Network pharmacology and molecular docking reveal the mechanism of Scopoletin against non-small cell lung cancer

Scopoletin is a natural anticarcinogenic and antiviral coumarin component. Many studies have proved its anti-cancer effect, and after the preliminary screening of this study, Scopoletin had the best inhibitory effect on Non-small cell lung cancer (NSCLC). But its mechanism for treating NSCLC is stil...

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Veröffentlicht in:Life sciences (1973) 2021-04, Vol.270, p.119105-119105, Article 119105
Hauptverfasser: Yuan, Chong, Wang, Meng-Heng, Wang, Fei, Chen, Peng-Yu, Ke, Xin-Ge, Yu, Bing, Yang, Yan-Fang, You, Peng-Tao, Wu, He-Zhen
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Sprache:eng
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Zusammenfassung:Scopoletin is a natural anticarcinogenic and antiviral coumarin component. Many studies have proved its anti-cancer effect, and after the preliminary screening of this study, Scopoletin had the best inhibitory effect on Non-small cell lung cancer (NSCLC). But its mechanism for treating NSCLC is still unclear. Therefore, network pharmacology and molecular docking technology were used to explore the potential anti-NSCLC targets and pathways of Scopoletin. The results were verified in vitro. First, Scopoletin was isolated from Fennel and screened to conduct cell proliferation assay on Human lung cancer cell line A549, Human colon cancer cell line HCT-116 and Human hepatoma cell line HepG2 respectively, through the MTT test. Then, the key targets and related pathways were screened through Protein-protein Interaction (PPI) network and “component-target-pathway” (C-TP) network constructed by network pharmacology. And the key targets were selected to dock with Scopoletin via molecular docking. A549 and Human normal lung epithelial cell BEAS-2B were used to verify the results, finally. Through MTT, A549 was chosen as the test cancer cell. From network pharmacology, 16 targets, 27 signaling pathways and 16 GO items were obtained (P 
ISSN:0024-3205
1879-0631
DOI:10.1016/j.lfs.2021.119105