Singapore-MIT Alliance for Research and Technology, BioSystems and Micromechanics Inter-Disciplinary Research programme, 1 CREATE Way, #04-13/14 Enterprise Wing, Singapore 138602.
1] Singapore-MIT Alliance for Research and Technology, BioSystems and Micromechanics Inter-Disciplinary Research programme, 1 CREATE Way, #04-13/14 Enterprise Wing, Singapore 138602 [2] Department of Biological Sciences, National University of Singapore, Singapore 117543.
Sci Rep. 2014 Feb 7;4:4031. doi: 10.1038/srep04031.
Delta-like 4 (Dll4), a membrane-bound Notch ligand, plays a fundamental role in vascular development and angiogenesis. Dll4 is highly expressed in capillary endothelial tip cells and is involved in suppressing neighboring stalk cells to become tip cells during angiogenesis. Dll4-Notch signaling is mediated either by direct cell-cell contact or by Dll4-containing exosomes from a distance. However, whether Dll4-containing exosomes influence tip cells of existing capillaries is unknown. Using a 3D microfluidic device and time-lapse confocal microscopy, we show here for the first time that Dll4-containing exosomes causes tip cells to lose their filopodia and trigger capillary sprout retraction in collagen matrix. We demonstrate that Dll4 exosomes can freely travel through 3D collagen matrix and transfer Dll4 protein to distant tip cells. Upon reaching endothelial sprout, it causes filopodia and tip cell retraction. Continuous application of Dll4 exosomes from a distance lead to significant reduction of sprout formation. This effect correlates with Notch signaling activation upon Dll4-containing exosome interaction with recipient endothelial cells. Furthermore, we show that Dll4-containing exosomes increase endothelial cell motility while suppressing their proliferation. These data revealed novel functions of Dll4 in angiogenesis through exosomes.
Delta-like 4(Dll4)是一种膜结合的 Notch 配体,在血管发育和血管生成中起着至关重要的作用。Dll4 在毛细血管内皮尖端细胞中高度表达,并参与抑制相邻的茎细胞成为血管生成过程中的尖端细胞。Dll4-Notch 信号转导通过直接细胞-细胞接触或通过远距离的包含 Dll4 的外泌体进行介导。然而,是否包含 Dll4 的外泌体影响现有毛细血管的尖端细胞尚不清楚。使用 3D 微流控装置和延时共聚焦显微镜,我们首次表明,包含 Dll4 的外泌体导致尖端细胞失去丝状伪足,并触发胶原基质中毛细血管芽的回缩。我们证明 Dll4 外泌体可以自由地穿过 3D 胶原基质,并将 Dll4 蛋白转移到远处的尖端细胞。当到达内皮芽时,它会导致丝状伪足和尖端细胞回缩。从远处持续应用 Dll4 外泌体导致芽形成显著减少。这种效应与 Dll4 包含的外泌体与受体内皮细胞相互作用时 Notch 信号的激活相关。此外,我们还表明,包含 Dll4 的外泌体增加了内皮细胞的迁移能力,同时抑制了它们的增殖。这些数据揭示了 Dll4 通过外泌体在血管生成中的新功能。