Exploring the hub genes and mechanisms of Daphne altaica. treating esophageal squamous cell carcinoma based on Network Pharmacology and Bioinformatics Analysis

Author:

Hailati Sendaer1,Talihati Ziruo1,Abudurousuli Kayisaier1,Han Meng1,Nuer Muhadaisi1,Khan Nawaz1,Maihemuti Nulibiya1,Simayi Jimilihan1,Dilimulati Dilihuma1,nueraihemaiti Nuerbiye1,Zhou Wenting1

Affiliation:

1. Xinjiang Medical University

Abstract

Abstract Purpose Esophageal squamous cell carcinoma (ESCC), is a frequent digestive tract malignant carcinoma with a high fatality rate. Daphne altaica. (D. altaica), a medicinal plant that is frequently employed in Kazakh traditional medicine, and which has traditionally been used to cure cancer and respiratory conditions, but research on the mechanism is lacking. Therefore, we examined and verified the hub genes and mechanism of D. altaica treating ESCC.Methods Active compounds and targets of D. altaica were screened by databases such as TCMSP, and ESCC targets were screened by databases such as GeneCards and constructed the compound-target network and PPI network. Meantime, datasets between tissues and adjacent non-cancerous tissues from GEO database (GSE100942, GPL570) were analyzed to obtain DEGs using the limma package in R. Hub genes were validated using data from the Kaplan-Meier plotter database, TIMER2.0 and GEPIA2 databases. Finally, AutoDock software was used to predict the binding sites through molecular docking.Results In total, 830 compound targets were obtained from TCMSP and other databases. And 17710 disease targets were acquired based on GeneCards and other databases. And we constructed the compound-target network and PPI network. Then, 127 DEGs were observed (82 up-regulated and 45 down-regulated genes). Hub genes were screened including TOP2A, NUF2, CDKN2A, BCHE, and NEK2, and had been validated with the help of several publicly available databases. Finally, molecular docking results showed more stable binding between five hub genes and active compounds .Conclusions In the present study, five hub genes were screened and validated, and potential mechanisms of action were predicted, which could provide a theoretical understanding of the treatment of ESCC with D. altaica.

Publisher

Research Square Platform LLC

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