Mammoto Akiko, Sero Julia E, Mammoto Tadanori, Ingber Donald E
Vascular Biology Program, Department of Pathology, Children's Hospital and Harvard Medical School, Boston, Massachusetts, USA.
Methods Enzymol. 2008;443:227-59. doi: 10.1016/S0076-6879(08)02012-0.
Mechanical forces that capillary endothelial cells generate in their cytoskeleton and exert on their extracellular matrix adhesions feed back to modulate cell sensitivity to soluble angiogenic factors, and thereby control vascular development. Here we describe various genetic, biochemical, and engineering methods that can be used to study, manipulate, and probe this physical mechanism of developmental control. These techniques are useful as in vitro angiogenesis models and for analyzing the molecular and biophysical basis of vascular control.
毛细血管内皮细胞在其细胞骨架中产生并施加于细胞外基质黏附的机械力会反馈调节细胞对可溶性血管生成因子的敏感性,从而控制血管发育。在此,我们描述了各种可用于研究、操纵和探究这种发育控制物理机制的遗传学、生物化学和工程学方法。这些技术作为体外血管生成模型以及用于分析血管控制的分子和生物物理基础很有用。