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组织转谷氨酰胺酶对于整合素介导的骨髓间充质干细胞存活至关重要。

Tissue transglutaminase is essential for integrin-mediated survival of bone marrow-derived mesenchymal stem cells.

作者信息

Song Heesang, Chang Woochul, Lim Soyeon, Seo Hye-Sun, Shim Chi Young, Park Sungha, Yoo Kyung-Jong, Kim Byung-Soo, Min Byoung-Hyun, Lee Hakbae, Jang Yangsoo, Chung Namsik, Hwang Ki-Chul

机构信息

Cardiovascular Research Institute, Cardiology Division, Yonsei University College of Medicine, Seoul 120-752, Korea.

出版信息

Stem Cells. 2007 Jun;25(6):1431-8. doi: 10.1634/stemcells.2006-0467. Epub 2007 Mar 8.

Abstract

Autologous mesenchymal stem cell (MSC) transplantation therapy for repair of myocardial injury has inherent limitations due to the poor viability of the stem cells after cell transplantation. Adhesion is a prerequisite for cell survival and also a key factor for the differentiation of MSCs. As a novel prosurvival modification strategy, we genetically engineered MSCs to overexpress tissue transglutaminase (tTG), with intention to enhance adhesion and ultimately cell survival after implantation. tTG-transfected MSCs (tTG-MSCs) showed a 2.7-fold and greater than a twofold increase of tTG expression and surface tTG activity, respectively, leading to a 20% increased adhesion of MSCs on fibronectin (Fn). Spreading and migration of tTG-MSCs were increased 4.75% and 2.52%, respectively. Adhesion of tTG-MSCs on cardiogel, a cardiac fibroblast-derived three-dimensional matrix, showed a 33.1% increase. Downregulation of tTG by transfection of small interfering RNA specific to the tTG resulted in markedly decreased adhesion and spread of MSCs on Fn or cardiogel. tTG-MSCs on Fn significantly increased phosphorylation of focal adhesion related kinases FAK, Src, and PI3K. tTG-MSCs showed significant retention in infarcted myocardium by forming a focal adhesion complex and developed into cardiac myocyte-like cells by the expression of cardiac-specific proteins. Transplantation of 1 x 10(6) MSCs transduced with tTG into the ischemic rat myocardium restored normalized systolic and diastolic cardiac function. tTG-MSCs further restored cardiac function of infarcted myocardium as compared with MSC transplantation alone. These findings suggested that tTG may play an important role in integrin-mediated adhesion of MSCs in implanted tissues. Disclosure of potential conflicts of interest is found at the end of this article.

摘要

由于细胞移植后干细胞活力较差,自体间充质干细胞(MSC)移植疗法在修复心肌损伤方面存在固有局限性。黏附是细胞存活的前提条件,也是MSC分化的关键因素。作为一种新的促存活修饰策略,我们对MSC进行基因工程改造,使其过表达组织转谷氨酰胺酶(tTG),目的是增强植入后的黏附能力并最终提高细胞存活率。转染tTG的MSC(tTG-MSC)的tTG表达和表面tTG活性分别增加了2.7倍和两倍以上,导致MSC在纤连蛋白(Fn)上的黏附增加了20%。tTG-MSC的铺展和迁移分别增加了4.75%和2.52%。tTG-MSC在心肌凝胶(一种源自心脏成纤维细胞的三维基质)上的黏附增加了33.1%。通过转染针对tTG的小干扰RNA下调tTG,导致MSC在Fn或心肌凝胶上的黏附和铺展明显减少。Fn上的tTG-MSC显著增加了黏着斑相关激酶FAK、Src和PI3K的磷酸化。tTG-MSC通过形成黏着斑复合物在梗死心肌中显著滞留,并通过心脏特异性蛋白的表达发育成心肌样细胞。将1×10⁶个转导了tTG的MSC移植到缺血大鼠心肌中,可恢复正常的心脏收缩和舒张功能。与单独进行MSC移植相比,tTG-MSC进一步恢复了梗死心肌的心脏功能。这些发现表明,tTG可能在整合素介导的植入组织中MSC黏附中发挥重要作用。潜在利益冲突的披露见本文末尾。

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