天然产物研究与开发 ›› 2026, Vol. 38 ›› Issue (6): 1301-1313.doi: 10.16333/j.1001-6880.2026.6.015 cstr: 32307.14.1001-6880.2026.6.015

• 开发研究 • 上一篇    下一篇

基于苷类成分含量结合抗肿瘤活性的裂叶地黄与野生地黄质量分析

尚  婷1,2,李伟峰1,张  娟1,苏成福1,龚海燕1,雷敬卫1,2,杨春静1,2*,谢彩侠1,2*   

  1. 1河南中医药大学 河南省中药质量控制与评价工程技术研究中心;2河南中医药大学第三附属医院,郑州 450046
  • 出版日期:2026-06-26 发布日期:2026-06-24
  • 基金资助:
    国家自然科学基金(82073952,82373985)

Analysis of quality of Rehmannia piasezkii and wild Rehmannia glutinosa based on glycosides content combined with anti-tumor activity

SHANG Ting1,2,LI Wei-feng1,ZHANG Juan1,SU Cheng-fu1,GONG Hai-yan1,LEI Jing-wei1,2,YANG Chun-jing1,2*,XIE Cai-xia1,2*   

  1. 1Henan Engineering Technology Research Center for TCM Quality Control and Evaluation,Henan University of Chinese Medicine;2The Third Affiliated Hospital of Henan University of Traditional Chinese Medicine,Zhengzhou 450046,China
  • Online:2026-06-26 Published:2026-06-24

摘要:

为了探讨裂叶地黄与野生地黄两种地黄属植物的苷类成分特征及其抗肿瘤活性,采用HPLC法检测不同产地裂叶地黄及野生地黄植株中环烯醚萜苷类及苯乙醇苷类成分含量,运用化学计量学及熵权-TOPSIS法对测定结果进行分析,并利用MTT法检测不同质量浓度裂叶地黄及野生地黄对HepG2细胞增殖的影响,结合相关性分析评价裂叶地黄与野生地黄质量。结果表明,两种地黄根、叶、花、茎4个部位中均检测到梓醇、地黄苷D、地黄苷A、益母草苷、红景天苷、毛蕊花糖苷、异毛蕊花糖苷、2'-乙酰毛蕊花糖苷,其中梓醇、毛蕊花糖苷含量均较高。聚类分析结果显示,样品整体上按照裂叶地黄、野生地黄各自聚为一类,两种地黄属植物4个部位间苷类成分含量特征整体上按照根部、叶部、花部、茎部各自聚为一类,与主成分分析结果一致。正交偏最小二乘法判别分析结果进一步验证了种间差异,并从不同部位中筛选出影响两种地黄种间差异的苷类成分:根部6个、叶部3个、花部4个、茎部2个。熵权-TOPSIS法结果表明野生地黄综合质量优于裂叶地黄,两种地黄叶部样品综合质量最佳。裂叶地黄与野生地黄对HepG2细胞均具有一定的抑制作用,但抗肿瘤活性无显著性差异,两种地黄4个部位中叶部位的整体抑制率最高。相关性分析结果显示苯乙醇苷类成分可能是两种地黄抗肿瘤活性的重要药效物质,本研究可为地黄属植物化学成分及药理研究提供依据。

关键词: 裂叶地黄, 野生地黄, 苷类成分, 抗肿瘤, 质量分析

Abstract:

To investigate the characteristics of glycosides and their anti-tumor activity in two species of Rehmannia, R. piasezkii and wild R. glutinosa, HPLC methods were used to detect the contents of glycosides in plants of different origins of R. piasezkii and wild R. glutinosa. Chemometric techniques and the EW-TOPSIS method were used to analyze the result. The MTT assay was applied to test the effects of different concentrations of them on the proliferation of HepG2 cells. This study conducted correlation analysis to evaluate the quality of the two species of Rehmannia. In the roots, leaves, flowers, and stems of R. piasezkii and wild R. glutinosa, catalpol, rhmannioside D, rhmannioside A, ajugol, rhodiroside, acteoside, isoacteoside, and 2'-acetylacteoside were detected, with catalpol and acteoside having relatively high contents. The results of the cluster analysis show that the samples are generally grouped into two categories based on R. piasezkii and wild R. glutinosa, respectively. The content characteristics of glycosides in the four parts of the two Rehmannia species are generally grouped into root, leaf, flower, and stem, which is consistent with the results of the principal component analysis. The results of the orthogonal partial least squares discriminant analysis further confirmed the interspecies differences and identified the glycosides affecting the interspecies differences between the two types of Rehmannia from different parts: 6 from the roots, 3 from the leaves, 4 from the flowers, and 2 from the stems. The results of EW-TOPSIS show that the overall quality of wild R. glutinosa is superior to that of R. piasezkii, with the quality of the Rehmannia leaf samples being the best. They all had some inhibitory effect on HepG2 cells, but there is no significant difference in anti-tumor activity. The overall inhibition rate of the leaf part was the highest among the four parts in two species of Rehmannia. The results of correlation analysis showed that phenylethanoid glycosides may be the important pharmacological substances with anti-tumor activity in the two species of Rehmannia.This study provides a scientific basis for the chemical composition and pharmacological studies of the Rehmannia plant.

Key words:

Rehmannia piasezkii; wild Rehmannia glutinosa, glycosides, anti-tumor, quality analysis

中图分类号:  R284.1