Tian Ge-Er, Zhou Jun-Teng, Liu Xiao-Jing, Huang Yong-Can
Regenerative Medicine Research Center of West China Hospital, Sichuan University, Chengdu 610041, Sichuan Province, China.
Department of Cardiology of West China Hospital, Sichuan University, Chengdu 610041, Sichuan Province, China.
World J Stem Cells. 2019 Dec 26;11(12):1104-1114. doi: 10.4252/wjsc.v11.i12.1104.
Stem cells have shown great potential in vascular repair. Numerous evidence indicates that mechanical forces such as shear stress and cyclic strain can regulate the adhesion, proliferation, migration, and differentiation of stem cells serious signaling pathways. The enrichment and differentiation of stem cells play an important role in the angiogenesis and maintenance of vascular homeostasis. In normal tissues, blood flow directly affects the microenvironment of vascular endothelial cells (ECs); in pathological status, the abnormal interactions between blood flow and vessels contribute to the injury of vessels. Next, the altered mechanical forces are transduced into cells by mechanosensors to trigger the reformation of vessels. This process occurs when signaling pathways related to EC differentiation are initiated. Hence, a deep understanding of the responses of stem cells to mechanical stresses and the underlying mechanisms involved in this process is essential for clinical translation. In this the review, we provide an overview of the role of stem cells in vascular repair, outline the performance of stem cells under the mechanical stress stimulation, and describe the related signaling pathways.
干细胞在血管修复方面已显示出巨大潜力。大量证据表明,诸如剪切应力和循环应变等机械力可调节干细胞的黏附、增殖、迁移及分化以及重要的信号通路。干细胞的富集和分化在血管生成及维持血管稳态中发挥重要作用。在正常组织中,血流直接影响血管内皮细胞(ECs)的微环境;在病理状态下,血流与血管之间的异常相互作用会导致血管损伤。接下来,改变的机械力通过机械传感器转导至细胞以触发血管重塑。当与EC分化相关的信号通路启动时,此过程发生。因此,深入了解干细胞对机械应力的反应以及该过程中涉及的潜在机制对于临床转化至关重要。在本综述中,我们概述了干细胞在血管修复中的作用,概述了机械应力刺激下干细胞的表现,并描述了相关信号通路。