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分泌卷曲相关蛋白在人多能间充质基质细胞成骨中的多种功能。

Diverse functions of secreted frizzled-related proteins in the osteoblastogenesis of human multipotent mesenchymal stromal cells.

机构信息

Department of Periodontology, Graduate School of Medical and Dental Science, Tokyo Medical and Dental University, 1-5-45 Yushima, Bunkyo-ku, Tokyo 113-8510, Japan.

出版信息

Biomaterials. 2013 Apr;34(13):3270-8. doi: 10.1016/j.biomaterials.2013.01.066. Epub 2013 Feb 4.

Abstract

Osteoinductive pretreatment of human mesenchymal stromal cells (hMSCs) has been widely accepted in bone tissue engineering before the use of cell transplantation; however, the mechanisms by which osteoinductive medium (OIM) enhances osteoblastic differentiation are not well understood. Using periodontal ligament-derived hMSCs, we identified key signalling molecules for osteoblastogenesis. Alkaline phosphatase activity induced by OIM, which contains ascorbic acid, β-glycerophosphate, and dexamethasone, was decreased by XAV939, which is an inhibitor of canonical WNT signalling, in a dose-dependent manner. A quantitative RT-PCR array demonstrated the upregulation of secreted frizzled-related protein (SFRP) 3 and the downregulation of SFRP4 during osteoinduction. Functional studies showed that SFRP3 promoted and SFRP4 suppressed the osteoblastic differentiation of hMSCs. In addition, SFRP3 inhibited non-canonical WNT signalling by binding WNT5A, which is a representative non-canonical WNT protein. These results indicate the involvement of the WNT signalling pathway during the osteoblastic differentiation of hMSCs. SFRPs oppositely control osteoblastogenesis through canonical and non-canonical pathways and may be useful for directing the lineage of hMSCs in cytotherapeutic use.

摘要

在细胞移植前的骨组织工程中,人们广泛接受对人骨髓间充质干细胞(hMSCs)进行成骨性预处理;然而,成骨诱导培养基(OIM)增强成骨细胞分化的机制尚不清楚。我们使用牙周膜来源的 hMSCs,确定了成骨细胞发生的关键信号分子。成骨诱导中含有抗坏血酸、β-甘油磷酸和地塞米松的 OIM 诱导的碱性磷酸酶活性呈剂量依赖性下降,XAV939 是经典 WNT 信号的抑制剂。定量 RT-PCR 阵列显示,在成骨诱导过程中,分泌卷曲相关蛋白(SFRP)3 上调,SFRP4 下调。功能研究表明,SFRP3 促进 hMSCs 的成骨分化,而 SFRP4 抑制其分化。此外,SFRP3 通过结合 WNT5A(一种代表性的非经典 WNT 蛋白)抑制非经典 WNT 信号。这些结果表明 WNT 信号通路参与了 hMSCs 的成骨分化。SFRPs 通过经典和非经典途径对成骨细胞发生进行相反的控制,可能有助于指导 hMSCs 在细胞治疗中的谱系。

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