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Mechanisms of vessel branching: filopodia on endothelial tip cells lead the way.

机译:血管分支的机制:内皮足细胞上的丝状伪足起着主导作用。

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Filopodia, "the fingers that do the walking," have been identified on endothelial cells at the tip of sprouting vessels for half a century, but the key role of the tip cell in vessel branching has been recognized only in the past few years. A model is emerging, whereby tip cells lead the way in a branching vessel, stalk cells elongate the sprout, and a very recently discovered phalanx cell ensures quiescence and perfusion of the newly formed branch. Recent genetic studies have shed light on the molecular signature of these distinct endothelial phenotypes; this provides a novel conceptual framework of how vessel morphogenesis occurs. Here, we will discuss the molecular candidates that participate in the decision of endothelial cells to adapt these distinct fates and highlight the emerging insights on how these cells send out filopodia while navigating.
机译:丝状足,即“能行走的手指”,已经在发芽血管尖端的内皮细胞上被发现了半个世纪,但是尖端细胞在血管分支中的关键作用只有在过去的几年中才被认识到。正在出现一种模型,尖端细胞引导进入分支容器,茎细胞使芽萌芽,最近发现的指骨细胞确保了新形成的分支的静止和灌注。最近的遗传研究揭示了这些独特的内皮表型的分子特征。这提供了关于血管形态发生如何的新颖概念框架。在这里,我们将讨论参与内皮细胞决定以适应这些独特命运的分子候选物,并着重介绍这些细胞在导航时如何发出丝状伪足的新见解。

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