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EphB/ephrin-B 相互作用介导人 MSC 黏附、迁移和骨软骨分化。

EphB/ephrin-B interactions mediate human MSC attachment, migration and osteochondral differentiation.

机构信息

Mesenchymal Stem Cell Group, Department of Haematology, Institute of Medical and Veterinary Science/Hanson Institute and Centre for Stem Cell Research/Robinson Institute, University of Adelaide, Adelaide, SA, Australia.

出版信息

Bone. 2011 Mar 1;48(3):533-42. doi: 10.1016/j.bone.2010.10.180. Epub 2010 Nov 5.

Abstract

Bone marrow derived mesenchymal stem/stromal cells (MSC) contribute to skeletal tissue formation and the regulation of haematopoiesis. The Eph/ephrin family of receptor tyrosine kinases is potentially important in the maintenance of the stem cell niche within neural, intestinal and dental tissues and has recently been shown to play a role in regulating bone homeostasis. However, the contribution of EphB/ephrin-B molecules in human MSC function remains to be determined. In the present study, EphB and ephrin-B molecules were expressed by ex vivo expanded human MSC populations and within human bone marrow trephine samples. To elucidate the contribution of EphB/ephrin-B molecules in MSC recruitment, we performed functional spreading and migration assays and showed that reverse ephrin-B signalling inhibited MSC attachment and spreading by activating Src-, PI3Kinase- and JNK-dependent signalling pathways. In contrast, forward EphB2 signalling promoted MSC migration by activating the Src kinase- and Abl-dependent signalling pathways. Furthermore, activation of ephrin-B1 and/or ephrin-B2 molecules expressed by MSC was found to increase osteogenic differentiation, while ephrin-B1 activation promoted chondrogenic differentiation. These observations suggest that EphB/ephrin-B interactions may mediate the recruitment, migration and differentiation of MSC during bone repair.

摘要

骨髓间充质干细胞(MSC)有助于骨骼组织的形成和造血的调节。Eph/ephrin 受体酪氨酸激酶家族在神经、肠道和牙齿组织中的干细胞龛的维持中具有潜在的重要作用,并且最近已被证明在调节骨稳态中发挥作用。然而,EphB/ephrin-B 分子在人 MSC 功能中的贡献仍有待确定。在本研究中,EphB 和 ephrin-B 分子在体外扩增的人 MSC 群体和人骨髓活检样本中表达。为了阐明 EphB/ephrin-B 分子在 MSC 募集中的作用,我们进行了功能扩展和迁移分析,结果表明反向 ephrin-B 信号通过激活Src、PI3K 和 JNK 依赖性信号通路抑制 MSC 附着和扩展。相比之下,正向 EphB2 信号通过激活 Src 激酶和 Abl 依赖性信号通路促进 MSC 迁移。此外,发现表达于 MSC 的 Ephrin-B1 和/或 Ephrin-B2 分子的激活可增加成骨分化,而 Ephrin-B1 的激活可促进软骨分化。这些观察结果表明,EphB/ephrin-B 相互作用可能介导 MSC 在骨修复过程中的募集、迁移和分化。

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