Zhang Z Z, Liang X M, Lu P Z, Zhang Q, Xue X Y
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116011, China.
Se Pu. 2001 Mar;19(2):157-60.
A method of multi-component quantitative analysis in root of Chinese Angelica has been developed. The analytical mode was reversed-phase HPLC with photodiode array detector. Based on comparison of UV spectra, a software of UV spectra database to assist recognition has been established. The solvent system, a gradient program of mobile phase with 2-propanol/acetonitrile/water can separate a lot of liposoluble components in root of Chinese Angelica. UV detection wavelength was set at 202 nm and the flow rate was 1 mL/min on a Hypersil ODS column. Twenty-three components in two roots of Chinese Angelica were recognized using characteristic parameters of chromatography and UV spectroscopy. It is the base of quantitative contrast to recognize many characteristic components without standard components in root of Chinese Angelica. For two samples of root of Chinese Angelica both have 23 characteristic components and the concentrations of some components were similar and those of others were different. The method is convenient and reproducible. It can be used for the quality control of the root of Chinese Angelica without the use of standards.
建立了一种当归根中多成分定量分析方法。分析模式为采用光电二极管阵列检测器的反相高效液相色谱法。基于紫外光谱比较,建立了辅助识别的紫外光谱数据库软件。溶剂系统,即2-丙醇/乙腈/水的流动相梯度程序,可分离当归根中的许多脂溶性成分。在Hypersil ODS柱上,紫外检测波长设定为202nm,流速为1mL/min。利用色谱和紫外光谱的特征参数识别了两个当归根中的23种成分。在没有标准品的情况下识别当归根中的许多特征成分是进行定量对比的基础。对于两个当归根样品,均有23种特征成分,其中一些成分的浓度相似,而另一些成分的浓度不同。该方法简便且可重复。无需使用标准品即可用于当归根的质量控制。