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Sox9 在骨折修复过程中的表达。

Sox9 expression during fracture repair.

机构信息

Department of Orthodontics, Graduate School of Dentistry, Osaka University, Suita, Japan.

出版信息

Cells Tissues Organs. 2011;194(1):38-48. doi: 10.1159/000322557. Epub 2011 Jan 22.

Abstract

The molecular and cellular mechanisms involved in bone development provide an insight into the nature of bone regeneration. Sox9 is a key transcription factor for chondrogenesis and is also expressed in osteochondroprogenitors during embryonic bone development. However, it has not been determined whether Sox9-expressing cells appear during fracture repair other than in the cartilaginous callus. On the other hand, the difference between bone development and repair is that the motion of the fractured segments is associated with the subsequent fate decision of osteochondrogenic precursors between osteogenesis or chondrogenesis, but the underlying mechanism of this still has to be elucidated. We herein evaluate whether Sox9-expressing cells appear during osseous regeneration in the initial stages of fracture healing in vivo. We also investigated the association between Sox9 induction and mechanical stress and the role of Runx1 expression. As a result, Sox9- and Runx1-expressing cells were detected in the periosteal callus together with Runx2 expression. Their expression levels were significantly downregulated during its ossification, as observed in embryonic bone development. The application of cyclic tension to isolated and cultured stromal cells resulted in the upregulation and maintenance of Sox9 mRNA expression in vitro. These results showed that as in early skeletal development, Sox9- and Runx1-expressing precursor cells first appear in the periosteal callus as an early fracture repair response. Our findings also suggested that the mechanical environment modulates Sox9 expression levels in osteochondrogenic precursors and consequently influences their fate decision between osteogenic and chondrogenic lineage commitment.

摘要

涉及骨发育的分子和细胞机制为骨再生的本质提供了深入了解。 Sox9 是软骨发生的关键转录因子,在胚胎骨发育过程中也在骨软骨祖细胞中表达。 然而,尚不确定 Sox9 表达细胞是否除软骨痂外还出现在骨折修复过程中。 另一方面,骨发育和修复之间的区别在于,骨折段的运动与随后成骨或软骨形成之间的成骨软骨前体细胞的命运决定有关,但这一潜在机制仍有待阐明。 我们在此评估 Sox9 表达细胞是否在体内骨折愈合的初始阶段的骨再生过程中出现。 我们还研究了 Sox9 诱导与机械应力之间的关系以及 Runx1 表达的作用。 结果,在骨膜骨痂中检测到 Sox9 和 Runx1 表达细胞,同时也检测到 Runx2 表达。 在其骨化过程中,它们的表达水平明显下调,与胚胎骨发育中观察到的情况相同。 对分离和培养的基质细胞施加循环张力可导致 Sox9 mRNA 表达在体外上调和维持。 这些结果表明,与早期骨骼发育一样,Sox9 和 Runx1 表达的前体细胞首先出现在骨膜骨痂中,作为早期骨折修复反应。 我们的研究结果还表明,机械环境调节成骨软骨前体细胞中的 Sox9 表达水平,并因此影响其在成骨和软骨谱系分化之间的命运决定。

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