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Marine Compound Catunaregin Inhibits Angiogenesis through the Modulation of Phosphorylation of Akt and eNOS in vivo and in vitro

机译:marine Compound Catunaregin Inhibits angiogenesis through the modulation of phosphorylation of akt and eNOs in vivo and in vitro

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摘要

Angiogenesis is the formation of blood vessels from pre-existing vasculature. Excessive or uncontrolled angiogenesis is a major contributor to many pathological conditions whereas inhibition of aberrant angiogenesis is beneficial to patients with pathological angiogenesis. Catunaregin is a core of novel marine compound isolated from mangrove associate. The potential anti-angiogenesis of catunaregin was investigated in human umbilical vein endothelial cells (HUVECs) and zebrafish. HUVECs were treated with different concentrations of catunaregin in the presence or absence of VEGF. The angiogenic phenotypes including cell invasion cell migration and tube formation were evaluated following catunaregin treatment in HUVECs. The possible involvement of AKT, eNOS and ERK1/2 in catunaregin-induced anti-angiogenesis was explored using Western blotting. The anti-angiogenesis of catunaregin was further tested in the zebrafish embryo neovascularization and caudal fin regeneration assays. We found that catunaregin dose-dependently inhibited angiogenesis in both HUVECs and zebrafish embryo neovascularization and zebrafish caudal fin regeneration assays. In addition, catunaregin significantly decreased the phosphorylation of Akt and eNOS, but not the phosphorylation of ERK1/2. The present work demonstrates that catunaregin exerts the anti-angiogenic activity at least in part through the regulation of the Akt and eNOS signaling pathways.
机译:血管生成是由先前存在的脉管系统形成的血管。过度或不受控制的血管生成是许多病理状况的主要贡献者,而异常血管生成的抑制对具有病理性血管生成的患者是有益的。 Catunaregin是从红树林伴体中分离出来的新型海洋化合物的核心。在人脐静脉内皮细胞(HUVEC)和斑马鱼中研究了catunaregin的潜在抗血管生成作用。在存在或不存在VEGF的情况下,HUVEC用不同浓度的catunaregin处理。在HUVEC中进行catunaregin处理后,评估了血管生成表型,包括细胞侵袭细胞迁移和管形成。使用蛋白质印迹探索了AKT,eNOS和ERK1 / 2可能参与catunaregin诱导的抗血管生成。在斑马鱼胚胎新血管形成和尾鳍再生测定中进一步测试了catunaregin的抗血管生成作用。我们发现,catunaregin在HUVEC和斑马鱼胚胎新血管形成和斑马鱼尾鳍再生测定中均剂量依赖性地抑制血管生成。此外,catunaregin显着降低Akt和eNOS的磷酸化,但不降低ERK1 / 2的磷酸化。本工作表明,catunaregin至少部分地通过调节Akt和eNOS信号通路发挥抗血管生成活性。

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