The potential mechanism of Choulingdan mixture in improving acute lung injury based on HPLC–Q‐TOF–MS, network pharmacology and in vivo experiments

Author:

Wang Lili1,Li Zhengyan2,Lu Tulin1,Su Lianlin1,Mao Chunqin1,Zhang Yiting1,Zhang Xinrui1,Jiang Xiaofeng1,Xie Hui1ORCID,Yu Xiaoling2

Affiliation:

1. School of Pharmacy Nanjing University of Chinese Medicine Nanjing China

2. Department of Pharmacy Kunming Municipal Hospital of Traditional Chinese Medicine Kunming China

Abstract

AbstractChoulingdan mixture (CLDM) is an empirical clinical prescription for the adjuvant treatment of acute lung injury (ALI). CLDM has been used for almost 30 years in the clinic. However, its mechanism for improving ALI still needs to be investigated. In this study, high‐performance liquid chromatography–quadrupole/time‐of‐flight mass spectrometry (HPLC–Q‐TOF–MS/MS) was applied to characterize the overall chemical composition of CLDM. A total of 93 ingredients were characterized, including 25 flavonoids, 20 organic acids, 11 saponins, nine terpenoids, seven tannins and 21 other compounds. Then network pharmacology was applied to predict the potential bioactive components, target genes and signaling pathways of CLDM in improving ALI. Additionally, molecular docking was performed to demonstrate the interaction between the active ingredients and the disease targets. Finally, animal experiments further confirmed that CLDM significantly inhibits pulmonary inflammation, pulmonary edema and oxidative stress in lipopolysaccharide‐induced ALI mice by inhibiting the PI3K–AKT signaling pathway. This study enhanced the amount and accuracy of compounds of CLDM and provided new insights into CLDM preventing and treating ALI.

Publisher

Wiley

Subject

Clinical Biochemistry,Drug Discovery,Pharmacology,Molecular Biology,General Medicine,Biochemistry,Analytical Chemistry

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