New mechanisms and biomarkers of lymph node metastasis in cervical cancer: reflections from plasma proteomics

Author:

Han Sai,Liu Xiaoli,Ju Shuang,Mu Wendi,Abulikemu Gulijinaiti,Zhen Qianwei,Yang Jiaqi,Zhang Jingjing,Li Yi,Liu Hongli,Chen Qian,Cui Baoxia,Wu Shuxia,Zhang Youzhong

Abstract

Abstract Objective Lymph node metastasis (LNM) and lymphatic vasculature space infiltration (LVSI) in cervical cancer patients indicate a poor prognosis, but satisfactory methods for diagnosing these phenotypes are lacking. This study aimed to find new effective plasma biomarkers of LNM and LVSI as well as possible mechanisms underlying LNM and LVSI through data-independent acquisition (DIA) proteome sequencing. Methods A total of 20 cervical cancer plasma samples, including 7 LNM-/LVSI-(NC), 4 LNM-/LVSI + (LVSI) and 9 LNM + /LVSI + (LNM) samples from a cohort, were subjected to DIA to identify differentially expressed proteins (DEPs) for LVSI and LNM. Subsequently, Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses were performed for DEP functional annotation. Protein–protein interaction (PPI) and weighted gene coexpression network analysis (WGCNA) were used to detect new effective plasma biomarkers and possible mechanisms. Results A total of 79 DEPs were identified in the cohort. GO and KEGG analyses showed that DEPs were mainly enriched in the complement and coagulation pathway, lipid and atherosclerosis pathway, HIF-1 signal transduction pathway and phagosome and autophagy. WGCNA showed that the enrichment of the green module differed greatly between groups. Six interesting core DEPs (SPARC, HPX, VCAM1, TFRC, ERN1 and APMAP) were confirmed to be potential plasma diagnostic markers for LVSI and LNM in cervical cancer patients. Conclusion Proteomic signatures developed in this study reflected the potential plasma diagnostic markers and new possible pathogenesis mechanisms in the LVSI and LNM of cervical cancer.

Funder

the Natural and Science Foundation Youth Project of Shandong Province

Clinical research fund of Shandong Medical Association - Qilu Special Project

National Natural Science Foundation of China

The second batch of science and technology planning projects of Jinan Health Commission in 2020

the Jinan City “20 New Universities” independent innovation group

Shandong Provincial Key R&D Program

Publisher

Springer Science and Business Media LLC

Subject

Clinical Biochemistry,Molecular Biology,Molecular Medicine,Clinical Biochemistry,Molecular Biology,Molecular Medicine

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