Pathological Change and Whole Transcriptome Alternation Caused by ePTFE Implantation in Myocardium

Expanded polytetrafluoroethylene (ePTFE) is commonly used in cardiovascular surgery, but usually causes postoperation complications. Although great efforts have been done to relieve these complications or to understand their mechanism, there are no applicable strategies available and no understandin...

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Main Authors: Yaping Shan, Wenbo Zhang, Gang Chen, Qiqi Shi, Yaping Mi, Huifeng Zhang, Bing Jia
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:BioMed Research International
Online Access:http://dx.doi.org/10.1155/2021/5551207
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spelling doaj-e2973da9918b4ee684977d78dc24b1822021-06-28T01:51:33ZengHindawi LimitedBioMed Research International2314-61412021-01-01202110.1155/2021/5551207Pathological Change and Whole Transcriptome Alternation Caused by ePTFE Implantation in MyocardiumYaping Shan0Wenbo Zhang1Gang Chen2Qiqi Shi3Yaping Mi4Huifeng Zhang5Bing Jia6Department of Cardiovascular CenterDepartment of Cardiovascular CenterDepartment of Cardiovascular CenterDepartment of Cardiovascular CenterDepartment of Cardiovascular CenterDepartment of Cardiovascular CenterDepartment of Cardiovascular CenterExpanded polytetrafluoroethylene (ePTFE) is commonly used in cardiovascular surgery, but usually causes postoperation complications. Although great efforts have been done to relieve these complications or to understand their mechanism, there are no applicable strategies available and no understanding mechanisms, especially in the myocardium. Here, ePTFE membranes are implanted into the right ventricular outflow tract of rabbits, and the implant-related myocardium is dissected and analyzed by histology and transcriptome sequencing. ePTFE implantation causes myocardium inflammation and fibrosis. There are 1867 differently expressed mRNAs (DEmRNAs, 1107 upregulated and 760 downregulated) and 246 differently expressed lncRNAs (DElncRNAs, 110 upregulated and 136 downregulated) identified. Bioinformatic analysis indicates that the upregulated DEmRNAs and DElncRNAs are mainly involved in inflammatory, immune responses, and extracellular matrix remodeling, while the downregulated DEmRNAs and DElncRNAs are predominantly functioned in the metabolism and cardiac remodeling. Analysis of coexpression and regulatory relationship of DEmRNAs and DElncRNAs reveals that most DElncRNAs are trans-regulated on the relevant DEmRNAs. In conclusion, ePTFE implantation causes severe myocardial tissue damages and alters the transcriptome profiles of the myocardium. Such novel data may provide a landscape of mechanisms underlying the adverse reactions caused by ePTFE implantation and uncover new therapeutic targets for inhibiting the ePTFE-related complications.http://dx.doi.org/10.1155/2021/5551207
collection DOAJ
language English
format Article
sources DOAJ
author Yaping Shan
Wenbo Zhang
Gang Chen
Qiqi Shi
Yaping Mi
Huifeng Zhang
Bing Jia
spellingShingle Yaping Shan
Wenbo Zhang
Gang Chen
Qiqi Shi
Yaping Mi
Huifeng Zhang
Bing Jia
Pathological Change and Whole Transcriptome Alternation Caused by ePTFE Implantation in Myocardium
BioMed Research International
author_facet Yaping Shan
Wenbo Zhang
Gang Chen
Qiqi Shi
Yaping Mi
Huifeng Zhang
Bing Jia
author_sort Yaping Shan
title Pathological Change and Whole Transcriptome Alternation Caused by ePTFE Implantation in Myocardium
title_short Pathological Change and Whole Transcriptome Alternation Caused by ePTFE Implantation in Myocardium
title_full Pathological Change and Whole Transcriptome Alternation Caused by ePTFE Implantation in Myocardium
title_fullStr Pathological Change and Whole Transcriptome Alternation Caused by ePTFE Implantation in Myocardium
title_full_unstemmed Pathological Change and Whole Transcriptome Alternation Caused by ePTFE Implantation in Myocardium
title_sort pathological change and whole transcriptome alternation caused by eptfe implantation in myocardium
publisher Hindawi Limited
series BioMed Research International
issn 2314-6141
publishDate 2021-01-01
description Expanded polytetrafluoroethylene (ePTFE) is commonly used in cardiovascular surgery, but usually causes postoperation complications. Although great efforts have been done to relieve these complications or to understand their mechanism, there are no applicable strategies available and no understanding mechanisms, especially in the myocardium. Here, ePTFE membranes are implanted into the right ventricular outflow tract of rabbits, and the implant-related myocardium is dissected and analyzed by histology and transcriptome sequencing. ePTFE implantation causes myocardium inflammation and fibrosis. There are 1867 differently expressed mRNAs (DEmRNAs, 1107 upregulated and 760 downregulated) and 246 differently expressed lncRNAs (DElncRNAs, 110 upregulated and 136 downregulated) identified. Bioinformatic analysis indicates that the upregulated DEmRNAs and DElncRNAs are mainly involved in inflammatory, immune responses, and extracellular matrix remodeling, while the downregulated DEmRNAs and DElncRNAs are predominantly functioned in the metabolism and cardiac remodeling. Analysis of coexpression and regulatory relationship of DEmRNAs and DElncRNAs reveals that most DElncRNAs are trans-regulated on the relevant DEmRNAs. In conclusion, ePTFE implantation causes severe myocardial tissue damages and alters the transcriptome profiles of the myocardium. Such novel data may provide a landscape of mechanisms underlying the adverse reactions caused by ePTFE implantation and uncover new therapeutic targets for inhibiting the ePTFE-related complications.
url http://dx.doi.org/10.1155/2021/5551207
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