A systems biology view of blood vessel growth and remodelling.

A systems biology view of blood vessel growth and remodelling.
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DOI:
10.1111/jcmm.12164
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发表时间:
2014-08
影响因子:
5.3
通讯作者:
Mac Gabhann F
Mac Gabhann F
中科院分区:
医学2区
文献类型:
--
作者:
Logsdon EA;Finley SD;Popel AS;Mac Gabhann F

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血液通过一个广泛的血管网络——动脉、静脉和毛细血管——在全身流动。这种血管网络不是静态的,而是根据附近组织细胞的刺激而动态重塑的。特别是,在运动、缺血事件、药物干预或其他生理和病理生理事件的影响下,最小的血管——小动脉、小静脉和毛细血管——可以被延长、扩大或修剪。在这篇综述中,我们描述了血管生成的多步骤形态发生过程-新血管的萌芽-和血管网络的稳定性在体内。特别是,我们回顾了内皮细胞与各种血细胞和血浆成分之间已知的相互作用。我们描述了在应用计算建模,定量生物学和高通量实验血管生成过程中取得的进展。
Blood travels throughout the body in an extensive network of vessels – arteries, veins and capillaries. This vascular network is not static, but instead dynamically remodels in response to stimuli from cells in the nearby tissue. In particular, the smallest vessels – arterioles, venules and capillaries – can be extended, expanded or pruned, in response to exercise, ischaemic events, pharmacological interventions, or other physiological and pathophysiological events. In this review, we describe the multi-step morphogenic process of angiogenesis – the sprouting of new blood vessels – and the stability of vascular networks in vivo. In particular, we review the known interactions between endothelial cells and the various blood cells and plasma components they convey. We describe progress that has been made in applying computational modelling, quantitative biology and high-throughput experimentation to the angiogenesis process.
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