半枝莲化学成分及抑制血管生成活性的研究

袁延强,韩利文,王希敏,侯海荣,刘可春*

中国药学杂志 ›› 2012, Vol. 47 ›› Issue (13) : 1032-1034.

中国药学杂志 ›› 2012, Vol. 47 ›› Issue (13) : 1032-1034.
论著

半枝莲化学成分及抑制血管生成活性的研究

  • 袁延强,韩利文,王希敏,侯海荣,刘可春*
作者信息 +

Study on Anti-Angiogenic Activity of the Chemical Constituents from Scutellaria barbata

  • YUAN Yan-qiang,HAN Li-wen,WANG Xi-min,HOU Hai-rong,LIU Ke-chun*
Author information +
文章历史 +

摘要

目的 研究半枝莲的化学成分及其抑制血管生成活性。方法 采用硅胶柱色谱、sephadex LH-20凝胶柱色谱分离纯化化合物,运用理化反应和波谱分析鉴定化合物的结构。采用斑马鱼抑制血管生成模型测试化合物的活性。结果 从半枝莲体积分数75%乙醇提取物中的乙酸乙酯萃取部分中分离得到了9个化合物,分别为:汉黄芩素,4′-羟基汉黄芩素,芹菜素,黄芩素,柚皮素,木樨草素,异鼠李素,野黄芩苷,黄芩苷,其中异鼠李素有明显的抑制血管生成活性。结论 抑制血管生成是半枝莲抗肿瘤作用的途径之一。

Abstract

OBJECTIVE To study the chemical constituents and anti-angiogenic activity of Scutellaria barbata. METHODS Compounds were isolated with silicagel column chromatography and sephadex LH-20 gel column chromatography, and identified with NMR spectrum. The activity was tested by zebrafish anti-angiogenic model. RESULTS Nine compounds were isolated from 75% ethanol extract of the ethyl acetate extract part, and identified as wogonin, 4′-hydroxy wogonin, apigenin, baicalein, naringenin, luteolin, isorhamnetin, wild baicalin,and baicalin. Only isorhamnetin showed anti-angiogenic activity. CONCLUSION Anti-angiogenesis is one of the antitumor pathways of Scutellaria barbata.

关键词

半枝莲 / 汉黄芩素 / 野黄芩苷 / 异鼠李素 / 斑马鱼 / 抑制血管生成

Key words

Scutellaria barbata; wogonin; wild baicalin; Isorhamnetin;zebrafish / anti-angiogenesis

引用本文

导出引用
袁延强,韩利文,王希敏,侯海荣,刘可春*. 半枝莲化学成分及抑制血管生成活性的研究[J]. 中国药学杂志, 2012, 47(13): 1032-1034
YUAN Yan-qiang,HAN Li-wen,WANG Xi-min,HOU Hai-rong,LIU Ke-chun*. Study on Anti-Angiogenic Activity of the Chemical Constituents from Scutellaria barbata[J]. Chinese Pharmaceutical Journal, 2012, 47(13): 1032-1034
中图分类号: R284.1   

参考文献

[1] Ch. P(2005)VolI(中国药典.一部) [M]. 2010:109.[2] MILAN D J, PETERSON T A, RUSKIN J N, et al. Drugs that induce repolarization abnormalities cause bradycardia in zebrafish[J]. Circulation,2003,107:1355-1358.[3] ZHANG Z P,YANG Z L,TANG D F, et al. Isolation and structure identification of chemical constituents from Stachys Geobombycis [J]. Chin Tradit Patent Med(中成药), 2004, 26(12): 1052-1053.[4] CHEN Y, ZHANG G G , MAO D S, et al. Chemical constituents of Scutellaria barbata D. Don(Ⅰ) [J]. Chin J Med Chem (中国药物化学),2008,18(1):93-95.[5] GRANDE M, PIERA F, CUENCA A,et al. Flavonoids from Inula viscosa [J].Plant Med,1985,76(2):414-417.[6] XU Y, ZHANG Z Z, ZOU Z M. Studies on chemical constituents of the rhizomes of Cyperus rotundus L. [J]. Chin Pharm J (中国药学杂志), 2010,5(1):818-821.[7] DING L F, GUO Y D, WU X D, et al. Chemical constituents of flavonoids in Lysimachia clethroide [J]. Chin Tradit Patent Med(中成药),2010,32(5):827-831.[8] SHAO S, YAN M M, BI S N, et al. Chemical constituents of Erigeron canadensis [J]. Chin Pharm J (中国药学杂志),2009,44(14):1053-1055.[9] GEORGE N S, EDWARD F,CATHERINE E W. Zebrafish angiogenesis: A new model for drug screening[J]. Angiogenesis,1999,3(4): 353-359.

Accesses

Citation

Detail

段落导航
相关文章

/