Potential targets of diosgenin for the treatment of oral squamous cell carcinoma and their bioinformatics and transcriptional profiling analyses

•There were 146 potential targets of diosgenin for OSCC treatment.•The genes such as AKT1, MET1, SRC1, and PTGS2 may be important targets.•Diosgenin significantly inhibited HSC-3 cell activity.•Th expression of the targets was regulated by diosgenin.•Their proteins of targets had a high binding ener...

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Veröffentlicht in:Steroids 2024-05, Vol.205, p.109393-109393, Article 109393
Hauptverfasser: Xiao, Yang, Xu, Bingbing, Li, Xiaolan, Ding, Tianhao, Zhao, Wenxin, Nie, Xiaoxue, Mu, Junxia, Xiao, Zhiyou, Wang, Qian, Ren, Qunli, Zhang, Enkui
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Sprache:eng
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Zusammenfassung:•There were 146 potential targets of diosgenin for OSCC treatment.•The genes such as AKT1, MET1, SRC1, and PTGS2 may be important targets.•Diosgenin significantly inhibited HSC-3 cell activity.•Th expression of the targets was regulated by diosgenin.•Their proteins of targets had a high binding energy with diosgenin. Diosgenin can inhibit the proliferation and cause apoptosis of various tumor cells, and its inhibitory effect on oral squamous cell carcinoma (OSCC) and its mechanism are still unclear. In this study, we predicted the targets of diosgenin for the treatment of OSCC through the database, then performed bioinformatics analysis of the targets, and further verified the effect of diosgenin on the activity of OSCC cell line HSC-3, the transcriptional profile of the targets and the molecular docking of the targets with diosgenin. The results revealed that there were 146 potential targets of diosgenin for OSCC treatment, which involved signaling pathways such as Ras, TNF, PI3K-AKT, HIF, NF-κB, and could regulate cellular activity through apoptosis, autophagy, proliferation and differentiation, inflammatory response, DNA repair, etc. Diosgenin significantly inhibited HSC-3 cell activity. The genes such as AKT1, MET1, SRC1, APP1, CCND1, MYC, PTGS2, AR, NFKB1, BIRC2, MDM2, BCL2L1, MMP2, may be important targets of its action, not only their expression was regulated by diosgenin but also their proteins had a high binding energy with diosgenin. These results suggest that diosgenin may have a therapeutic effect on OSCC through AKT1, MMP2 and other targets and multiple signaling pathways, which is of potential clinical value.
ISSN:0039-128X
1878-5867
DOI:10.1016/j.steroids.2024.109393