivation of Lrp5 in osteocytes reduces young's modulus and responsiveness to the mechanical loading.

机构信息

Department of Biomedical Engineering, Indiana University Purdue University Indianapolis, IN 46202, USA.

出版信息

Bone. 2013 May;54(1):35-43. doi: 10.1016/j.bone.2013.01.033. Epub 2013 Jan 26.

Abstract

Low-density-lipoprotein receptor-related protein 5 (Lrp5) is a co-receptor in Wnt signaling, which plays a critical role in development and maintenance of bone. Osteoporosis-pseudoglioma syndrome, for instance, arises from loss-of-function mutations in Lrp5, and global deletion of Lrp5 in mice results in significantly lower bone mineral density. Since osteocytes are proposed to act as a mechanosensor in the bone, we addressed a question whether a conditional loss-of-function mutation of Lrp5 selective to osteocytes (Dmp1-Cre;Lrp5(f/f)) would alter responses to ulna loading. Loading was applied to the right ulna for 3 min (360 cycles at 2Hz) at a peak force of 2.65 N for 3 consecutive days, and the contralateral ulna was used as a non-loaded control. Young's modulus was determined using a midshaft section of the femur. The results showed that compared to age-matched littermate controls, mice lacking Lrp5 in osteocytes exhibited smaller skeletal size with reduced bone mineral density and content. Compared to controls, Lrp5 deletion in osteocytes also led to a 4.6-fold reduction in Young's modulus. In response to ulna loading, mineralizing surface, mineral apposition rate, and bone formation rate were diminished in mice lacking Lrp5 in osteocytes by 52%, 85%, and 69%, respectively. Collectively, the results support the notion that the loss-of-function mutation of Lrp5 in osteocytes causes suppression of mechanoresponsiveness and reduces bone mass and Young's modulus. In summary, Lrp5-mediated Wnt signaling significantly contributes to maintenance of mechanical properties and bone mass.

摘要

低密度脂蛋白受体相关蛋白 5(Lrp5)是 Wnt 信号转导的辅助受体,在骨骼的发育和维持中起着关键作用。例如,骨质疏松性假瘤综合征是由于 Lrp5 的功能丧失性突变引起的,而 Lrp5 在小鼠中的全局缺失导致骨矿物质密度显著降低。由于骨细胞被认为是骨骼中的机械感受器,我们提出了一个问题,即选择性针对骨细胞的 Lrp5 条件性功能丧失突变(Dmp1-Cre;Lrp5(f/f))是否会改变对尺骨加载的反应。将力施加到右侧尺骨 3 分钟(2Hz 时 360 个循环),峰值力为 2.65N,连续 3 天,将对侧尺骨用作未加载对照。使用股骨中段确定杨氏模量。结果表明,与同龄同窝对照相比,骨细胞中缺乏 Lrp5 的小鼠骨骼较小,骨矿物质密度和含量降低。与对照组相比,骨细胞中 Lrp5 的缺失也导致杨氏模量降低了 4.6 倍。与对照组相比,骨细胞中 Lrp5 的缺失还导致矿化表面、矿化速率和骨形成率分别降低了 52%、85%和 69%。总之,这些结果支持了这样一种观点,即骨细胞中 Lrp5 的功能丧失性突变导致对机械反应的抑制,并降低了骨量和杨氏模量。总之,Lrp5 介导的 Wnt 信号显著有助于维持机械性能和骨量。

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本文引用的文献

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