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Exploring potential targets of HPV&BC based on network pharmacology and urine proteomics

蛋白质组学 尿 化学 MMP9公司 CXCR4型 药理学 癌症研究 基因 生物 受体 下调和上调 生物化学 趋化因子
作者
Shun Wan,Kunpeng Li,Chenyang Wang,Siyu Chen,Jinlong Cao,Jianwei Yang,Huabin Wang,Xiaoran Li,Yang Li
出处
期刊:Journal of Pharmaceutical and Biomedical Analysis [Elsevier]
卷期号:236: 115694-115694
标识
DOI:10.1016/j.jpba.2023.115694
摘要

Bladder cancer (BC) caused by Human papillomavirus (HPV) infection remains a complex public health problem in developing countries. Although the HPV vaccine effectively prevents HPV infection, it does not benefit patients with BC who already have HPV.Firstly, the differential genes of HPV-related BC patients were screened by transcriptomics, and then the prognostic and clinical characteristics of the differential genes were analyzed to screen out the valuable protein signatures. Furthermore, the compound components and targets of Astragali Radix (AR) were analyzed by network pharmacology, and the intersection targets of drug components and HPV_BC were screened out for pathway analysis. In addition, the binding ability of the compound to the Astragali-HPV_BC target was verified by molecular docking and virtual simulation. Finally, to identify potential targets in BC patients through urine proteomics and in vitro experiments.Eleven HPV_BC-related protein signatures were screened out, among which high expression of EGFR, CTNNB1, MYC, GSTM1, MMP9, CXCR4, NOTCH1, JUN, CXCL12, and KRT14 had a poor prognosis, while low expression of CASP3 had a poor prognosis. In the analysis of clinical characteristics, it was found that high-risk scores, EGFR, MMP9, CXCR4, JUN, and CXCL12 tended to have higher T stage, pathological stage, and grade. Pharmacological and molecular docking analysis identified a natural component of AR (Quercetin) and it corresponding core targets (EGFR). The OB of the natural component was 46.43, and the DL was 0.28, respectively. In addition, EGFR-Quercetin has high affinity. Urine proteomics and RT-PCR showed that EGFR was expressed explicitly in BC patients. Mechanism analysis revealed that AR component targets might affect HPV_BC patients through Proteoglycans in the cancer pathway.AR can target EGFR through its active component (Quercetin), and has a therapeutic effect on HPV_BC patients.
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