Simultaneous quantitation of 15 bioactive components in Yupingfeng granules by LC–MS/MS

Author:

Huang Le‐yi12ORCID,Chen Dao‐feng1,Wu Tong2,Gao Yong‐jian3

Affiliation:

1. School of Pharmacy Fudan University Shanghai China

2. National Key Laboratory of Lead Druggability Research Shanghai Institute of Pharmaceutical Industry, China State Institute of Pharmaceutical Industry Shanghai China

3. Sinopharm Group Guangdong Medi‐World Pharmaceutical Co., Ltd. Foshan Guangdong China

Abstract

AbstractYupingfeng granules (YPFG) is commonly used in the treatment of immunological diseases, inflammations, and pulmonary diseases. Several studies have found that chromones, flavones, and saponins were the major bioactive compounds of YPFG. However, few studies have reported accurate quantification methods of these compounds. This study aimed to establish a simple and rapid method by using liquid chromatography–tandem mass spectrometry (LC–MS/MS) to determine 15 bioactive compounds in YPFG. The experimental parameters including extraction methods, extraction solvents, extraction time, solid–liquid ratio, and LC–MS/MS condition were optimized. The linearity, precision, repeatability, stability, and recovery of the established method were evaluated. The contents of 15 bioactive compounds in seven batches of YPFG samples were analyzed by the established method and the results were compared with the values determined by HPLC. The optimal extraction condition was to extract 0.1 g of YPFG by ultrasound with 50 mL 50% ethanol for 30 min. A Waters ACQUITY UPLCBEH C18 column using the 0.1% formic acid water solution and acetonitrile as mobile phase with a gradient elution was applied to the chromatographic separation. The linearity, precision, repeatability, stability, and recovery of the method were within acceptable ranges. Compared with HPLC analysis methods in Chinese Pharmacopoeia and literature, the established method was faster, simpler, more accurate, and more reliable. The method of simultaneous determination of 15 components in YPFG by LC–MS might provide a basis for the study of the bioactive compounds and the improvement of the quality standard of YPFG.

Publisher

Wiley

Reference14 articles.

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