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The anti-hepatocellular carcinoma effect of Aidi injection was related to the synergistic action of cantharidin, formononetin, and isofraxidin through Birc5, FEN1, and EGFR

Bibliographic Data

ID14740994
AuthorsShan Lu (0000-0003-4740-0610, Beijing University of Chinese Medicine), Jiaqi Huang (0000-0002-8376-414X, Beijing University of Chinese Medicine), Jingyuan Zhang (0000-0003-4223-2793, Beijing University of Chinese Medicine), Chao Wu (0000-0002-3490-1435, Beijing University of Chinese Medicine), Zhihong Huang (0000-0003-4569-5400, Beijing University of Chinese Medicine), Xiaoyu Tao (Beijing University of Chinese Medicine), Leiming You (0000-0002-8120-8916, Beijing University of Chinese Medicine), Antony Stalin (0000-0002-2929-5936, University of Electronic Science and Technology of China), Meilin Chen (0009-0002-6245-0851, Beijing University of Chinese Medicine), Jiaqi Li (0000-0001-8198-5160, Beijing University of Chinese Medicine), Yingying Tan (0000-0002-6568-1949, Beijing University of Chinese Medicine), Zhishan Wu (0009-0006-1005-6958, Beijing University of Chinese Medicine), Libo Geng (Guizhou Magic Pharmaceutical (China)), Zhiqi Li (0000-0002-7041-0748, Beijing University of Chinese Medicine), Qiqi Fan (0000-0002-6386-491X, Beijing University of Chinese Medicine), Pengyun Liu (0009-0008-9310-1412, Beijing University of Chinese Medicine), Yifan Lin (0000-0002-1806-9167, Beijing University of Chinese Medicine), Chongjun Zhao (0000-0003-4504-0084, Beijing University of Chinese Medicine, corresponding author), Jiarui Wu (0000-0001-6305-1014, Beijing University of Chinese Medicine, corresponding author)
Year2024
Volume319
IssuePt 2
Pages117209
Publication date2024-01-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueJournal of Ethnopharmacology (JOURNAL)
Journal identifiersISSN: 0378-8741 • E-ISSN: 1872-7573
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.jep.2023.117209
PMID37757991
OpenAlexW4387026558
LanguageEN
References cited75

ETHNOPHARMACOLOGICAL RELEVANCE: Aidi injection (ADI) is a popular anti-tumor Chinese patent medicine, widely used in clinics for the treatment of hepatocellular carcinoma (HCC) with remarkable therapeutic effects through multiple targets and pathways. However, the scientific evidence of the synergistic role of the complex chemical component system and the potential mechanism for treating diseases are ignored and remain to be elucidated. AIM OF THE STUDY: This study aimed to elucidate and verify the cooperative association between the potential active ingredient of ADI, which is of significance to enlarge our understanding of its anti-HCC molecular mechanisms. MATERIALS AND METHODS: Firstly, the anti-HCC effect of ADI was evaluated in various HCC cells and the zebrafish xenograft model. Subsequently, a variety of bioinformatic technologies, including network pharmacology, weighted gene co-expression network analysis (WGCNA), meta-analysis of gene expression profiles, and pathway enrichment analysis were performed to construct the competitive endogenous RNA (ceRNA) network of ADI intervention in HCC and to establish the relationship between the critical targets/pathways and the key corresponding components, which were involved in ADI against HCC in a synergistic way and were validated by molecular biology experiments. RESULTS: ADI exerted remarkable anti-HCC in vitro cells and in vivo zebrafish model, especially that the Hep 3B2.1-7 cell showed substantial sensibility to ADI. The ceRNA network revealed that the EGFR/PI3K/AKT signaling pathway was identified as the promising pathway. Furthermore, the meta-analysis also demonstrated the critical role of BIRC5 and FEN1 as key targets. Finally, the synergistic effect of ADI was revealed by discovering the inhibitory effect of cantharidin on BIRC5, formononetin on FEN1 and EGFR, as well as isofraxidin on EGFR. CONCLUSION: Our study unveiled that the incredible protective effect of ADI on HCC resulted from the synergistic inhibition effect of cantharidin, formononetin, and isofraxidin on multiple targets/pathways, including BIRC5, FEN1, and EGFR/PI3K/AKT, respectively, providing a scientific interpretation of ADI against HCC and a typical example of pharmacodynamic evaluation of other proprietary Chinese patent medicine

Biology · Cancer · Cell · Cell cycle · Computational biology · Hepatocellular carcinoma · Lapatinib · PI3K/AKT/mTOR pathway · Signal transduction · Trastuzumab · Beetle Biology and Toxicology Studies · Histone Deacetylase Inhibitors Research · Natural Compounds in Disease Treatment · Biochemistry · Cancer Research · Genetics · Pharmacology

  • ClusterProfiler

    Open Access•Guangchuang Yu, Li-Gen Wang et al.•OMICS: A Journal of Integrative…•2012

  • Chinese patent medicine Aidi injection for cancer care

    Open Access•Ming Yang, Chen Shen et al.•Journal of Ethnopharmacology•2022

  • Aidi injection induces apoptosis of hepatocellular carcinoma cells through the mitochondrial pathway

    Open Access•Hai-Yue Lan, Pei An et al.•Journal of Ethnopharmacology•2021

Citation velocityhistorical
Highly citedNo

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