Identification of biological significance of different stages of varicose vein development based on mRNA sequencing

Abstract Normal veins could develop to varicose vein (VV) by some risk factors, and might further progress to shallow vein thrombosis (SVT). However, the molecular mechanism of key genes associated with the progression and regression of VV are still not thorough enough. In this study, the healthy co...

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Published in:Scientific Reports
Main Authors: Meng-Jie Shi, Yan Yan, Fei Liu, Jin-Xing zhao, Feng Hou, Shi-Cai He, Rui-Peng Zhang, Hui Wang
Format: Article
Language:English
Published: Nature Portfolio 2024-09-01
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Online Access:https://doi.org/10.1038/s41598-024-73691-3
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author Meng-Jie Shi
Yan Yan
Fei Liu
Jin-Xing zhao
Feng Hou
Shi-Cai He
Rui-Peng Zhang
Hui Wang
author_facet Meng-Jie Shi
Yan Yan
Fei Liu
Jin-Xing zhao
Feng Hou
Shi-Cai He
Rui-Peng Zhang
Hui Wang
author_sort Meng-Jie Shi
collection DOAJ
container_title Scientific Reports
description Abstract Normal veins could develop to varicose vein (VV) by some risk factors, and might further progress to shallow vein thrombosis (SVT). However, the molecular mechanism of key genes associated with the progression and regression of VV are still not thorough enough. In this study, the healthy control (HC), VV, and SVT vascular samples were collected for transcriptome sequencing. The differentially expressed genes (DEGs) were screened by “DESeq2”, including DEGs1 (HC vs. VV), DEGs2 (HC vs. SVT) and DEGs3 (VV vs. SVT). And their functional enrichment analyses were conducted by “ClusterProfiler”. The receiver operating characteristic (ROC) curve was used to obtain the key genes (KGs) of the pathogenesis of VV and SVT. The qRT-PCR assay was performed to validate the expressions of KGs. Immune cell infiltration analyses were conducted based on ssGSEA method. The competitive endogenous RNAs (ceRNAs) regulatory network was constructed. The target drugs of KGs were predicted using DrugBank database. The biofunctions of DACT3 were further investigated through a series of experiments in vitro. All of these DEGs were associated with inflammation and immunity related functions. Immune cell infiltration was significantly different between VV and SVT. Six key genes including PLP2, DACT3, LRRC25, PILRA, MSX1 and APOD that were associated with the progression and regression of VV were screened. The expression of LRRC25 and PILRA was significantly negatively associated with central memory T cell, and significantly positively associated with B cell. Besides, XIST was the critical regulator of multiple KGs. Cimetidine was potential drug for VV and SVT therapy. Overexpression of DACT3 significantly inhibited the proliferation and migration of vascular smooth muscle cells (VSMCs), and affected their cell cycle and phenotypic transition. This study identified six key genes associated with the progression and regression of VV. Among them, DACT3 was proved to hinder VV progression. These findings may help to deepen understanding its underlying mechanisms.
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spelling doaj-art-19dcd802a85b4ff4b9960b9b62d0e82e2025-08-19T23:11:11ZengNature PortfolioScientific Reports2045-23222024-09-0114111510.1038/s41598-024-73691-3Identification of biological significance of different stages of varicose vein development based on mRNA sequencingMeng-Jie Shi0Yan Yan1Fei Liu2Jin-Xing zhao3Feng Hou4Shi-Cai He5Rui-Peng Zhang6Hui Wang7Department of Vascular Surgery, Shaanxi Provincial People’s HospitalDepartment of Vascular Surgery, Shaanxi Provincial People’s HospitalDepartment of Vascular Surgery, Shaanxi Provincial People’s HospitalDepartment of Vascular Surgery, Shaanxi Provincial People’s HospitalDepartment of Vascular Surgery, Shaanxi Provincial People’s HospitalDepartment of Vascular Surgery, Shaanxi Provincial People’s HospitalDepartment of Vascular Surgery, Shaanxi Provincial People’s HospitalDepartment of Vascular Surgery, Shaanxi Provincial People’s HospitalAbstract Normal veins could develop to varicose vein (VV) by some risk factors, and might further progress to shallow vein thrombosis (SVT). However, the molecular mechanism of key genes associated with the progression and regression of VV are still not thorough enough. In this study, the healthy control (HC), VV, and SVT vascular samples were collected for transcriptome sequencing. The differentially expressed genes (DEGs) were screened by “DESeq2”, including DEGs1 (HC vs. VV), DEGs2 (HC vs. SVT) and DEGs3 (VV vs. SVT). And their functional enrichment analyses were conducted by “ClusterProfiler”. The receiver operating characteristic (ROC) curve was used to obtain the key genes (KGs) of the pathogenesis of VV and SVT. The qRT-PCR assay was performed to validate the expressions of KGs. Immune cell infiltration analyses were conducted based on ssGSEA method. The competitive endogenous RNAs (ceRNAs) regulatory network was constructed. The target drugs of KGs were predicted using DrugBank database. The biofunctions of DACT3 were further investigated through a series of experiments in vitro. All of these DEGs were associated with inflammation and immunity related functions. Immune cell infiltration was significantly different between VV and SVT. Six key genes including PLP2, DACT3, LRRC25, PILRA, MSX1 and APOD that were associated with the progression and regression of VV were screened. The expression of LRRC25 and PILRA was significantly negatively associated with central memory T cell, and significantly positively associated with B cell. Besides, XIST was the critical regulator of multiple KGs. Cimetidine was potential drug for VV and SVT therapy. Overexpression of DACT3 significantly inhibited the proliferation and migration of vascular smooth muscle cells (VSMCs), and affected their cell cycle and phenotypic transition. This study identified six key genes associated with the progression and regression of VV. Among them, DACT3 was proved to hinder VV progression. These findings may help to deepen understanding its underlying mechanisms.https://doi.org/10.1038/s41598-024-73691-3Varicose veinShallow vein thrombosisGene regulationFunctionImmune
spellingShingle Meng-Jie Shi
Yan Yan
Fei Liu
Jin-Xing zhao
Feng Hou
Shi-Cai He
Rui-Peng Zhang
Hui Wang
Identification of biological significance of different stages of varicose vein development based on mRNA sequencing
Varicose vein
Shallow vein thrombosis
Gene regulation
Function
Immune
title Identification of biological significance of different stages of varicose vein development based on mRNA sequencing
title_full Identification of biological significance of different stages of varicose vein development based on mRNA sequencing
title_fullStr Identification of biological significance of different stages of varicose vein development based on mRNA sequencing
title_full_unstemmed Identification of biological significance of different stages of varicose vein development based on mRNA sequencing
title_short Identification of biological significance of different stages of varicose vein development based on mRNA sequencing
title_sort identification of biological significance of different stages of varicose vein development based on mrna sequencing
topic Varicose vein
Shallow vein thrombosis
Gene regulation
Function
Immune
url https://doi.org/10.1038/s41598-024-73691-3
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