Network-Pharmacology-Based Study on Active Phytochemicals and Molecular Mechanism of Cnidii Fructus in Treating Colorectal Cancer

Author:

Wei Zhihui1,zhang Xiaoyun2,Peng Antang3,Liu Chenxu4,zhang yajing4,Duan Xuhong4,Pang Jianying4

Affiliation:

1. China Pharmaceutical University School of Pharmacy Nanjing China

2. Hebei University of Chinese Medicine College of Integrated Chinese and Western Medicine Shijiazhuang China

3. Shijiazhuang Fourth Hospital The Traditional Chinese Medicine Hospital of Shijiazhuang Shijiazhuang China

4. Hebei University of Chinese Medicine College of Pharmacy Shijiazhuang China

Abstract

Aims: Cnidii Fructus (CF) is known for its antibacterial, anti-inflammatory, and antitumor properties, as well as its activities against kidney deficiency and impotence. In this study, we aimed to explore the anti-CRC cancer effect and molecular mechanism of CF via network pharmacology and in vitro antitumor experiments. background: Traditional Chinese medicine (TCM) has played an important role in tumor treatment.CF have coumarins and volatile oils. Modern pharmacological studies demonstrated that these active components have significant efficacy against tumors, including liver cancer, adrenal tumor, and anti-ovarian cancer. However, the anti-colorectal effect of CF are unexplored. Methods: Network pharmacology was used to investigate the anti-CRC mechanism of CF. First, a series of databases was used to screen the active phytochemical targets and anti-CRC core targets. Then, the GO and KEGG pathways were analyzed to predict possible mechanisms. Molecular docking analysis explore core targets-phytochemicals interactions. In vitro antitumor experiments were carried on verifying anti-CRC mechanism of CF. objective: Cnidii Fructus (CF) is known for its antibacterial, anti-inflammatory, and antitumor properties, as well as its activities against kidney deficiency and impotence. In this study, we aimed to explore the anti--CRC cancer effect and molecular mechanism of CF via network pharmacology and in vitro antitumor experiments. Results: In this study, 20 active ingredient targets and 50 intersecting targets were analyzed by Cytoscape software 3.9.1 to obtain the core genes and phytochemicals. Then, the GO and KEGG pathways of 50 intersecting targets were analyzed to predict possible mechanisms. The results from GO and KEGG indicated that CF has significant antitumor efficacy, which involves many signaling pathways, such as PI3K/AKT and p53. The five core targets and five core phytochemicals were screened for molecular docking to show protein-ligand interactions. According to the results of molecular docking, the compound O-acetylcolumbianetin was selected for the anti- CRC functional verification in vitro. MTT assay showed that O-acetylcolumbianetin significantly inhibited the proliferation of colorectal HCT116 cells in a time- and quantity-dependent manner. O-acetylcolumbianetin can promote the expression of CASP3 protein, induce HCT116 cells apoptosis, thus exert anti-CRC effect. method: Network pharmacology were used for investigating the anti-CRC mechanism of CF. First, a series of databases was used to screen the active phytochemicals targets and anti-CRC core targets. Then, the GO and KEGG pathways were analyzed to predict possible mechanisms. Molecular docking analysis explore core targets-phytochemicals interactions. In vitro antitumor experiments were carried on verifying anti-CRC mechanism of CF. Conclusion: This study preliminarily verified the anti-CRC effect and molecular mechanism of CF and provided a reference for Traditional Chinese Medicine anti-tumor subsequent research other: no

Publisher

Bentham Science Publishers Ltd.

Subject

Organic Chemistry,Computer Science Applications,Drug Discovery,General Medicine

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