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内皮细胞 Dll4-Notch 动力学的同步将血管从分支转变为扩张。

Synchronization of endothelial Dll4-Notch dynamics switch blood vessels from branching to expansion.

机构信息

Vascular Biology Laboratory, London Research Institute, London, United Kingdom.

Lincoln's Inn Fields Laboratories, London, United Kingdom.

出版信息

Elife. 2016 Apr 13;5:e12167. doi: 10.7554/eLife.12167.

Abstract

Formation of a regularly branched blood vessel network is crucial in development and physiology. Here we show that the expression of the Notch ligand Dll4 fluctuates in individual endothelial cells within sprouting vessels in the mouse retina in vivo and in correlation with dynamic cell movement in mouse embryonic stem cell-derived sprouting assays. We also find that sprout elongation and branching associates with a highly differential phase pattern of Dll4 between endothelial cells. Stimulation with pathologically high levels of Vegf, or overexpression of Dll4, leads to Notch dependent synchronization of Dll4 fluctuations within clusters, both in vitro and in vivo. Our results demonstrate that the Vegf-Dll4/Notch feedback system normally operates to generate heterogeneity between endothelial cells driving branching, whilst synchronization drives vessel expansion. We propose that this sensitive phase transition in the behaviour of the Vegf-Dll4/Notch feedback loop underlies the morphogen function of Vegfa in vascular patterning.

摘要

血管网络的规则分支的形成对于发育和生理学至关重要。在这里,我们表明在体内小鼠视网膜血管发芽过程中以及在与小鼠胚胎干细胞衍生的发芽测定中的动态细胞运动相关联的情况下,血管内皮细胞中 Notch 配体 Dll4 的表达在单个内皮细胞中波动。我们还发现,芽的伸长和分支与内皮细胞之间 Dll4 的高度差异相位模式相关联。用病理性高水平的 Vegf 刺激或过表达 Dll4 会导致在体外和体内,在簇内 Notch 依赖性的 Dll4 波动同步。我们的结果表明,Vegf-Dll4/Notch 反馈系统通常会在分支驱动的内皮细胞之间产生异质性,而同步则会促进血管扩张。我们提出,Vegf-Dll4/Notch 反馈环在行为上的这种敏感的相变是 Vegfa 在血管模式形成中的形态发生功能的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f280/4894757/6d606ee34192/elife-12167-fig1.jpg

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