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首页> 外文期刊>The Journal of biological chemistry >The Biflavonoid Amentoflavone Inhibits Neovascularization Preventing the Activity of Proangiogenic Vascular Endothelial Growth Factors
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The Biflavonoid Amentoflavone Inhibits Neovascularization Preventing the Activity of Proangiogenic Vascular Endothelial Growth Factors

机译:双歧脂蛋白灭菌洛昔酮抑制新生血管,防止过致血管内皮生长因子的活性

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The proangiogenic members of VEGF family and related receptors play a central role in the modulation of pathological angiogenesis. Recent insights indicate that, due to the strict biochemical and functional relationship between VEGFs and related receptors, the development of a new generation of agents able to target contemporarily more than one member of VEGFs might amplify the antiangiogenic response representing an advantage in term of therapeutic outcome. To identify molecules that are able to prevent the interaction of VEGFs with related receptors, we have screened small molecule collections consisting of >100 plant extracts. Here, we report the isolation and identification from an extract of the Malian plant Chrozophora senegalensis of the biflavonoid amentoflavone as an antiangiogenic bioactive molecule. Amentoflavone can to bind VEGFs preventing the interaction and phosphorylation of VEGF receptor 1 and 2 (VEGFR-1,VEGFR-2) and to inhibit endothelial cell migration and capillary-like tube formation induced by VEGF-A or placental growth factor 1 (PlGF-1) at low μm concentration. In vivo, amentoflavone is able to inhibit VEGF-A-induced chorioallantoic membrane neovascularization as well as tumor growth and associated neovascularization, as assessed in orthotropic melanoma and xenograft colon carcinoma models. In addition structural studies performed on the amentoflavone·PlGF-1 complex have provided evidence that this biflavonoid effectively interacts with the growth factor area crucial for VEGFR-1 receptor recognition. In conclusion, our results demonstrate that amentoflavone represents an interesting new antiangiogenic molecule that is able to prevent the activity of proangiogenic VEGF family members and that the biflavonoid structure is a new chemical scaffold to develop powerful new antiangiogenic molecules.
机译:VEGF家族和相关受体的常规成员在病理血管生成的调节中起着核心作用。最近的见解表明,由于VEGF和相关受体之间的严格生化和功能关系,新一代能够靶向靶向的VEGF的一定数量的药物可能会扩增代表治疗结果期限的抗血管生成响应。为了鉴定能够防止VEGF与相关受体相互作用的分子,我们筛选了由> 100种植物提取物组成的小分子收集。在此,我们从双歧脂醛灭菌洛昔酮的黑麦植物杂志塞内加仑的提取物中报告了分离和鉴定作为抗血管生物活性分子。 Amenoflavone可以结合VEGF,防止VEGF受体1和2(VEGFR-1,VEGFR-2)的相互作用和磷酸化并抑制VEGF-A或胎盘生长因子1诱导的内皮细胞迁移和毛细管状管形成(PLGF- 1)在低μm浓度下。在体内,Amenoflavone能够抑制VEGF-A诱导的胆管膜膜新生血管和肿瘤生长和相关的新血管形成,如在偶像黑素瘤和异种移植结肠癌模型中评估。此外,在αmentoflavone·PLGF-1复合物上进行的结构研究提供了证据表明,这种双链蛋白有效地与VEGFR-1受体识别至关重要的生长因子区域相互作用。总之,我们的结果表明,Amentoflavone代表了一种有趣的新抗血管分子,能够防止常规癌VEGF家族成员的活性,并且双链烷结构是开发强大的新型抗血管生成分子的新化学支架。

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