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Updated: Sep 13, 2025

Network Pharmacology Prediction and Experimental Validation of Trichosanthes-Fritillaria thunbergii Action Mechanism Against Lung Adenocarcinoma
Published on: March 3, 2023
Investigation on the antitumor effects of fisetin extracted from Hedyotis diffusea willd based on network
Huanchen Yao1, Dayang Wang1, Jiashuo Ye1
1College of Materials Science and Engineering, College of Chemistry and Chemical Engineering, College of Life Sciences, Institute of Biomedical Materials and Engineering, Qingdao University, Qingdao, 266071, China.
Ethnopharmacological Relevance:
Lung cancer is a common respiratory cancer worldwide, which seriously threatens people's lives. The current treatment of lung cancer is not satisfactory. Traditional Chinese medicine records that Hedyotis diffusa Willd (HDW) has effects that include clearing heat and detoxifying, promoting diuresis and dehumidification, relieving pain and resolving masses, and exhibiting anti-cancer properties. It has shown extraordinary therapeutic value in the clinical practice of traditional Chinese medicine. It is commonly used to treat various tumors, inflammation, and other diseases.
Aim Of The Study:
The purpose of this experiment is to isolate the components with anti-lung cancer effects from HDW and to explore its anti-lung cancer effect and mechanism through network pharmacology and in vitro cell experiments in order to find more effective and less side effects-anticancer drugs.
Materials And Methods:
We used ethanol to extract HDW preliminarily and then used ethyl acetate, n-butanol, petroleum ether, and water to extract it, obtaining the ethyl acetate fraction with the highest inhibition rate on lung cancer H1299 cells. The silica gel column purification, TOF, and nuclear magnetic resonance analysis yielded the Fisetin, which has an inhibitory effect on H1299 cells. The mechanism and application of Fisetin in inhibiting lung cancer were explored by network pharmacology and in vitro cell experiments.
Results:
Using network pharmacology to explore the mechanism of Fisetin inhibiting lung cancer, 115 Fisetin targets, and 26,857 lung cancer targets were obtained, and 90 GO functions and 19 KEGG pathways were obtained (P < 0.01). Molecular docking results demonstrated that target protein-drug binding was stable. Afterward, the toxicity of Fisetin to H1299 cells was verified by in vitro cell experiments. MTT, live-dead staining, and confocal microscopy all showed that Fisetin had a good inhibitory effect on H1299 cells and had good cell compatibility. Through Western blot analysis, Fisetin can reduce the protein content of PI3K, MTOR, HIF1A and VEGFA. And it can reduce the mRNA expression levels of HIF1A and VEGFA. Moreover, Fisetin can also increase the expression of tumor suppressor molecule PTEN protein and mRNA in H1299 cells.
Conclusions:
Fisetin and HDW can successfully stop lung cancer H1299 cells from growing. The mechanism of Fisetin may be related to the inhibition of PI3K/MTOR/HIF1A/VEGFA signaling pathway.
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