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成骨细胞 Sox9 阳性在成年哺乳动物长骨骨折修复中的作用。

Sox9 positive periosteal cells in fracture repair of the adult mammalian long bone.

机构信息

Department of Stem Cell Biology and Regenerative Medicine, Eli and Edythe Broad-CIRM Center for Regenerative Medicine and Stem Cell Research, W.M. Keck School of Medicine, University of Southern California, Los Angeles, CA, USA.

Department of Orthopaedic Surgery, Keck School of Medicine, University of Southern California, Los Angeles, CA, USA.

出版信息

Bone. 2017 Oct;103:12-19. doi: 10.1016/j.bone.2017.06.008. Epub 2017 Jun 13.

Abstract

INTRODUCTION

The phases of fracture healing have been well characterized. However, the exact source and genetic profile of the skeletal progenitors that participate in bone repair is somewhat unclear. Sox9 expression in skeletal elements precedes bone and cartilage formation and a Sox9 cell type is retained in the adult periosteum. We hypothesized that Sox9 periosteal cells are multipotent skeletal progenitors normally participating in fracture repair.

METHODS

To test this hypothesis we used tamoxifen (TM)-mediated lineage tracing of Sox9 cells in Sox9CreErt2:Td-Tomato mice. Intact femora were analyzed with immunostaining and RNA sequencing to evaluate the skeletal distribution and gene expression profile of Td-Tomato positive, Sox9-descendent cells in the adult femur. To assess the role of Td-tomato+cells in the fracture healing process, mice underwent a closed mid-diaphyseal femoral fracture. Fractured hind limbs were analyzed by X-ray, histology and immuno-staining at 3, 9 or 56days post-fracture.

RESULTS

In the intact adult mouse femur, Td-Tomato-labeled cells were observed in the primary spongiosa, periosteum and endosteum. RNA sequencing showed that Td-Tomato positive periosteal cells were co-enriched for Sox9 transcripts, and mRNAs for osteoblast and chondrocyte specific genes. In a femoral fracture model, we showed that pre-labeled Td-Tomato positive descendent cells were mobilized during the early stages of bone repair (day 3 post-op) contributing to the fracture repair process by differentiating into chondrocytes, osteoblasts and osteocytes.

CONCLUSION

A Sox9 skeletal progenitor population resides in the adult periosteum. Fate tracing studies show that descendants of the Sox9 periosteal progenitors give rise to chondrocytes, osteoblasts and mature cortical osteocytes in repair of the fractured femur. To our knowledge this is the first report of a reparative Sox9 progenitor population in the periosteum of the adult long bone. Taken together with developmental studies, our data suggest a broad role for Sox9 osteochondroprogenitors in development and repair of the mammalian skeleton.

摘要

简介

骨折愈合的阶段已经得到了很好的描述。然而,参与骨修复的骨骼祖细胞的确切来源和遗传特征尚不清楚。Sox9 在骨骼成分中的表达先于骨和软骨形成,并且 Sox9 细胞类型保留在成人骨膜中。我们假设 Sox9 骨膜细胞是多能骨骼祖细胞,通常参与骨折修复。

方法

为了验证这一假设,我们使用 Sox9CreErt2:Td-Tomato 小鼠中的 tamoxifen (TM)-介导的 Sox9 细胞谱系追踪。通过免疫染色和 RNA 测序分析完整的股骨,以评估成年股骨中 Td-Tomato 阳性、Sox9 衍生细胞的骨骼分布和基因表达谱。为了评估 Td-tomato+细胞在骨折愈合过程中的作用,小鼠接受了闭合性中段股骨骨折。在骨折后 3、9 或 56 天,通过 X 射线、组织学和免疫染色分析骨折后肢。

结果

在完整的成年小鼠股骨中,观察到 Td-Tomato 标记的细胞存在于初级松质骨、骨膜和骨内膜中。RNA 测序显示,Td-Tomato 阳性骨膜细胞 Sox9 转录本共富集,并富含成骨细胞和软骨细胞特异性基因的 mRNAs。在股骨骨折模型中,我们表明,预先标记的 Td-Tomato 阳性衍生细胞在骨修复的早期阶段被动员,通过分化为软骨细胞、成骨细胞和成熟皮质骨细胞来参与骨折修复过程。

结论

成年骨膜中存在 Sox9 骨骼祖细胞群体。命运追踪研究表明,Sox9 骨膜祖细胞的后代在修复股骨骨折时产生软骨细胞、成骨细胞和成熟皮质骨细胞。据我们所知,这是成年长骨骨膜中修复性 Sox9 祖细胞群体的首次报道。结合发育研究,我们的数据表明 Sox9 成骨软骨祖细胞在哺乳动物骨骼的发育和修复中具有广泛的作用。

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