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Network Pharmacology Prediction and Experimental Validation of Trichosanthes-Fritillaria thunbergii Action Mechanism Against Lung Adenocarcinoma
Published on: March 3, 2023
Decoding potential targets and pharmacologic mechanisms of curcumin in treating non-small cell lung carcinoma via
Jie Li1,2, Zhen Zhang3, Junchang Zhao4
1Department of Pharmacy, West China Second University Hospital, Sichuan University, Chengdu, China.
Abstract:
Emerging evidence demonstrates that curcumin has an inhibitory effect on non-small cell lung cancer (NSCLC), and its targets and mechanism of action need further exploration. The goal of this study was to explore the potential targets and mechanism of curcumin against NSCLC by network pharmacology, bioinformatics, and experimental validation, thereby providing more insight into combination treatment with curcumin for NSCLC in preclinical and clinical research. Curcumin targets against NSCLC were predicted based on HIT2.0, STD, CTD, and DisGeNET, and the core targets were analyzed via protein-protein interaction network construction (PPI), Gene Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG), and molecular docking. The gene expression levels of samples in A549 cells, NCI-H460, and curcumin treated groups were detected by real-time quantitative PCR. A total of 67 common targets between curcumin and NSCLC were collected by screening public databases. GO and KEGG analysis suggested that curcumin treatment of NSCLC mainly involves cancer-related pathways, such as PI3K-AKT signaling pathway, Foxo signaling pathway, microRNAs, MAPK signaling pathway, HIF-1 signaling pathway, etc. The targets with the highest degree were identified through the PPI network, namely CASP3, CTNNB1, JUN, IL6, MAPK3, HIF1A, STAT3, AKT1, TP53, CCND1, VEGFA, and EGFR. The results of the in vitro experiments showed that curcumin treatment of NSCLC down-regulated the gene expressions of CCND1, CASP3, HIF1A, IL-6, MAPK3, STAT3, AKT1, and TP53. Our findings revealed that curcumin functions as a potential therapeutic candidate for NSCLC by suppressing multiple signaling pathways and interacting with multiple gene targets.
Insights
Curcumin shows promise in inhibiting non-small cell lung cancer (NSCLC) by targeting multiple pathways. This study identified key molecular targets and confirmed curcumin
Area of Science:
- Oncology
- Pharmacology
- Bioinformatics
Background:
- Non-small cell lung cancer (NSCLC) remains a leading cause of cancer mortality.
- Curcumin, a compound from turmeric, exhibits potential anti-cancer properties.
- The precise mechanisms and targets of curcumin in NSCLC require further elucidation.
Purpose of the Study:
- To investigate the molecular targets and mechanisms of curcumin against NSCLC using integrated network pharmacology, bioinformatics, and experimental validation.
- To provide insights for potential combination therapies involving curcumin in NSCLC research.
Main Methods:
- Curcumin-NSCLC targets were predicted using databases (HIT2.0, STD, CTD, DisGeNET).
- Protein-protein interaction (PPI) network, Gene Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses were performed.
- Molecular docking and real-time quantitative PCR (RT-qPCR) were used for experimental validation.
Main Results:
- 67 common targets between curcumin and NSCLC were identified.
- Curcumin's action on NSCLC involves key cancer pathways including PI3K-AKT, Foxo, MAPK, and HIF-1 signaling.
- Core targets identified via PPI network include CASP3, CTNNB1, JUN, IL6, MAPK3, HIF1A, STAT3, AKT1, TP53, CCND1, VEGFA, and EGFR.
- In vitro experiments confirmed curcumin down-regulates the expression of CCND1, CASP3, HIF1A, IL-6, MAPK3, STAT3, AKT1, and TP53 in NSCLC cells.
Conclusions:
- Curcumin demonstrates therapeutic potential for NSCLC by modulating multiple signaling pathways and interacting with numerous gene targets.
- The findings support curcumin as a candidate for preclinical and clinical investigations in NSCLC treatment strategies.
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