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Renal systems biology of patients with systemic inflammatory response syndrome

A systems biology approach was used to comprehensively examine the impact of renal disease and hemodialysis (HD) on patient response during critical illness. To achieve this we examined the metabolome, proteome, and transcriptome of 150 patients with critical illness, stratified by renal function. Q...

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Autores principales: Tsalik, Ephraim L., Willig, Laurel K., Rice, Brandon J., van Velkinburgh, Jennifer C., Mohney, Robert P., McDunn, Jonathan, Dinwiddie, Darrell L., Miller, Neil A., Mayer, Eric, Glickman, Seth W., Jaehne, Anja K., Glew, Robert H., Sopori, Mohan L., Otero, Ronny M., Harrod, Kevin S., Cairns, Charles B., Fowler, Vance G., Rivers, Emanuel P., Woods, Christopher W., Kingsmore, Stephen F., Langley, Raymond J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4591107/
https://www.ncbi.nlm.nih.gov/pubmed/25993322
http://dx.doi.org/10.1038/ki.2015.150
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author Tsalik, Ephraim L.
Willig, Laurel K.
Rice, Brandon J.
van Velkinburgh, Jennifer C.
Mohney, Robert P.
McDunn, Jonathan
Dinwiddie, Darrell L.
Miller, Neil A.
Mayer, Eric
Glickman, Seth W.
Jaehne, Anja K.
Glew, Robert H.
Sopori, Mohan L.
Otero, Ronny M.
Harrod, Kevin S.
Cairns, Charles B.
Fowler, Vance G.
Rivers, Emanuel P.
Woods, Christopher W.
Kingsmore, Stephen F.
Langley, Raymond J.
author_facet Tsalik, Ephraim L.
Willig, Laurel K.
Rice, Brandon J.
van Velkinburgh, Jennifer C.
Mohney, Robert P.
McDunn, Jonathan
Dinwiddie, Darrell L.
Miller, Neil A.
Mayer, Eric
Glickman, Seth W.
Jaehne, Anja K.
Glew, Robert H.
Sopori, Mohan L.
Otero, Ronny M.
Harrod, Kevin S.
Cairns, Charles B.
Fowler, Vance G.
Rivers, Emanuel P.
Woods, Christopher W.
Kingsmore, Stephen F.
Langley, Raymond J.
author_sort Tsalik, Ephraim L.
collection PubMed
description A systems biology approach was used to comprehensively examine the impact of renal disease and hemodialysis (HD) on patient response during critical illness. To achieve this we examined the metabolome, proteome, and transcriptome of 150 patients with critical illness, stratified by renal function. Quantification of plasma metabolites indicated greater change as renal function declined, with the greatest derangements in patients receiving chronic HD. Specifically, 6 uremic retention molecules, 17 other protein catabolites, 7 modified nucleosides, and 7 pentose phosphate sugars increased as renal function declined, consistent with decreased excretion or increased catabolism of amino acids and ribonucleotides. Similarly, the proteome showed increased levels of low-molecular weight proteins and acute phase reactants. The transcriptome revealed a broad-based decrease in mRNA levels among patients on HD. Systems integration revealed an unrecognized association between plasma RNASE1 and several RNA catabolites and modified nucleosides. Further, allantoin, N1-methyl-4-pyridone-3-carboxamide, and n-acetylaspartate were inversely correlated with the majority of significantly down-regulated genes. Thus, renal function broadly affected the plasma metabolome, proteome, and peripheral blood transcriptome during critical illness; changes not effectively mitigated by hemodialysis. These studies allude to several novel mechanisms whereby renal dysfunction contributes to critical illness.
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spelling pubmed-45911072016-04-01 Renal systems biology of patients with systemic inflammatory response syndrome Tsalik, Ephraim L. Willig, Laurel K. Rice, Brandon J. van Velkinburgh, Jennifer C. Mohney, Robert P. McDunn, Jonathan Dinwiddie, Darrell L. Miller, Neil A. Mayer, Eric Glickman, Seth W. Jaehne, Anja K. Glew, Robert H. Sopori, Mohan L. Otero, Ronny M. Harrod, Kevin S. Cairns, Charles B. Fowler, Vance G. Rivers, Emanuel P. Woods, Christopher W. Kingsmore, Stephen F. Langley, Raymond J. Kidney Int Article A systems biology approach was used to comprehensively examine the impact of renal disease and hemodialysis (HD) on patient response during critical illness. To achieve this we examined the metabolome, proteome, and transcriptome of 150 patients with critical illness, stratified by renal function. Quantification of plasma metabolites indicated greater change as renal function declined, with the greatest derangements in patients receiving chronic HD. Specifically, 6 uremic retention molecules, 17 other protein catabolites, 7 modified nucleosides, and 7 pentose phosphate sugars increased as renal function declined, consistent with decreased excretion or increased catabolism of amino acids and ribonucleotides. Similarly, the proteome showed increased levels of low-molecular weight proteins and acute phase reactants. The transcriptome revealed a broad-based decrease in mRNA levels among patients on HD. Systems integration revealed an unrecognized association between plasma RNASE1 and several RNA catabolites and modified nucleosides. Further, allantoin, N1-methyl-4-pyridone-3-carboxamide, and n-acetylaspartate were inversely correlated with the majority of significantly down-regulated genes. Thus, renal function broadly affected the plasma metabolome, proteome, and peripheral blood transcriptome during critical illness; changes not effectively mitigated by hemodialysis. These studies allude to several novel mechanisms whereby renal dysfunction contributes to critical illness. 2015-05-20 2015-10 /pmc/articles/PMC4591107/ /pubmed/25993322 http://dx.doi.org/10.1038/ki.2015.150 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Tsalik, Ephraim L.
Willig, Laurel K.
Rice, Brandon J.
van Velkinburgh, Jennifer C.
Mohney, Robert P.
McDunn, Jonathan
Dinwiddie, Darrell L.
Miller, Neil A.
Mayer, Eric
Glickman, Seth W.
Jaehne, Anja K.
Glew, Robert H.
Sopori, Mohan L.
Otero, Ronny M.
Harrod, Kevin S.
Cairns, Charles B.
Fowler, Vance G.
Rivers, Emanuel P.
Woods, Christopher W.
Kingsmore, Stephen F.
Langley, Raymond J.
Renal systems biology of patients with systemic inflammatory response syndrome
title Renal systems biology of patients with systemic inflammatory response syndrome
title_full Renal systems biology of patients with systemic inflammatory response syndrome
title_fullStr Renal systems biology of patients with systemic inflammatory response syndrome
title_full_unstemmed Renal systems biology of patients with systemic inflammatory response syndrome
title_short Renal systems biology of patients with systemic inflammatory response syndrome
title_sort renal systems biology of patients with systemic inflammatory response syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4591107/
https://www.ncbi.nlm.nih.gov/pubmed/25993322
http://dx.doi.org/10.1038/ki.2015.150
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