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Human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine

BACKGROUND AND AIMS: ADSCs transplantation had been shown in some experimental models of kidney damage that it improves kidney function and reduces fibrosis. In this study we evaluated the effect of human adipose tissue-derived stem cell (hADSC) therapy in a chronic kidney damage experimental model....

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Autores principales: Rivera-Valdés, Juan José, García-Bañuelos, Jesus, Salazar-Montes, Adriana, García-Benavides, Leonel, Rosales-Dominguez, Alfredo, Armendáriz-Borunda, Juan, Sandoval-Rodríguez, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5744925/
https://www.ncbi.nlm.nih.gov/pubmed/29281649
http://dx.doi.org/10.1371/journal.pone.0187907
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author Rivera-Valdés, Juan José
García-Bañuelos, Jesus
Salazar-Montes, Adriana
García-Benavides, Leonel
Rosales-Dominguez, Alfredo
Armendáriz-Borunda, Juan
Sandoval-Rodríguez, Ana
author_facet Rivera-Valdés, Juan José
García-Bañuelos, Jesus
Salazar-Montes, Adriana
García-Benavides, Leonel
Rosales-Dominguez, Alfredo
Armendáriz-Borunda, Juan
Sandoval-Rodríguez, Ana
author_sort Rivera-Valdés, Juan José
collection PubMed
description BACKGROUND AND AIMS: ADSCs transplantation had been shown in some experimental models of kidney damage that it improves kidney function and reduces fibrosis. In this study we evaluated the effect of human adipose tissue-derived stem cell (hADSC) therapy in a chronic kidney damage experimental model. METHODS: A chronic kidney injury was induced by daily orogastric administration of adenine (100mg/kg) to male Wistar rats for 28 days. hADSCs were isolated, expanded and characterized before transplantation. hADSC administration was performed in a tail vein at a dose of 2 x10(6) cells/animal. Animals were sacrificed at 7 days post-treatment. The percentage of fibrotic tissue, serum and urine levels of urea, creatinine, total protein and renal mRNA of COL1A1, TGFB1, CTGF, ACTA2, IL6, IL10, TNF were analyzed. RESULTS: hADSCs treatment significantly reduces kidney fibrosis, improves urea and creatinine serum and urine levels, and diminishes COL1A1, TGFB1, CTGF, ACTA2 mRNA kidney levels. CONCLUSIONS: These results showed that cell therapy using hADSCs improves renal function and reduces fibrosis.
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spelling pubmed-57449252018-01-09 Human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine Rivera-Valdés, Juan José García-Bañuelos, Jesus Salazar-Montes, Adriana García-Benavides, Leonel Rosales-Dominguez, Alfredo Armendáriz-Borunda, Juan Sandoval-Rodríguez, Ana PLoS One Research Article BACKGROUND AND AIMS: ADSCs transplantation had been shown in some experimental models of kidney damage that it improves kidney function and reduces fibrosis. In this study we evaluated the effect of human adipose tissue-derived stem cell (hADSC) therapy in a chronic kidney damage experimental model. METHODS: A chronic kidney injury was induced by daily orogastric administration of adenine (100mg/kg) to male Wistar rats for 28 days. hADSCs were isolated, expanded and characterized before transplantation. hADSC administration was performed in a tail vein at a dose of 2 x10(6) cells/animal. Animals were sacrificed at 7 days post-treatment. The percentage of fibrotic tissue, serum and urine levels of urea, creatinine, total protein and renal mRNA of COL1A1, TGFB1, CTGF, ACTA2, IL6, IL10, TNF were analyzed. RESULTS: hADSCs treatment significantly reduces kidney fibrosis, improves urea and creatinine serum and urine levels, and diminishes COL1A1, TGFB1, CTGF, ACTA2 mRNA kidney levels. CONCLUSIONS: These results showed that cell therapy using hADSCs improves renal function and reduces fibrosis. Public Library of Science 2017-12-27 /pmc/articles/PMC5744925/ /pubmed/29281649 http://dx.doi.org/10.1371/journal.pone.0187907 Text en © 2017 Rivera-Valdés 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rivera-Valdés, Juan José
García-Bañuelos, Jesus
Salazar-Montes, Adriana
García-Benavides, Leonel
Rosales-Dominguez, Alfredo
Armendáriz-Borunda, Juan
Sandoval-Rodríguez, Ana
Human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine
title Human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine
title_full Human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine
title_fullStr Human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine
title_full_unstemmed Human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine
title_short Human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine
title_sort human adipose derived stem cells regress fibrosis in a chronic renal fibrotic model induced by adenine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5744925/
https://www.ncbi.nlm.nih.gov/pubmed/29281649
http://dx.doi.org/10.1371/journal.pone.0187907
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