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Sostdc1 Deficiency Accelerates Fracture Healing by Promoting the Expansion of Periosteal Mesenchymal Stem Cells

机译:Sostdc1缺乏症通过促进骨膜间充质干细胞的扩增来加速骨折愈合

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摘要

Loss of Sostdc1, a growth factor paralogous to Sost, causes the formation of ectopic incisors, fused molars, abnormal hair follicles, and resistance to kidney disease. Sostdc1 is expressed in the periosteum, a source of osteoblasts, fibroblasts and mesenchymal progenitor cells, which are critically important for fracture repair. Here, we investigated the role of Sostdc1 in bone metabolism and fracture repair. Mice lacking Sostdc1 (Sostdc1−/−) had a low bone mass phenotype associated with loss of trabecular bone in both lumbar vertebrae and in the appendicular skeleton. In contrast, Sostdc1−/− cortical bone measurements revealed larger bones with higher BMD, suggesting that Sostdc1 exerts differential effects on cortical and trabecular bone. Mid-diaphyseal femoral fractures induced in Sostdc1−/− mice showed that the periosteal population normally positive for Sostdc1 rapidly expands during periosteal thickening and these cells migrate into the fracture callus at 3 days post fracture. Quantitative analysis of mesenchymal stem cell (MSC) and osteoblast populations determined that MSCs express Sostdc1, and that Sostdc1−/− 5 day calluses harbor >2-fold more MSCs than fractured wildtype controls. Histologically a fraction of Sostdc1-positive cells also expressed nestin and α-smooth muscle actin, suggesting that Sostdc1 marks a population of osteochondral progenitor cells that actively participate in callus formation and bone repair. Elevated numbers of MSCs in D5 calluses resulted in a larger, more vascularized cartilage callus at day 7, and a more rapid turnover of cartilage with significantly more remodeled bone and a thicker cortical shell at 21 days post fracture. These data support accelerated or enhanced bone formation/remodeling of the callus in Sostdc1−/− mice, suggesting that Sostdc1 may promote and maintain mesenchymal stem cell quiescence in the periosteum.
机译:Sostdc1(一种与Sost同源的生长因子)的丢失会导致异位切牙,磨牙融合,毛囊异常和对肾脏疾病的抵抗力的形成。 Sostdc1在骨膜中表达,骨膜是成骨细胞,成纤维细胞和间充质祖细胞的来源,这对骨折修复至关重要。在这里,我们调查了Sostdc1在骨骼代谢和骨折修复中的作用。缺乏Sostdc1(Sostdc1 -/-)的小鼠的骨量表型较低,与腰椎和阑尾骨骼中的小梁骨丢失有关。相比之下,Sostdc1 -/-皮质骨测量结果显示,较大的骨具有较高的BMD,这表明Sostdc1对皮质和小梁骨有不同的作用。 Sostdc1 -/-小鼠诱发的中dia骨股骨骨折显示,正常为Sostdc1阳性的骨膜群体在骨膜增厚期间迅速扩张,这些细胞在骨折后3天迁移到骨折the中。骨髓间充质干细胞(MSC)和成骨细胞数量的定量分析确定,MSC表达Sostdc1,并且5天内的Sostdc1 -/-愈伤组织所含的MSC比断裂的野生型对照多2倍以上。组织学上一部分Sostdc1阳性细胞也表达巢蛋白和α平滑肌肌动蛋白,这表明Sostdc1标志着一群骨软骨祖细胞活跃地参与愈伤组织的形成和骨修复。 D5愈伤组织中的MSC数量增加,导致在第7天出现较大的,更血管化的软骨愈伤组织,并且在骨折后21天时软骨的周转速度更快,且骨骼明显重塑,皮层外壳更厚。这些数据支持Sostdc1 -/-小鼠中愈伤组织的加速或增强骨形成/重塑,表明Sostdc1可能促进并维持骨膜间充质干细胞的静止。

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