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sFRP2 通过抑制骨形态发生蛋白(BMP)和 Wnt 信号转导来介导间充质干细胞(MSC)自我更新,从而促进植入和心肌修复。

sFRP2 suppression of bone morphogenic protein (BMP) and Wnt signaling mediates mesenchymal stem cell (MSC) self-renewal promoting engraftment and myocardial repair.

机构信息

Department of Pathology, Vanderbilt University Medical Center, Nashville, Tennessee 37232, USA.

出版信息

J Biol Chem. 2010 Nov 12;285(46):35645-53. doi: 10.1074/jbc.M110.135335. Epub 2010 Sep 7.

Abstract

Transplantation of mesenchymal stem cells (MSCs) is a promising therapy for ischemic injury; however, inadequate survival of implanted cells in host tissue is a substantial impediment in the progress of cellular therapy. Secreted Frizzled-related protein 2 (sFRP2) has recently been highlighted as a key mediator of MSC-driven myocardial and wound repair. Notably, sFRP2 mediates significant enhancement of MSC engraftment in vivo. We hypothesized that sFRP2 improves MSC engraftment by modulating self-renewal through increasing stem cell survival and by inhibiting differentiation. In previous studies we demonstrated that sFRP2-expressing MSCs exhibited an increased proliferation rate. In the current study, we show that sFRP2 also decreased MSC apoptosis and inhibited both osteogenic and chondrogenic lineage commitment. sFRP2 activity occurred through the inhibition of both Wnt and bone morphogenic protein (BMP) signaling pathways. sFRP2-mediated inhibition of BMP signaling, as assessed by levels of pSMAD 1/5/8, was independent of its effects on the Wnt pathway. We further hypothesized that sFRP2 inhibition of MSC lineage commitment may reduce heterotopic osteogenic differentiation within the injured myocardium, a reported adverse side effect. Indeed, we found that sFRP2-MSC-treated hearts and wound tissue had less ectopic calcification. This work provides important new insight into the mechanisms by which sFRP2 increases MSC self-renewal leading to superior tissue engraftment and enhanced wound healing.

摘要

间充质干细胞 (MSCs) 的移植是一种有前途的缺血性损伤治疗方法;然而,植入宿主组织中的细胞存活率不足是细胞治疗进展的一个重大障碍。分泌卷曲相关蛋白 2 (sFRP2) 最近被强调为 MSC 驱动心肌和伤口修复的关键介质。值得注意的是,sFRP2 介导 MSC 在体内的显著增强定植。我们假设 sFRP2 通过增加干细胞存活和抑制分化来调节自我更新,从而改善 MSC 定植。在之前的研究中,我们证明了表达 sFRP2 的 MSC 表现出增殖率的增加。在当前的研究中,我们表明 sFRP2 还降低了 MSC 凋亡并抑制了成骨和成软骨谱系的分化。sFRP2 活性通过抑制 Wnt 和骨形态发生蛋白 (BMP) 信号通路来实现。sFRP2 对 BMP 信号的抑制作用,如通过 pSMAD 1/5/8 的水平评估,与其对 Wnt 途径的影响无关。我们进一步假设 sFRP2 抑制 MSC 谱系分化可能会减少损伤心肌内异位成骨分化,这是一种报道的不良反应。事实上,我们发现 sFRP2-MSC 处理的心脏和伤口组织的异位钙化较少。这项工作为 sFRP2 如何增加 MSC 自我更新从而导致更好的组织定植和增强伤口愈合的机制提供了重要的新见解。

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