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Redox Control of Angiogenesis

机译:凝血性凝血剂控制

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Significance: Angiogenesis is the formation of new vessels that sprout from existing vessels. This process is highly complex and requires a coordinated shift of the endothelial phenotype from a quiescent cell in the vessel wall into a migrating or proliferating cell. Such change in the life of the endothelial cell is induced by a variety of factors such as hypoxia, metabolic changes, or cytokines. Recent Advances: Within the last years, it became clear that the cellular redox state and oxidation of signaling molecules or phosphatases are critical modulators in angiogenesis. Critical Issues: According to the wide variety of stimuli that induce angiogenesis, a complex signaling network is needed to support a coordinated response of the endothelial cell. Reactive oxygen species (ROS) now are second messengers that either directly oxidize a target molecule or initiate a cascade of redox sensitive steps that transmit the signal. Further Directions: For the understanding of redox signaling, it is essential to recognize and accept that ROS do not represent master regulators of angiogenetic processes. They rather modulate existing signal cascades. This review summarizes some current findings on redox signaling in angiogenesis.
机译:意义:血管生成是从现有船舶发芽的新血管的形成。该方法具有高度复杂的并且需要从血管壁中的静态细胞中的内皮表型对迁移或增殖细胞的协调偏移。内皮细胞生命的这种变化由多种因素(如缺氧,代谢变化或细胞因子)诱导。最近的进展:在过去几年中,可以清楚地发挥作用的细胞氧化还原状态和信号传导分子或磷酸酶的氧化是血管生成中的临界调节剂。关键问题:根据诱导血管生成的各种刺激,需要复杂的信号网络来支持内皮细胞的协调响应。反应性氧物种(ROS)现在是第二信使,其直接氧化靶分子或发起传输信号的氧化还原敏感步骤的级联。进一步的方向:为了了解氧化还原信令,必须识别并接受ROS不代表血管生成过程的主调节器。它们相当调节现有信号级联。本综述总结了血管生成中氧化还原信号传导的一些目前的结果。

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