Park Jennifer S, Huang Ngan F, Kurpinski Kyle T, Patel Shyam, Hsu Steve, Li Song
Department of Bioengineering and The Center for Tissue Bioengineering, University of California-Berkeley, Berkeley, CA 94720-1762, USA.
Front Biosci. 2007 Sep 1;12:5098-116. doi: 10.2741/2551.
Mesenchymal stem cells (MSCs) derived from bone marrow have shown great promise in tissue repair. While these cells induce little immune response, they show marked self-renewal properties and can differentiate into many cell types. Recent evidence shows that mechanical factors such as fluid shear stress, mechanical strain and the rigidity of extracellular matrix can regulate the proliferation and differentiation of MSCs through various signaling pathways. Transplanted MSCs enhance angiogenesis and contribute to remodeling of the vasculature. In this review, we will focus on the responses of vascular cells and MSCs to shear stress, strain and matrix rigidity and will discuss the use of MSCs in myocardial repair and vascular tissue engineering.
源自骨髓的间充质干细胞(MSCs)在组织修复方面已显示出巨大潜力。虽然这些细胞引起的免疫反应很小,但它们具有显著的自我更新特性,并且可以分化为多种细胞类型。最近的证据表明,诸如流体剪切应力、机械应变和细胞外基质刚度等机械因素可通过各种信号通路调节MSCs的增殖和分化。移植的MSCs可促进血管生成并有助于脉管系统的重塑。在本综述中,我们将重点关注血管细胞和MSCs对剪切应力、应变和基质刚度的反应,并将讨论MSCs在心肌修复和血管组织工程中的应用。