Chemical profiling and quality evaluation of Liuweizhiji Gegen‐Sangshen oral liquid by UPLC‐Q‐TOF‐MS and HPLC‐diode array detector fingerprinting

Author:

Wei Shulin12,Jiang Yu3,Li Mingxing12,Zhao Long4,Wang Tiangang4,Wei Mei4,Zhao Qianyun12,Zeng Jiuping12,Zhao Yueshui12,Shen Jing12,Du Fukuan12,Chen Yu12,Deng Shuai12,Xiao Zhangang12,Li Zhi45,Wu Xu12ORCID

Affiliation:

1. Cell Therapy & Cell Drugs of Luzhou Key Laboratory, Department of Pharmacology, School of Pharmacy Southwest Medical University Luzhou China

2. South Sichuan Institute of Translational Medicine Luzhou China

3. Department of Gerontology The Affiliated Traditional Chinese Medicine Hospital, Southwest Medical University Luzhou China

4. Department of Spleen and Stomach Diseases, The Affiliated Traditional Chinese Medicine Hospital Southwest Medical University Luzhou China

5. The Key Laboratory of Integrated Traditional Chinese and Western Medicine for Prevention and Treatment of Digestive System Diseases of Luzhou city, The Affiliated Traditional Medicine Hospital Southwest Medical University Luzhou China

Abstract

AbstractIntroductionLiuweizhiji Gegen‐Sangshen (LGS) oral liquid is a Chinese patent medicine that is widely used for the prevention and treatment of alcoholic liver disease in clinical practice. However, the chemical complexity of LGS has not yet been investigated.ObjectiveThe aim of this study was to rapidly identify chemical constituents of LGS and establish a quality control method based on fingerprint and quantitative analysis.MethodologyA comprehensive strategy was used by combining qualitative analysis by ultra‐performance liquid chromatography tandem quadrupole time‐of‐flight mass spectrometry (UPLC‐Q‐TOF‐MS) and fingerprint analysis by high‐performance liquid chromatography with diode array detection (HPLC‐DAD).ResultsA total of 162 chemical components in LGS, including 91 flavonoids, 31 organic acids, and 20 phenolic compounds, were identified or preliminarily characterized in both positive and negative ion modes based on the UPLC‐Q‐TOF‐MS results. Of these, 37 were confirmed with the reference standards. In fingerprint analysis, 23 peaks were chosen as common peaks and used to evaluate the similarity of different batches of LGS. Subsequently, a rapid quantification method was optimized and validated for the simultaneous determination of multiple chemical markers in LGS. The validated quantitative method was successfully used to analyze different batches of LGS samples.ConclusionThe proposed comprehensive strategy combining HPLC‐DAD fingerprinting and multi‐component quantification demonstrated satisfactory results with high efficiency, accuracy, and reliability. This can be used as a reference for the overall quality consistency evaluation of Chinese patent medicines.

Funder

Sichuan Provincial Administration of Traditional Chinese Medicine

Sichuan Province Science and Technology Support Program

Publisher

Wiley

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