Perryn Erica D, Czirók András, Little Charles D
Department of Anatomy and Cell Biology, University of Kansas Medical Center, 3901 Rainbow Boulevard, Kansas City, KS 66160, USA.
Dev Biol. 2008 Jan 15;313(2):545-55. doi: 10.1016/j.ydbio.2007.10.036. Epub 2007 Nov 4.
Embryonic and fetal vascular sprouts form within constantly expanding tissues. Nevertheless, most biological assays of vascular spouting are conducted in a static mechanical milieu. Here we study embryonic mouse allantoides, which normally give raise to an umbilical artery and vein. However, when placed in culture, allantoides assemble a primary vascular network. Unlike other in vitro assays, allantoic primordial vascular cells are situated on the upper surface of a cellular layer that is engaged in robust spreading motion. Time-lapse imaging allows quantification of primordial vascular cell motility as well as the underlying mesothelial tissue motion. Specifically, we calculate endothelial cell-autonomous motion by subtracting the tissue-level mesothelial motion from the total endothelial cell displacements. Formation of new vascular polygons is hindered by administration of function-blocking VE-cadherin antibodies. Time-lapse recordings reveal that (1) cells at the base of sprouts normally move distally "over" existing sprout cells to form new tip-cells; and (2) loss of VE-cadherin activity prevents this motile behavior. Thus, endothelial cell-cell-adhesion-based motility is required for the advancement of vascular sprouts within a moving tissue environment. To the best of our knowledge, this is the first study that couples endogenous tissue dynamics to assembly of vascular networks in a mammalian system.
胚胎和胎儿的血管芽在不断扩张的组织中形成。然而,大多数血管生成的生物学检测是在静态力学环境中进行的。在此,我们研究胚胎期小鼠的尿囊,其通常会发育出脐动脉和脐静脉。然而,当置于培养环境中时,尿囊可组装形成一个初级血管网络。与其他体外检测不同,尿囊原始血管细胞位于参与强烈伸展运动的细胞层的上表面。延时成像能够对原始血管细胞的运动性以及下层间皮组织的运动进行量化。具体而言,我们通过从内皮细胞的总位移中减去组织水平的间皮运动来计算内皮细胞自主运动。给予功能阻断性VE-钙黏蛋白抗体可阻碍新血管多边形的形成。延时记录显示:(1)芽基部的细胞通常向远端移动,“越过”现有的芽细胞以形成新的顶端细胞;(2)VE-钙黏蛋白活性的丧失会阻止这种运动行为。因此,在移动的组织环境中,基于内皮细胞间黏附的运动性是血管芽生长所必需的。据我们所知,这是第一项将内源性组织动力学与哺乳动物系统中血管网络组装相结合的研究。