湖北农业科学 ›› 2022, Vol. 61 ›› Issue (7): 108-112.doi: 10.14088/j.cnki.issn0439-8114.2022.07.020

• 检测分析 • 上一篇    下一篇

国槐花与刺槐花中黄酮的质量差异比较

付凤萍, 高欣悦, 余佳, 吴建英, 余琳, 陈红英   

  1. 西南科技大学生命科学与工程学院,四川 绵阳 621010
  • 收稿日期:2021-05-08 出版日期:2022-04-10 发布日期:2022-05-04
  • 通讯作者: 陈红英(1973-),女,四川南充人,副教授,博士,主要从事药用资源开发利用研究,(电话)18281593786(电子信箱)chenhongying@swust.edu.cn。
  • 作者简介:付凤萍(1998-),女,四川成都人,在读本科生,研究方向为制药工程,(电话)15520597157(电子信箱)1900671904@qq.com
  • 基金资助:
    西南科技大学校级项目(20GJZX24; 21SYJS28)

Comparison of quality differences of flavonoids in Sophora japonica L. flowers and Robinia pseudoacacia L. flowers

FU Feng-ping, GAO Xin-yue, YU Jia, WU Jian-ying, YU Ling, CHEN Hong-ying   

  1. College of Life Science and Engineering, Southwest University of Science and Technology,Mianyang 621010,Sichuan,China
  • Received:2021-05-08 Online:2022-04-10 Published:2022-05-04

摘要: 国槐(Sophora japonica L.)花 和刺槐(Robinia pseudoacacia L.)花为近缘品种,均有药食两用价值,并富含黄酮类物质。采用药典中槐花的标准来探讨两者黄酮差异,以利于经销和临床上区分。试验以芦丁为对照,对2种槐花进行薄层色谱定性比较、比色法测定总黄酮含量及高效液相色谱法测定芦丁含量。国槐花与刺槐花的色谱图差异非常明显,国槐花中芦丁为主要化学成分,而刺槐花中有不同于芦丁的主成分;含量测定结果显示,国槐花中总黄酮和芦丁含量分别约为刺槐花含量的1.5倍和5~10倍;2种槐花总黄酮含量均大于8%;同种槐花不同产地的总黄酮呈现量的差异;国槐花炮制后,按照生槐花、炒槐花、槐花炭的顺序,总黄酮和芦丁含量均逐渐减低。2种槐花色谱差异显著,可用于二者的定性鉴别;刺槐花中总黄酮和芦丁的含量均明显低于国槐花;不同产地同种槐花呈现量上差异,色谱图差异不大;槐花炮制后黄酮成分发生一定的改变;试验结果可用于两者的黄酮差异比较。

关键词: 国槐(Sophora japonica L.)花, 刺槐(Robinia pseudoacacia L.)花, 总黄酮, 薄层色谱法, 比色法, 高效液相色谱法

Abstract: Sophora japonica L. flowers and Robinia pseudoacacia L. flowers are closely related varieties, both of which have medicinal and edible value and are rich in flavonoids. The standard of Sophora japonica L. flowers in pharmacopoeia was used to explore the difference of flavonoids between the two, so as to facilitate the distribution and clinical distinction. With rutin as the control, TLC qualitative comparison, colorimetry determination of total flavonoids content and HPLC determination of rutin content were conducted for the two sophora flower. The difference between the chromatograms of Sophora japonica L. flower and Robinia pseudoacacia L. flower was very obvious. Rutin was the main chemical composition in Sophora japonica L. flower, and there were different principal components from rutin in Robinia pseudoacacia L. flower. The determination results showed that the contents of total flavonoids and rutin of Sophora japonica L. flowers were about 1.5 times and 5~10 times of that of Robinia pseudoacacia L. flowers, respectively. The total flavonoids content of the two kinds of Sophora japonica L. flowers was greater than 8%; the total flavonoids of the same species of Sophora japonica L. flowers from different origins showed differences; after processing, the contents of total flavonoids and rutin gradually decreased in the order of raw Sophora japonica L. flowers, fried Sophora japonica L. flowers and Sophora japonica L. flowers charcoal. The chromatographic differences between the two kinds of Flos Sophorae were obvious, which could be used for the qualitative identification of the two; the contents of total flavonoids and rutin in Robinia pseudoacacia L. flowers were significantly lower than those in Sophora japonica. L. flowers There were differences in the amount of the same species of Sophora japonica L.flowers from different habitats, and there was little difference in chromatogram. The flavonoids in Flos Sophorae after processing changed to some extent; the results can be used for the comparison of flavonoids differences between the two.

Key words: Sophora japonica L. flowers, Robinia pseudoacacia L. flowers, total flavonoids, thin layer chromatography, colorimetry, high performance liquid chromatography

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