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Pro-angiogenic Activity of Notoginsenoside R1 in Human Umbilical Vein Endothelial Cells in vitro and in a Chemical-Induced Blood Vessel Loss Model of Zebrafish in vivo

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【作者】 杨彬睿洪思佳李铭源丛伟红万建波张哲睿张庆文张燚王一涛林志秀

【Author】 YANG Bin-rui;HONG Si-jia;Simon Ming-Yuen Lee;CONG Wei-hong;WAN Jian-bo;ZHANG Zhe-rui;ZHANG Qing-wen;ZHANG Yi;WANG Yi-tao;LIN Zhi-xiu;State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences,University of Macau;School of Chinese Medicine, The Chinese University of Hong Kong;Laboratory of Cardiovascular Diseases, Xiyuan Hospital China Heart Institute of Chinese Medicine, China Academy of Chinese Medical Sciences;

【机构】 State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences,University of MacauSchool of Chinese Medicine, The Chinese University of Hong KongLaboratory of Cardiovascular Diseases, Xiyuan Hospital China Heart Institute of Chinese Medicine, China Academy of Chinese Medical Sciences

【摘要】 Objective: This study aimed at investigating whether notoginsenoside R1(R1), a unique saponin found in Panax notoginseng could promote angiogenic activity on human umbilical vein endothelial cells(HUVECs) and elucidate their potential molecular mechanisms. In addition, vascular restorative activities of R1 was assessed in a chemically-induced blood vessel loss model in zebrafish. Methods: The in vitro angiogenic effect of R1 was compared with other previously reported angiogenic saponins Rg1 and Re. The HUVECs proliferation in the presence of R1 was determined by cell proliferation kit Ⅱ(XTT) assay. R1, Rg1 and Re-induced HUVECs invasion across polycarbonate membrane was stained with Hoechst-33342 and quantified microscopically. Tube formation assay using matrigelcoated wells was performed to evaluate the pro-angiogenic actions of R1. In order to understand the mechanism underlying the pro-angiogenic effect, various pathway inhibitors such as SU5416, wortmannin(wort) or L-Nω-nitroL-arginine methyl ester hydrochloride(L-NAME), SH-6 were used to probe the possible involvement of signaling pathway in the R1 mediated HUVECs proliferation. In in vivo assays, zebrafish embryos at 21 hpf were pre-treated with vascular endothelial growth factor(VEGF) receptor kinase inhibitor Ⅱ(VRI) for 3 h only and subsequently post-treated with R1 for 48 h, respectively. The intersegmental vessels(ISVs) in zebrafish were assessed for the restorative effect of R1 on defective blood vessels. Results: R1 could stimulate the proliferation of HUVECs. In the chemoinvasion assay, R1 significantly increased the number of cross-membrane HUVECs. In addition, R1 markedly enhanced the tube formation ability of HUVECs. The proliferative effects of these saponins on HUVECs were effectively blocked by the addition of SU5416(a VEGF-KDR/Flk-1 inhibitor). Similarly, pre-treatment with wort [a phosphatidylinositol 3-kinase(PI3K)-kinase inhibitor], L-NAME [an endothelial nitric oxide synthase(eN OS) inhibitor] or SH-6(an Akt pathway inhibitor) significantly abrogated the R1 induced proliferation of HUVECs. In chemicallyinduced blood vessel loss model in zebrafish, R1 significantly rescue the damaged ISVs. Conclusion: R1, similar to Rg1 and Re, had been showed pro-angiogenic action, possibly via the activation of the VEGF-KDR/Flk-1 and PI3KAkt-eN OS signaling pathways. Our findings also shed light on intriguing pro-angiogenic effect of R1 under deficient angiogenesis condition in a pharmacologic-induced blood vessels loss model in zebrafish. The present study in vivo and in vitro provided scientific evidence to explain the ethnomedical use of Panax notoginseng in the treatmentof cardiovascular diseases, traumatic injuries and wound healing.

【Abstract】 Objective: This study aimed at investigating whether notoginsenoside R1(R1), a unique saponin found in Panax notoginseng could promote angiogenic activity on human umbilical vein endothelial cells(HUVECs) and elucidate their potential molecular mechanisms. In addition, vascular restorative activities of R1 was assessed in a chemically-induced blood vessel loss model in zebrafish. Methods: The in vitro angiogenic effect of R1 was compared with other previously reported angiogenic saponins Rg1 and Re. The HUVECs proliferation in the presence of R1 was determined by cell proliferation kit Ⅱ(XTT) assay. R1, Rg1 and Re-induced HUVECs invasion across polycarbonate membrane was stained with Hoechst-33342 and quantified microscopically. Tube formation assay using matrigelcoated wells was performed to evaluate the pro-angiogenic actions of R1. In order to understand the mechanism underlying the pro-angiogenic effect, various pathway inhibitors such as SU5416, wortmannin(wort) or L-Nω-nitroL-arginine methyl ester hydrochloride(L-NAME), SH-6 were used to probe the possible involvement of signaling pathway in the R1 mediated HUVECs proliferation. In in vivo assays, zebrafish embryos at 21 hpf were pre-treated with vascular endothelial growth factor(VEGF) receptor kinase inhibitor Ⅱ(VRI) for 3 h only and subsequently post-treated with R1 for 48 h, respectively. The intersegmental vessels(ISVs) in zebrafish were assessed for the restorative effect of R1 on defective blood vessels. Results: R1 could stimulate the proliferation of HUVECs. In the chemoinvasion assay, R1 significantly increased the number of cross-membrane HUVECs. In addition, R1 markedly enhanced the tube formation ability of HUVECs. The proliferative effects of these saponins on HUVECs were effectively blocked by the addition of SU5416(a VEGF-KDR/Flk-1 inhibitor). Similarly, pre-treatment with wort [a phosphatidylinositol 3-kinase(PI3K)-kinase inhibitor], L-NAME [an endothelial nitric oxide synthase(eN OS) inhibitor] or SH-6(an Akt pathway inhibitor) significantly abrogated the R1 induced proliferation of HUVECs. In chemicallyinduced blood vessel loss model in zebrafish, R1 significantly rescue the damaged ISVs. Conclusion: R1, similar to Rg1 and Re, had been showed pro-angiogenic action, possibly via the activation of the VEGF-KDR/Flk-1 and PI3KAkt-eN OS signaling pathways. Our findings also shed light on intriguing pro-angiogenic effect of R1 under deficient angiogenesis condition in a pharmacologic-induced blood vessels loss model in zebrafish. The present study in vivo and in vitro provided scientific evidence to explain the ethnomedical use of Panax notoginseng in the treatmentof cardiovascular diseases, traumatic injuries and wound healing.

【基金】 Supported by grants from the Overseas and Hong Kong,Macau Young Scholars Collaborative Research Fund by the National Natural Science Foundation of China(No.81328025);the Science and Technology Development Fund of Macau SAR(Ref.No.014/2011/A1),Research Committee,University of Macau
  • 【文献出处】 Chinese Journal of Integrative Medicine ,中国结合医学杂志(英文版) , 编辑部邮箱 ,2016年06期
  • 【分类号】R285
  • 【被引频次】18
  • 【下载频次】116
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