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Hemodynamic Control of Endothelial Cell Fates in Development
Annual Review of Cell and Developmental Biology ( IF 11.3 ) Pub Date : 2016-10-06 00:00:00 , DOI: 10.1146/annurev-cellbio-100814-125610
Guillermo García-Cardeña 1, 2 , Bendix R. Slegtenhorst 1, 2, 3
Affiliation  

Biomechanical forces are emerging as critical regulators of embryogenesis, particularly in the developing cardiovascular system. From the onset of blood flow, the embryonic vasculature is continuously exposed to a variety of hemodynamic forces. These biomechanical stimuli are key determinants of vascular cell specification and remodeling and the establishment of vascular homeostasis. In recent years, major advances have been made in our understanding of mechano-activated signaling networks that control both spatiotemporal and structural aspects of vascular development. It has become apparent that a major site for mechanotransduction is situated at the interface of blood and the vessel wall and that this process is controlled by the vascular endothelium. In this review, we discuss the hemodynamic control of endothelial cell fates, focusing on arterial-venous specification, lymphatic development, and the endothelial-to-hematopoietic transition, and present some recent insights into the mechano-activated pathways driving these cell fate decisions in the developing embryo.

中文翻译:


血液中内皮细胞命运的血流动力学控制。

生物力学力正在成为胚胎发生的关键调节剂,特别是在正在发展的心血管系统中。从血流开始,胚胎脉管系统就不断暴露于各种血液动力中。这些生物力学刺激是决定血管细胞规格和重塑以及建立血管动态平衡的关键因素。近年来,在我们对控制血管发育的时空和结构方面的机械激活信号网络的理解方面取得了重大进展。显而易见,机械转导的主要部位位于血液和血管壁的界面,并且该过程由血管内皮控制。在这篇综述中,我们讨论了内皮细胞命运的血流动力学控制,

更新日期:2016-10-06
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