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Superoxide overproduction and kidney fibrosis: a new animal model

OBJECTIVE: To establish whether the mutation in the Immp2L gene induces renal fibrosis and whether aging exacerbates renal morphology in mice. METHODS: Female mutant mice with mutation in the inner mitochondrial membrane peptidase 2-like protein at 3 and 18 months of age were used. Renal fibrosis wa...

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Autores principales: Guimarães-Souza, Nadia Karina, Yamaleyeva, Liliya Marsovna, Lu, Baisong, Ramos, Ana Claudia Mallet de Souza, Bishop, Colin Edward, Andersson, Karl Erik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Instituto de Ensino e Pesquisa Albert Einstein 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4977594/
https://www.ncbi.nlm.nih.gov/pubmed/25993073
http://dx.doi.org/10.1590/S1679-45082015AO3179
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author Guimarães-Souza, Nadia Karina
Yamaleyeva, Liliya Marsovna
Lu, Baisong
Ramos, Ana Claudia Mallet de Souza
Bishop, Colin Edward
Andersson, Karl Erik
author_facet Guimarães-Souza, Nadia Karina
Yamaleyeva, Liliya Marsovna
Lu, Baisong
Ramos, Ana Claudia Mallet de Souza
Bishop, Colin Edward
Andersson, Karl Erik
author_sort Guimarães-Souza, Nadia Karina
collection PubMed
description OBJECTIVE: To establish whether the mutation in the Immp2L gene induces renal fibrosis and whether aging exacerbates renal morphology in mice. METHODS: Female mutant mice with mutation in the inner mitochondrial membrane peptidase 2-like protein at 3 and 18 months of age were used. Renal fibrosis was analyzed using classic fibrosis score, Masson’s trichrome staining, and analysis of profibrotic markers using real time polymerase chain reaction (superoxide dismutase 1, metalloproteinase-9, erythropoietin, transforming growth factor beta), and immunostaining (fibroblasts and Type IV collagen). Oxidative stress markers were determined by immunohistochemistry. The number of renal apoptotic cells was determined. Renal function was estimated by serum creatinine. RESULTS: Young mutant mice had significantly more glomerulosclerosis than age-matched mice (p=0.034). Mutant mice had more tubular casts (p=0.025), collagen deposition (p=0.019), and collagen type IV expression (p<0.001). Superoxide dismutase 1 expression was significantly higher in young mutants (p=0.038). Old mutants exhibited significantly higher expression of the fibroblast marker and macrophage marker (p=0.007 and p=0.012, respectively). The real time polymerase chain reaction of metalloproteinase-9 and erythropoietin were enhanced 2.5- and 6-fold, respectively, in old mutants. Serum creatinine was significantly higher in old mutants (p<0.001). CONCLUSION: This mutation altered renal architecture by increasing the deposition of extracellular matrix, oxidative stress, and inflammation, suggesting a protective role of Immp2L against renal fibrosis.
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spelling pubmed-49775942016-08-10 Superoxide overproduction and kidney fibrosis: a new animal model Guimarães-Souza, Nadia Karina Yamaleyeva, Liliya Marsovna Lu, Baisong Ramos, Ana Claudia Mallet de Souza Bishop, Colin Edward Andersson, Karl Erik Einstein (Sao Paulo) Original Article OBJECTIVE: To establish whether the mutation in the Immp2L gene induces renal fibrosis and whether aging exacerbates renal morphology in mice. METHODS: Female mutant mice with mutation in the inner mitochondrial membrane peptidase 2-like protein at 3 and 18 months of age were used. Renal fibrosis was analyzed using classic fibrosis score, Masson’s trichrome staining, and analysis of profibrotic markers using real time polymerase chain reaction (superoxide dismutase 1, metalloproteinase-9, erythropoietin, transforming growth factor beta), and immunostaining (fibroblasts and Type IV collagen). Oxidative stress markers were determined by immunohistochemistry. The number of renal apoptotic cells was determined. Renal function was estimated by serum creatinine. RESULTS: Young mutant mice had significantly more glomerulosclerosis than age-matched mice (p=0.034). Mutant mice had more tubular casts (p=0.025), collagen deposition (p=0.019), and collagen type IV expression (p<0.001). Superoxide dismutase 1 expression was significantly higher in young mutants (p=0.038). Old mutants exhibited significantly higher expression of the fibroblast marker and macrophage marker (p=0.007 and p=0.012, respectively). The real time polymerase chain reaction of metalloproteinase-9 and erythropoietin were enhanced 2.5- and 6-fold, respectively, in old mutants. Serum creatinine was significantly higher in old mutants (p<0.001). CONCLUSION: This mutation altered renal architecture by increasing the deposition of extracellular matrix, oxidative stress, and inflammation, suggesting a protective role of Immp2L against renal fibrosis. Instituto de Ensino e Pesquisa Albert Einstein 2015 /pmc/articles/PMC4977594/ /pubmed/25993073 http://dx.doi.org/10.1590/S1679-45082015AO3179 Text en http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License, which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Guimarães-Souza, Nadia Karina
Yamaleyeva, Liliya Marsovna
Lu, Baisong
Ramos, Ana Claudia Mallet de Souza
Bishop, Colin Edward
Andersson, Karl Erik
Superoxide overproduction and kidney fibrosis: a new animal model
title Superoxide overproduction and kidney fibrosis: a new animal model
title_full Superoxide overproduction and kidney fibrosis: a new animal model
title_fullStr Superoxide overproduction and kidney fibrosis: a new animal model
title_full_unstemmed Superoxide overproduction and kidney fibrosis: a new animal model
title_short Superoxide overproduction and kidney fibrosis: a new animal model
title_sort superoxide overproduction and kidney fibrosis: a new animal model
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4977594/
https://www.ncbi.nlm.nih.gov/pubmed/25993073
http://dx.doi.org/10.1590/S1679-45082015AO3179
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