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Global Renal Gene Expression Profiling Analysis in B(2)-Kinin Receptor Null Mice: Impact of Diabetes

Diabetic nephropathy (DN), the leading cause of end-stage renal failure, is clinically manifested by albuminuria and a progressive decline in glomerular filtration rate. The risk factors and mechanisms that contribute to the development and progression of DN are still incompletely defined. To addres...

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Autores principales: Jaffa, Miran A., Kobeissy, Firas, Al Hariri, Moustafa, Chalhoub, Hussein, Eid, Assaad, Ziyadeh, Fuad N., Jaffa, Ayad A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3445541/
https://www.ncbi.nlm.nih.gov/pubmed/23028588
http://dx.doi.org/10.1371/journal.pone.0044714
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author Jaffa, Miran A.
Kobeissy, Firas
Al Hariri, Moustafa
Chalhoub, Hussein
Eid, Assaad
Ziyadeh, Fuad N.
Jaffa, Ayad A.
author_facet Jaffa, Miran A.
Kobeissy, Firas
Al Hariri, Moustafa
Chalhoub, Hussein
Eid, Assaad
Ziyadeh, Fuad N.
Jaffa, Ayad A.
author_sort Jaffa, Miran A.
collection PubMed
description Diabetic nephropathy (DN), the leading cause of end-stage renal failure, is clinically manifested by albuminuria and a progressive decline in glomerular filtration rate. The risk factors and mechanisms that contribute to the development and progression of DN are still incompletely defined. To address the involvement of bradykinin B(2)-receptors (B(2)R) in DN, we used a genome wide approach to study the effects of diabetes on differential renal gene expression profile in wild type and B(2)R knockout (B(2)R(−/−)) mice. Diabetes was induced with streptozotocin and plasma glucose levels and albumin excretion rate (AER) were measured at predetermined times throughout the 23 week study period. Longitudinal analysis of AER indicated that diabetic B(2)R(−/−)D null mice had a significantly decreased AER levels compared to wild type B(2)R(+/+)D mice (P = 0.0005). Results from the global microarray study comparing gene expression profiles among four groups of mice respectively: (B(2)R(+/+)C, B(2)R(+/+)D, B(2)R(−/−)C and B(2)R(−/−)D) highlighted the role of several altered pathological pathways in response to disruption of B(2)R and to the diabetic state that included: endothelial injury, oxidative stress, insulin and lipid metabolism and inflammatory process with a marked alteration in the pro-apoptotic genes. The findings of the present study provide a global genomics view of biomarkers that highlight the mechanisms and putative pathways involved in DN.
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spelling pubmed-34455412012-10-01 Global Renal Gene Expression Profiling Analysis in B(2)-Kinin Receptor Null Mice: Impact of Diabetes Jaffa, Miran A. Kobeissy, Firas Al Hariri, Moustafa Chalhoub, Hussein Eid, Assaad Ziyadeh, Fuad N. Jaffa, Ayad A. PLoS One Research Article Diabetic nephropathy (DN), the leading cause of end-stage renal failure, is clinically manifested by albuminuria and a progressive decline in glomerular filtration rate. The risk factors and mechanisms that contribute to the development and progression of DN are still incompletely defined. To address the involvement of bradykinin B(2)-receptors (B(2)R) in DN, we used a genome wide approach to study the effects of diabetes on differential renal gene expression profile in wild type and B(2)R knockout (B(2)R(−/−)) mice. Diabetes was induced with streptozotocin and plasma glucose levels and albumin excretion rate (AER) were measured at predetermined times throughout the 23 week study period. Longitudinal analysis of AER indicated that diabetic B(2)R(−/−)D null mice had a significantly decreased AER levels compared to wild type B(2)R(+/+)D mice (P = 0.0005). Results from the global microarray study comparing gene expression profiles among four groups of mice respectively: (B(2)R(+/+)C, B(2)R(+/+)D, B(2)R(−/−)C and B(2)R(−/−)D) highlighted the role of several altered pathological pathways in response to disruption of B(2)R and to the diabetic state that included: endothelial injury, oxidative stress, insulin and lipid metabolism and inflammatory process with a marked alteration in the pro-apoptotic genes. The findings of the present study provide a global genomics view of biomarkers that highlight the mechanisms and putative pathways involved in DN. Public Library of Science 2012-09-18 /pmc/articles/PMC3445541/ /pubmed/23028588 http://dx.doi.org/10.1371/journal.pone.0044714 Text en © 2012 Jaffa 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
Jaffa, Miran A.
Kobeissy, Firas
Al Hariri, Moustafa
Chalhoub, Hussein
Eid, Assaad
Ziyadeh, Fuad N.
Jaffa, Ayad A.
Global Renal Gene Expression Profiling Analysis in B(2)-Kinin Receptor Null Mice: Impact of Diabetes
title Global Renal Gene Expression Profiling Analysis in B(2)-Kinin Receptor Null Mice: Impact of Diabetes
title_full Global Renal Gene Expression Profiling Analysis in B(2)-Kinin Receptor Null Mice: Impact of Diabetes
title_fullStr Global Renal Gene Expression Profiling Analysis in B(2)-Kinin Receptor Null Mice: Impact of Diabetes
title_full_unstemmed Global Renal Gene Expression Profiling Analysis in B(2)-Kinin Receptor Null Mice: Impact of Diabetes
title_short Global Renal Gene Expression Profiling Analysis in B(2)-Kinin Receptor Null Mice: Impact of Diabetes
title_sort global renal gene expression profiling analysis in b(2)-kinin receptor null mice: impact of diabetes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3445541/
https://www.ncbi.nlm.nih.gov/pubmed/23028588
http://dx.doi.org/10.1371/journal.pone.0044714
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