Quality by design‐based capillary electrophoresis method development for the quantitative analysis of four iridoid compounds in Gentiana macrophylla Radix

Author:

Zhang Zhiyong12,Zhang Xiaoyang12,Li Shunan12,Chen Yun1,Li Zheng123,Lian Yunlan4,Li Wenlong123ORCID

Affiliation:

1. College of Pharmaceutical Engineering of Traditional Chinese Medicine Tianjin University of Traditional Chinese Medicine Tianjin P. R. China

2. State Key Laboratory of Component‐Based Chinese Medicine Tianjin University of Traditional Chinese Medicine Tianjin P. R. China

3. Haihe Laboratory of Modern Chinese Medicine Tianjin P. R. China

4. Shanxi Institute for Food and Drug Control Taiyuan Shanxi P. R. China

Abstract

AbstractIn this study, the capillary electrophoresis‐photodiode array detector was employed for the analysis of four iridoid compounds in Gentiana macrophylla Radix (RGM), and the method was optimized based on the concept of analytical quality by design (AQbD). The peak areas relative standard deviation (n = 3) and resolution of the four analytes were selected as critical method attributes. Fractional factorial design test combined with Pareto analysis were employed to screen critical method parameters (buffer concentration, pH, sodium dodecyl sulfate [SDS] micelle concentration, temperature, and voltage). Subsequently, three main factors (buffer concentration, buffer pH, and SDS concentration) were selected by central composite design test for constructing the design space. The optimal separation conditions as follows: capillary column (50.2 cm × 50 µm, detection length 40 cm). Working background electrolyte consisted of 51 mmol/L borax solution (pH = 9.47) and 40 mmol/L SDS. The samples were injected by pressure (5 s at 0.5 psi) and the detection was performed at 254 nm. Applied voltage was 20 kV and column temperature was 23°C. The developed method is rapid and reliable for the quantitative analysis of four iridoid compounds in RGM, providing a reference for the application of AQbD concept in the analysis of natural products.

Funder

Wuhan Science and Technology Project

Publisher

Wiley

Subject

Clinical Biochemistry,Biochemistry,Analytical Chemistry

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