Feedback

Potential pharmacological mechanisms of tanshinone IIA in the treatment of human neuroblastoma based on network pharmacological and molecular docking Technology

Affiliation
Department of Integrative Medicine ,Liaoning University of Traditional Chinese Medicine Xinglin College ,Shenyang ,China
Tang, Ning;
Affiliation
Department of Integrative Medicine ,Dalian Medical University ,Dalian ,China
Wang, Yan;
Affiliation
Department of Acupuncture and Massage ,Liaoning University of Traditional Chinese Medicine Xinglin College ,Shenyang ,China
Miao, Jiarui;
Affiliation
Department of Integrative Medicine ,Liaoning University of Traditional Chinese Medicine Xinglin College ,Shenyang ,China
Zhao, Yang;
Affiliation
Department of Integrative Medicine ,Liaoning University of Traditional Chinese Medicine Xinglin College ,Shenyang ,China
Cao, Yue;
Affiliation
Department of Acupuncture and Massage ,Liaoning University of Traditional Chinese Medicine Xinglin College ,Shenyang ,China
Sun, Wentao;
Affiliation
Department of Integrative Medicine ,Liaoning University of Traditional Chinese Medicine Xinglin College ,Shenyang ,China
Zhang, Jingke;
Affiliation
Department of Integrative Medicine ,Dalian Medical University ,Dalian ,China
Sui, Hua;
Affiliation
Department of Integrative Medicine ,Liaoning University of Traditional Chinese Medicine Xinglin College ,Shenyang ,China
Li, Bing

Tanshinone IIA (Tan-IIA) is the main bioactive component of Chinese herbal medicine salvia miltiorrhiza (Danshen). Sodium sulfonate of Tan-IIA is widely used in the treatment of cardiovascular and cerebrovascular diseases. Tan-IIA also has inhibitory effects on tumor cells such as gastric cancer, but its therapeutic effect and mechanism on human neuroblastoma have not been evaluated, so its pharmacological mechanism is systematically evaluated by the combined method of network pharmacology and molecular docking. PharmMapper and SwissTargetPrediction predicted 331 potential Tan-IIA-related targets, and 1,152 potential neuroblastoma-related targets were obtained from GeneCards, DisGeNET, DrugBank, OMIM and Therapeutic Target databases (TTD), 107 common targets for Tan-IIA and neuroblastoma. Through gene ontology (GO) functional annotation, Kyoto Encyclopedia of Genes and Genomesa (KEGG) pathway enrichment, protein-protein interaction (PPI) network and cytoHubba plug-in, 10 related signal pathways (Pathways in cancer, PI3K-Akt signaling pathway, Prostate cancer, etc.) and 10 hub genes were identified. The results of molecular docking showed that Tan-IIA could interact with 10 targets: GRB2, SRC, EGFR, PTPN1, ESR1, IGF1, MAPK1, PIK3R1, AKT1 and IGF1R. This study analyzed the related pathways and targets of Tan-IIA in the treatment of human neuroblastoma, as well as the potential anticancer and anti-tumor targets and related signaling pathways of Tan-IIA, which provides a reference for us to find and explore effective drugs for the treatment of human neuroblastoma.

Cite

Citation style:
Could not load citation form.

Access Statistic

Total:
Downloads:
Abtractviews:
Last 12 Month:
Downloads:
Abtractviews:

Rights

License Holder: Copyright © 2024 Tang, Wang, Miao, Zhao, Cao, Sun, Zhang, Sui and Li.

Use and reproduction: