Combination of large‐volume sample stacking with polarity switching and micelle electrokinetic chromatography for the analysis of anion compounds in Yangxinshi tablets

Author:

Liu Wenping12,Zhou Rui12,Li Jin1,Du Kunze12,He Jun12,Yao Yaqi13,Chang Yanxu12ORCID

Affiliation:

1. State Key Laboratory of Component‐based Chinese Medicine Tianjin University of Traditional Chinese Medicine Tianjin China

2. Tianjin Key Laboratory of Phytochemistry and Pharmaceutical Analysis Tianjin University of Traditional Chinese Medicine Tianjin China

3. School of Chinese Materia Medica Tianjin University of Traditional Chinese Medicine Tianjin China

Abstract

AbstractIntroductionYangxinshi tablet (YXST) is a traditional Chinese medicine preparation characterized by its high efficacy and safety for the treatment of cardiovascular diseases. Anionic compounds have been revealed as potential active components. However, there is currently limited research regarding its quality control.ObjectiveWe aimed to establish a strategy for the simultaneous separation and determination of five key anionic compounds in YXST.MethodA sensitive and efficient analytical method was developed and applied for the simultaneous separation and determination of five key compounds in YXST using large‐volume sample stacking with polarity switching and micelle electrokinetic chromatography (LVSS‐PS‐MEKC) coupled with diode array detection. Crucial parameters, including sample volume, applied voltage, composition and pH of the running buffer, concentration of organic modifier, and switching time of the polarity, were systematically evaluated and optimized using a single variable method to enhance separation performance. Furthermore, the impact of cyclodextrin and sodium dodecyl sulfate as electrolyte modifiers was also investigated.ResultsUnder the optimal conditions, baseline separation of the five compounds (daidzein, puerarin, glycyrrhiztinic acid, chlorogenic acid, and salvianolic acid B) was achieved within 20 min. In comparison to the conventional MEKC mode, the constructed LVSS‐PS‐MEKC method exhibited a more than sixfold increase in the enrichment factor. The method was validated in terms of linearity, precision, accuracy, 24 h stability, and recovery and successfully applied to analyze YXST samples.ConclusionA sensitive strategy was developed for the simultaneous separation and determination of five key anionic components in YXST, offering a robust and efficient strategy for pharmaceutical analysis.

Funder

National Natural Science Foundation of China

Tianjin Municipal Science and Technology Program

Publisher

Wiley

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