Suppr超能文献

聚焦体外冲击波作用于培养的人骨髓基质细胞所产生的机械刺激的细胞生物学效应

Cell biological effects of mechanical stimulations generated by focused extracorporeal shock wave applications on cultured human bone marrow stromal cells.

作者信息

Suhr Frank, Delhasse Yvonne, Bungartz Gerd, Schmidt Annette, Pfannkuche Kurt, Bloch Wilhelm

机构信息

Institute of Cardiovascular Research and Sport Medicine, Department of Molecular and Cellular Sport Medicine, German Sport University Cologne, Cologne, Germany.

出版信息

Stem Cell Res. 2013 Sep;11(2):951-64. doi: 10.1016/j.scr.2013.05.010. Epub 2013 May 29.

Abstract

Human bone marrow stromal cells (hBMSCs) bear tremendous clinical potential due to their immunomodulatory properties in transplantation settings and their contribution to tissue regeneration. In fact, they are among the most promising types of stem-like cells for therapeutic applications and are the subject of intense research. However, the clinical use of hBMSCs has been confounded by limitations in their availability; they are scarce cells cumbersome to isolate and purify. Additionally, they are difficult to target to the site of injury in regeneration experiments. In order to combat these limitations, focused extracorporeal shock waves (fESW, 0.2/0.3mJ∗mm(-2)) were applied to purified, cultured hBMSCs. fESW (0.2mJ∗mm(-2)) stimulations were found to increase hBMSCs' growth rate (p<0.05), proliferation (p<0.05), migration, cell tracking and wound healing (p<0.05, respectively), as well as to reduce the rate of apoptosis activation (p<0.05). The increase in hBMSC migration behavior was found to be mediated by active remodeling of the actin cytoskeleton as indicated by increased directed stress fiber formations (p<0.05). Furthermore, hBMSCs maintain their differentiation potentials after fESW treatment, whereas 0.2mJ∗mm(-2) is the most effective application. In conclusion, our results establish first-timely that hBMSCs' behavior can be modified and optimized in response to defined mechanical stimulation. These findings appear particularly promising as they suggest that mechanical stress preconditions hBMSCs for improved therapeutic performance without genetic manipulations and that mechanically preconditioned hBMSCs will be advantageous for hBMSC-based tissue regeneration. Therefore, this approach opens the door for exploiting the full potential of these cells in regenerative medicine.

摘要

人骨髓基质细胞(hBMSCs)因其在移植环境中的免疫调节特性以及对组织再生的贡献而具有巨大的临床潜力。事实上,它们是治疗应用中最有前景的干细胞类型之一,也是深入研究的对象。然而,hBMSCs的临床应用受到其可用性限制的困扰;它们是稀缺细胞,分离和纯化繁琐。此外,在再生实验中,它们很难靶向损伤部位。为了克服这些限制,将聚焦体外冲击波(fESW,0.2/0.3mJ∗mm(-2))应用于纯化培养的hBMSCs。发现fESW(0.2mJ∗mm(-2))刺激可提高hBMSCs的生长速率(p<0.05)、增殖能力(p<0.05)、迁移能力、细胞追踪能力和伤口愈合能力(分别为p<0.05),同时降低凋亡激活率(p<0.05)。hBMSC迁移行为的增加被发现是由肌动蛋白细胞骨架的主动重塑介导的,这表现为定向应力纤维形成增加(p<0.05)。此外,fESW处理后hBMSCs仍保持其分化潜能,而0.2mJ∗mm(-2)是最有效的应用剂量。总之,我们的结果首次证实,hBMSCs的行为可以通过特定的机械刺激进行改变和优化。这些发现似乎特别有前景,因为它们表明机械应力可使hBMSCs在无需基因操作的情况下具备更好的治疗性能,并且经机械预处理的hBMSCs将有利于基于hBMSC的组织再生。因此,这种方法为在再生医学中充分发挥这些细胞的潜力打开了大门。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验