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首页> 外文期刊>Journal of Ethnopharmacology: An Interdisciplinary Journal Devoted to Bioscientific Research on Indigenous Drugs >Molecular mechanisms of angiogenesis effect of active sub-fraction from root of Rehmannia glutinosa by zebrafish sprout angiogenesis-guided fractionation
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Molecular mechanisms of angiogenesis effect of active sub-fraction from root of Rehmannia glutinosa by zebrafish sprout angiogenesis-guided fractionation

机译:斑马鱼芽苗新生代血管生成诱导分级分离法制备地黄活性根成分的血管生成作用的分子机制

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摘要

Ethnopharmacological importance The root of Rehmannia glutinosa (Rehmanniae Radix (RR)) is clinically used as a wound-healing agent in traditional Chinese medicine. Angiogenesis acts crucially in the pathogenesis of chronic wound healing. The present study investigated the angiogenesis effect and its underlying mechanism of RR through zebrafish sprout angiogenesis guided-fractionation. Materials and methods The in vivo angiogenesis effect was studied by analyzing the number of ectopic sprouts formed upon sub-intestinal vessel of transgenic TG(fli1:EGFP)y1/+(AB) zebrafish embryos by fluorescence microscopy. Quantitative real-time PCR gene expression of the zebrafish embryos was further performed using a panel of 30 angiogenesis- associated genes designed for zebrafish sprout angiogenesis. Classical in vitro angiogenesis assays using human microvascular endothelial cells (HMEC-1) was accompanied. Results We demonstrated that among all RR sub-fractions tested, C1-1 treated-zebrafish embryos possessed the most potent angiogenesis activities (from 190 to 780 ng/ml, p0.001) in sprout formation in the zebrafish model. Quantitative gene expression of the treated embryos demonstrated significant up-regulation in MMP-9 (p0.05), ANGPT1 (p0.05), EGFR (p0.05), EPHB4 (p0.01), and significant down-regulation in Ephrin B2 (p0.05), Flt-1 (p0.05) and Ets-1 (p0.05). C1-1 treatment could also significantly (p0.001-0.05) stimulate HMEC-1 cell migration in scratch assay. Significant increase (p0.05) in mean tubule length was observed in the C1-1-treated HMEC-1 cells in the tubule formation assay. Conclusions Our zebrafish sprout angiogenesis model-guided fractionation revealed that C1-1 possessed the most potent angiogenesis effect in RR. The design of the panel with 30 tailor-made angiogenesis-associated genes exhibited in zebrafish gene expression analysis showed that C1-1 could trigger differential expression of various angiogenesis-associated genes, such as VEGFR3 and MMP9, which played key role in angiogenesis. The pro-angiogenic activity of C1-1 was further confirmed in the translated study in motogenic and tubule-inducing effect using HMEC-1.
机译:民族药理学重要性熟地黄(Rehmanniae Radix(RR))的根在临床上被用作中药的伤口愈合剂。血管生成在慢性伤口愈合的发病机理中起关键作用。本研究通过斑马鱼新芽血管生成引导分级分离研究了RR的血管生成作用及其潜在机制。材料和方法通过荧光显微镜检查转基因TG(fli1:EGFP)y1 / +(AB)斑马鱼胚胎的肠下血管形成的异位芽数,研究了体内血管生成作用。斑马鱼胚胎的实时定量PCR基因表达进一步使用一组专为斑马鱼发芽血管生成而设计的30个与血管新生相关的基因进行。伴随着使用人微血管内皮细胞(HMEC-1)进行的经典体外血管生成测定。结果我们证明,在所测试的所有RR亚部分中,C1-1处理的斑马鱼胚胎在斑马鱼模型的芽形成中具有最强的血管生成活性(从190到780 ng / ml,p <0.001)。经处理的胚胎的定量基因表达在MMP-9(p <0.05),ANGPT1(p <0.05),EGFR(p <0.05),EPHB4(p <0.01)中显着上调,在Ephrin中显着下调B2(p <0.05),Flt-1(p <0.05)和Ets-1(p <0.05)。在刮擦试验中,C1-1处理还可以显着(p <0.001-0.05)刺激HMEC-1细胞迁移。在小管形成试验中,经C1-1处理的HMEC-1细胞中观察到平均小管长度显着增加(p <0.05)。结论我们的斑马鱼新芽血管生成模型指导的分馏显示,C1-1在RR中具有最强的血管生成作用。在斑马鱼基因表达分析中显示的具有30个特制的血管生成相关基因的面板的设计显示,C1-1可以触发各种血管生成相关基因的差异表达,例如VEGFR3和MMP9,它们在血管生成中起关键作用。在翻译的研究中,使用HMEC-1进一步证实了C1-1的促血管生成活性。

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