运动中的内皮细胞:血管形态发生和疾病的动力学。

Vascular biology (Bristol, England) Pub Date : 2020-07-02 eCollection Date: 2020-01-01 DOI:10.1530/VB-20-0007
Catarina G Fonseca, Pedro Barbacena, Claudio A Franco
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引用次数: 31

摘要

血管系统是一个分层组织的血管网络,在胚胎发生、体内平衡和疾病中起着至关重要的作用。血管是由内皮细胞——排列在血管内部的细胞——通过一个叫做血管形态发生的过程形成的。内皮细胞对环境中不同的生物力学信号作出反应,通过调整其行为:(1)入侵、增殖和融合形成新血管(血管生成);(2)重构、回归并在网络中建立层次结构(模式化);(3)维护网络稳定(静息)。每一步都涉及内皮细胞分化、增殖、极性、迁移、重排和形状变化的协调,以确保网络的完整性和血液与组织之间的有效屏障。在这篇综述中,我们强调了内皮细胞在血管形态发生的不同阶段迁移的相关性和机制。我们进一步提出了内皮细胞动力学受损如何导致病理的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Endothelial cells on the move: dynamics in vascular morphogenesis and disease.

The vascular system is a hierarchically organized network of blood vessels that play crucial roles in embryogenesis, homeostasis and disease. Blood vessels are built by endothelial cells - the cells lining the interior of blood vessels - through a process named vascular morphogenesis. Endothelial cells react to different biomechanical signals in their environment by adjusting their behavior to: (1) invade, proliferate and fuse to form new vessels (angiogenesis); (2) remodel, regress and establish a hierarchy in the network (patterning); and (3) maintain network stability (quiescence). Each step involves the coordination of endothelial cell differentiation, proliferation, polarity, migration, rearrangements and shape changes to ensure network integrity and an efficient barrier between blood and tissues. In this review, we highlighted the relevance and the mechanisms involving endothelial cell migration during different steps of vascular morphogenesis. We further present evidence on how impaired endothelial cell dynamics can contribute to pathology.

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