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Longitudinal Analysis of Whole Blood Transcriptomes to Explore Molecular Signatures Associated With Acute Renal Allograft Rejection

In this study, we explored a time course of peripheral whole blood transcriptomes from kidney transplantation patients who either experienced an acute rejection episode or did not in order to better delineate the immunological and biological processes measureable in blood leukocytes that are associa...

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Autores principales: Shin, Heesun, Günther, Oliver, Hollander, Zsuzsanna, Wilson-McManus, Janet E., Ng, Raymond T., Balshaw, Robert, Keown, Paul A., McMaster, Robert, McManus, Bruce M., Isbel, Nicole M., Knoll, Greg, Tebbutt, Scott J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Libertas Academica 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3921155/
https://www.ncbi.nlm.nih.gov/pubmed/24526836
http://dx.doi.org/10.4137/BBI.S13376.
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author Shin, Heesun
Günther, Oliver
Hollander, Zsuzsanna
Wilson-McManus, Janet E.
Ng, Raymond T.
Balshaw, Robert
Keown, Paul A.
McMaster, Robert
McManus, Bruce M.
Isbel, Nicole M.
Knoll, Greg
Tebbutt, Scott J.
author_facet Shin, Heesun
Günther, Oliver
Hollander, Zsuzsanna
Wilson-McManus, Janet E.
Ng, Raymond T.
Balshaw, Robert
Keown, Paul A.
McMaster, Robert
McManus, Bruce M.
Isbel, Nicole M.
Knoll, Greg
Tebbutt, Scott J.
author_sort Shin, Heesun
collection PubMed
description In this study, we explored a time course of peripheral whole blood transcriptomes from kidney transplantation patients who either experienced an acute rejection episode or did not in order to better delineate the immunological and biological processes measureable in blood leukocytes that are associated with acute renal allograft rejection. Using microarrays, we generated gene expression data from 24 acute rejectors and 24 nonrejectors. We filtered the data to obtain the most unambiguous and robustly expressing probe sets and selected a subset of patients with the clearest phenotype. We then performed a data-driven exploratory analysis using data reduction and differential gene expression analysis tools in order to reveal gene expression signatures associated with acute allograft rejection. Using a template-matching algorithm, we then expanded our analysis to include time course data, identifying genes whose expression is modulated leading up to acute rejection. We have identified molecular phenotypes associated with acute renal allograft rejection, including a significantly upregulated signature of neutrophil activation and accumulation following transplant surgery that is common to both acute rejectors and nonrejectors. Our analysis shows that this expression signature appears to stabilize over time in nonrejectors but persists in patients who go on to reject the transplanted organ. In addition, we describe an expression signature characteristic of lymphocyte activity and proliferation. This lymphocyte signature is significantly downregulated in both acute rejectors and nonrejectors following surgery; however, patients who go on to reject the organ show a persistent downregulation of this signature relative to the neutrophil signature.
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spelling pubmed-39211552014-02-13 Longitudinal Analysis of Whole Blood Transcriptomes to Explore Molecular Signatures Associated With Acute Renal Allograft Rejection Shin, Heesun Günther, Oliver Hollander, Zsuzsanna Wilson-McManus, Janet E. Ng, Raymond T. Balshaw, Robert Keown, Paul A. McMaster, Robert McManus, Bruce M. Isbel, Nicole M. Knoll, Greg Tebbutt, Scott J. Bioinform Biol Insights Original Research In this study, we explored a time course of peripheral whole blood transcriptomes from kidney transplantation patients who either experienced an acute rejection episode or did not in order to better delineate the immunological and biological processes measureable in blood leukocytes that are associated with acute renal allograft rejection. Using microarrays, we generated gene expression data from 24 acute rejectors and 24 nonrejectors. We filtered the data to obtain the most unambiguous and robustly expressing probe sets and selected a subset of patients with the clearest phenotype. We then performed a data-driven exploratory analysis using data reduction and differential gene expression analysis tools in order to reveal gene expression signatures associated with acute allograft rejection. Using a template-matching algorithm, we then expanded our analysis to include time course data, identifying genes whose expression is modulated leading up to acute rejection. We have identified molecular phenotypes associated with acute renal allograft rejection, including a significantly upregulated signature of neutrophil activation and accumulation following transplant surgery that is common to both acute rejectors and nonrejectors. Our analysis shows that this expression signature appears to stabilize over time in nonrejectors but persists in patients who go on to reject the transplanted organ. In addition, we describe an expression signature characteristic of lymphocyte activity and proliferation. This lymphocyte signature is significantly downregulated in both acute rejectors and nonrejectors following surgery; however, patients who go on to reject the organ show a persistent downregulation of this signature relative to the neutrophil signature. Libertas Academica 2014-01-22 /pmc/articles/PMC3921155/ /pubmed/24526836 http://dx.doi.org/10.4137/BBI.S13376. Text en © 2014 the author(s), publisher and licensee Libertas Academica Ltd. This is an open-access article distributed under the terms of the Creative Commons CC-BY-NC 3.0 License.
spellingShingle Original Research
Shin, Heesun
Günther, Oliver
Hollander, Zsuzsanna
Wilson-McManus, Janet E.
Ng, Raymond T.
Balshaw, Robert
Keown, Paul A.
McMaster, Robert
McManus, Bruce M.
Isbel, Nicole M.
Knoll, Greg
Tebbutt, Scott J.
Longitudinal Analysis of Whole Blood Transcriptomes to Explore Molecular Signatures Associated With Acute Renal Allograft Rejection
title Longitudinal Analysis of Whole Blood Transcriptomes to Explore Molecular Signatures Associated With Acute Renal Allograft Rejection
title_full Longitudinal Analysis of Whole Blood Transcriptomes to Explore Molecular Signatures Associated With Acute Renal Allograft Rejection
title_fullStr Longitudinal Analysis of Whole Blood Transcriptomes to Explore Molecular Signatures Associated With Acute Renal Allograft Rejection
title_full_unstemmed Longitudinal Analysis of Whole Blood Transcriptomes to Explore Molecular Signatures Associated With Acute Renal Allograft Rejection
title_short Longitudinal Analysis of Whole Blood Transcriptomes to Explore Molecular Signatures Associated With Acute Renal Allograft Rejection
title_sort longitudinal analysis of whole blood transcriptomes to explore molecular signatures associated with acute renal allograft rejection
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3921155/
https://www.ncbi.nlm.nih.gov/pubmed/24526836
http://dx.doi.org/10.4137/BBI.S13376.
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