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首页> 外文期刊>Microcirculation: The official journal of the Microcirculatory Society >Angiogenesis Revisited: An Overlooked Role of Endothelial Cell Metabolism in Vessel Sprouting
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Angiogenesis Revisited: An Overlooked Role of Endothelial Cell Metabolism in Vessel Sprouting

机译:再谈血管生成:血管发芽中内皮细胞代谢的一个被忽视的作用。

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During vessel sprouting, endothelial "tip" cells migrate at the forefront, while the endothelial "stalk" cells elongate the sprout; endothelial "phalanx" cells line quiescent vessels. Tip and stalk cells can dynamically switch phenotypes under the control of VEGF and Notch signaling. Novel findings now show that in addition to signaling cascades, metabolism coregulates the formation of the new vasculature. Recent studies demonstrated that ECs rely primarily on glycolysis for ATP production, that glycolysis is further enhanced in angiogenic ECs, and that the key glycolytic regulator PFKFB3 codetermines angiogenesis by controlling the balance of tip versus stalk cells and promoting a migratory tip cell phenotype. On the other hand, FAO regulates endothelial stalk cell proliferation by providing carbon sources for biosynthetic processes, more particularly for de novo nucleotide synthesis for DNA replication. Here, we overview the current understanding of the various metabolic pathways in ECs and their impact on vessel formation in health and disease.
机译:在血管发芽期间,内皮“尖端”细胞迁移到最前端,而内皮“茎”细胞延长了发芽。内皮“指骨”细胞系静止的血管。提示和茎细胞可以在VEGF和Notch信号的控制下动态切换表型。现在的新发现表明,除了信号级联反应外,新陈代谢还可以调节新脉管系统的形成。最近的研究表明,ECs主要依靠糖酵解来产生ATP,在血管生成ECs中糖酵解得到进一步增强,并且关键的糖酵解调节因子PFKFB3通过控制尖端与茎细胞的平衡并促进迁移性尖端细胞表型来决定血管生成。另一方面,粮农组织通过为生物合成过程提供碳源,尤其是为DNA复制提供的从头核苷酸合成提供碳源,从而调节内皮细胞的增殖。在这里,我们概述了对EC中各种代谢途径的当前理解,以及它们对健康和疾病中血管形成的影响。

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