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CD73 和 CD29 共同介导机械诱导对间充质基质细胞迁移能力的降低。

CD73 and CD29 concurrently mediate the mechanically induced decrease of migratory capacity of mesenchymal stromal cells.

机构信息

Julius Wolff Institute and Musculoskeletal Research Center Berlin, Charité-Universitätsmedizin, Berlin, Germany.

出版信息

Eur Cell Mater. 2011 Jul 6;22:26-42. doi: 10.22203/ecm.v022a03.

DOI:10.22203/ecm.v022a03
PMID:21732280
Abstract

e assumption that mesenchymal stromal cell (MSC)-based-therapies are capable of augmenting physiological regeneration processes has fostered intensive basic and clinical research activities. However, to achieve sustained therapeutic success in vivo, not only the biological, but also the mechanical microenvironment of MSCs during these regeneration processes needs to be taken into account. This is especially important for e.g., bone fracture repair, since MSCs present at the fracture site undergo significant biomechanical stimulation. This study has therefore investigated cellular characteristics and the functional behaviour of MSCs in response to mechanical loading. Our results demonstrated a reduced expression of MSC surface markers CD73 (ecto-5'-nucleotidase) and CD29 (integrin β1) after loading. On the functional level, loading led to a reduced migration of MSCs. Both effects persisted for a week after the removal of the loading stimulus. Specific inhibition of CD73/CD29 demonstrated their substrate dependent involvement in MSC migration after loading. These results were supported by scanning electron microscopy images and phalloidin staining of actin filaments displaying less cell spreading, lamellipodia formation and actin accumulations. Moreover, focal adhesion kinase and Src-family kinases were identified as candidate downstream targets of CD73/CD29 that might contribute to the mechanically induced decrease in MSC migration. These results suggest that MSC migration is controlled by CD73/CD29, which in turn are regulated by mechanical stimulation of cells. We therefore speculate that MSCs migrate into the fracture site, become mechanically entrapped, and thereby accumulate to fulfil their regenerative functions.

摘要

人们假设间充质基质细胞(MSC)为基础的治疗能够增强生理再生过程,这促进了密集的基础和临床研究活动。然而,为了在体内实现持续的治疗成功,不仅需要考虑 MSCs 的生物学,还需要考虑其在这些再生过程中的机械微环境。这在骨骨折修复中尤为重要,因为骨折部位的 MSC 会受到显著的生物力学刺激。因此,本研究调查了细胞特性和 MSC 对机械加载的功能行为。我们的结果表明,在加载后,MSC 表面标志物 CD73(外核苷酸酶)和 CD29(整合素β1)的表达减少。在功能水平上,加载导致 MSC 迁移减少。在去除加载刺激后,这两种效应持续了一周。CD73/CD29 的特异性抑制表明它们在加载后 MSC 迁移中依赖于基质的参与。扫描电子显微镜图像和肌动蛋白丝的鬼笔环肽染色支持了这些结果,显示细胞铺展、片状伪足形成和肌动蛋白聚集减少。此外,粘着斑激酶和 Src 家族激酶被鉴定为 CD73/CD29 的候选下游靶标,它们可能有助于 MSC 迁移的机械诱导减少。这些结果表明,MSC 迁移受 CD73/CD29 控制,而 CD73/CD29 又受细胞机械刺激的调节。因此,我们推测 MSC 迁移到骨折部位,被机械捕获,并因此积累以发挥其再生功能。

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