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Temporal Network Based Analysis of Cell Specific Vein Graft Transcriptome Defines Key Pathways and Hub Genes in Implantation Injury

Vein graft failure occurs between 1 and 6 months after implantation due to obstructive intimal hyperplasia, related in part to implantation injury. The cell-specific and temporal response of the transcriptome to vein graft implantation injury was determined by transcriptional profiling of laser capt...

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Autores principales: Bhasin, Manoj, Huang, Zhen, Pradhan-Nabzdyk, Leena, Malek, Junaid Y., LoGerfo, Philip J., Contreras, Mauricio, Guthrie, Patrick, Csizmadia, Eva, Andersen, Nicholas, Kocher, Olivier, Ferran, Christiane, LoGerfo, Frank W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3376111/
https://www.ncbi.nlm.nih.gov/pubmed/22720046
http://dx.doi.org/10.1371/journal.pone.0039123
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author Bhasin, Manoj
Huang, Zhen
Pradhan-Nabzdyk, Leena
Malek, Junaid Y.
LoGerfo, Philip J.
Contreras, Mauricio
Guthrie, Patrick
Csizmadia, Eva
Andersen, Nicholas
Kocher, Olivier
Ferran, Christiane
LoGerfo, Frank W.
author_facet Bhasin, Manoj
Huang, Zhen
Pradhan-Nabzdyk, Leena
Malek, Junaid Y.
LoGerfo, Philip J.
Contreras, Mauricio
Guthrie, Patrick
Csizmadia, Eva
Andersen, Nicholas
Kocher, Olivier
Ferran, Christiane
LoGerfo, Frank W.
author_sort Bhasin, Manoj
collection PubMed
description Vein graft failure occurs between 1 and 6 months after implantation due to obstructive intimal hyperplasia, related in part to implantation injury. The cell-specific and temporal response of the transcriptome to vein graft implantation injury was determined by transcriptional profiling of laser capture microdissected endothelial cells (EC) and medial smooth muscle cells (SMC) from canine vein grafts, 2 hours (H) to 30 days (D) following surgery. Our results demonstrate a robust genomic response beginning at 2 H, peaking at 12–24 H, declining by 7 D, and resolving by 30 D. Gene ontology and pathway analyses of differentially expressed genes indicated that implantation injury affects inflammatory and immune responses, apoptosis, mitosis, and extracellular matrix reorganization in both cell types. Through backpropagation an integrated network was built, starting with genes differentially expressed at 30 D, followed by adding upstream interactive genes from each prior time-point. This identified significant enrichment of IL-6, IL-8, NF-κB, dendritic cell maturation, glucocorticoid receptor, and Triggering Receptor Expressed on Myeloid Cells (TREM-1) signaling, as well as PPARα activation pathways in graft EC and SMC. Interactive network-based analyses identified IL-6, IL-8, IL-1α, and Insulin Receptor (INSR) as focus hub genes within these pathways. Real-time PCR was used for the validation of two of these genes: IL-6 and IL-8, in addition to Collagen 11A1 (COL11A1), a cornerstone of the backpropagation. In conclusion, these results establish causality relationships clarifying the pathogenesis of vein graft implantation injury, and identifying novel targets for its prevention.
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spelling pubmed-33761112012-06-20 Temporal Network Based Analysis of Cell Specific Vein Graft Transcriptome Defines Key Pathways and Hub Genes in Implantation Injury Bhasin, Manoj Huang, Zhen Pradhan-Nabzdyk, Leena Malek, Junaid Y. LoGerfo, Philip J. Contreras, Mauricio Guthrie, Patrick Csizmadia, Eva Andersen, Nicholas Kocher, Olivier Ferran, Christiane LoGerfo, Frank W. PLoS One Research Article Vein graft failure occurs between 1 and 6 months after implantation due to obstructive intimal hyperplasia, related in part to implantation injury. The cell-specific and temporal response of the transcriptome to vein graft implantation injury was determined by transcriptional profiling of laser capture microdissected endothelial cells (EC) and medial smooth muscle cells (SMC) from canine vein grafts, 2 hours (H) to 30 days (D) following surgery. Our results demonstrate a robust genomic response beginning at 2 H, peaking at 12–24 H, declining by 7 D, and resolving by 30 D. Gene ontology and pathway analyses of differentially expressed genes indicated that implantation injury affects inflammatory and immune responses, apoptosis, mitosis, and extracellular matrix reorganization in both cell types. Through backpropagation an integrated network was built, starting with genes differentially expressed at 30 D, followed by adding upstream interactive genes from each prior time-point. This identified significant enrichment of IL-6, IL-8, NF-κB, dendritic cell maturation, glucocorticoid receptor, and Triggering Receptor Expressed on Myeloid Cells (TREM-1) signaling, as well as PPARα activation pathways in graft EC and SMC. Interactive network-based analyses identified IL-6, IL-8, IL-1α, and Insulin Receptor (INSR) as focus hub genes within these pathways. Real-time PCR was used for the validation of two of these genes: IL-6 and IL-8, in addition to Collagen 11A1 (COL11A1), a cornerstone of the backpropagation. In conclusion, these results establish causality relationships clarifying the pathogenesis of vein graft implantation injury, and identifying novel targets for its prevention. Public Library of Science 2012-06-15 /pmc/articles/PMC3376111/ /pubmed/22720046 http://dx.doi.org/10.1371/journal.pone.0039123 Text en Bhasin et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bhasin, Manoj
Huang, Zhen
Pradhan-Nabzdyk, Leena
Malek, Junaid Y.
LoGerfo, Philip J.
Contreras, Mauricio
Guthrie, Patrick
Csizmadia, Eva
Andersen, Nicholas
Kocher, Olivier
Ferran, Christiane
LoGerfo, Frank W.
Temporal Network Based Analysis of Cell Specific Vein Graft Transcriptome Defines Key Pathways and Hub Genes in Implantation Injury
title Temporal Network Based Analysis of Cell Specific Vein Graft Transcriptome Defines Key Pathways and Hub Genes in Implantation Injury
title_full Temporal Network Based Analysis of Cell Specific Vein Graft Transcriptome Defines Key Pathways and Hub Genes in Implantation Injury
title_fullStr Temporal Network Based Analysis of Cell Specific Vein Graft Transcriptome Defines Key Pathways and Hub Genes in Implantation Injury
title_full_unstemmed Temporal Network Based Analysis of Cell Specific Vein Graft Transcriptome Defines Key Pathways and Hub Genes in Implantation Injury
title_short Temporal Network Based Analysis of Cell Specific Vein Graft Transcriptome Defines Key Pathways and Hub Genes in Implantation Injury
title_sort temporal network based analysis of cell specific vein graft transcriptome defines key pathways and hub genes in implantation injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3376111/
https://www.ncbi.nlm.nih.gov/pubmed/22720046
http://dx.doi.org/10.1371/journal.pone.0039123
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