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Renal Primordia Activate Kidney Regenerative Events in a Rat Model of Progressive Renal Disease

New intervention tools for severely damaged kidneys are in great demand to provide patients with a valid alternative to whole organ replacement. For repairing or replacing injured tissues, emerging approaches focus on using stem and progenitor cells. Embryonic kidneys represent an interesting option...

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Autores principales: Imberti, Barbara, Corna, Daniela, Rizzo, Paola, Xinaris, Christodoulos, Abbate, Mauro, Longaretti, Lorena, Cassis, Paola, Benedetti, Valentina, Benigni, Ariela, Zoja, Carlamaria, Remuzzi, Giuseppe, Morigi, Marina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4374877/
https://www.ncbi.nlm.nih.gov/pubmed/25811887
http://dx.doi.org/10.1371/journal.pone.0120235
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author Imberti, Barbara
Corna, Daniela
Rizzo, Paola
Xinaris, Christodoulos
Abbate, Mauro
Longaretti, Lorena
Cassis, Paola
Benedetti, Valentina
Benigni, Ariela
Zoja, Carlamaria
Remuzzi, Giuseppe
Morigi, Marina
author_facet Imberti, Barbara
Corna, Daniela
Rizzo, Paola
Xinaris, Christodoulos
Abbate, Mauro
Longaretti, Lorena
Cassis, Paola
Benedetti, Valentina
Benigni, Ariela
Zoja, Carlamaria
Remuzzi, Giuseppe
Morigi, Marina
author_sort Imberti, Barbara
collection PubMed
description New intervention tools for severely damaged kidneys are in great demand to provide patients with a valid alternative to whole organ replacement. For repairing or replacing injured tissues, emerging approaches focus on using stem and progenitor cells. Embryonic kidneys represent an interesting option because, when transplanted to sites such as the renal capsule of healthy animals, they originate new renal structures. Here, we studied whether metanephroi possess developmental capacity when transplanted under the kidney capsule of MWF male rats, a model of spontaneous nephropathy. We found that six weeks post-transplantation, renal primordia developed glomeruli and tubuli able to filter blood and to produce urine in cyst-like structures. Newly developed metanephroi were able to initiate a regenerative-like process in host renal tissues adjacent to the graft in MWF male rats as indicated by an increase in cell proliferation and vascular density, accompanied by mRNA and protein upregulation of VEGF, FGF2, HGF, IGF-1 and Pax-2. The expression of SMP30 and NCAM was induced in tubular cells. Oxidative stress and apoptosis markedly decreased. Our study shows that embryonic kidneys generate functional nephrons when transplanted into animals with severe renal disease and at the same time activate events at least partly mimicking those observed in kidney tissues during renal regeneration.
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spelling pubmed-43748772015-04-04 Renal Primordia Activate Kidney Regenerative Events in a Rat Model of Progressive Renal Disease Imberti, Barbara Corna, Daniela Rizzo, Paola Xinaris, Christodoulos Abbate, Mauro Longaretti, Lorena Cassis, Paola Benedetti, Valentina Benigni, Ariela Zoja, Carlamaria Remuzzi, Giuseppe Morigi, Marina PLoS One Research Article New intervention tools for severely damaged kidneys are in great demand to provide patients with a valid alternative to whole organ replacement. For repairing or replacing injured tissues, emerging approaches focus on using stem and progenitor cells. Embryonic kidneys represent an interesting option because, when transplanted to sites such as the renal capsule of healthy animals, they originate new renal structures. Here, we studied whether metanephroi possess developmental capacity when transplanted under the kidney capsule of MWF male rats, a model of spontaneous nephropathy. We found that six weeks post-transplantation, renal primordia developed glomeruli and tubuli able to filter blood and to produce urine in cyst-like structures. Newly developed metanephroi were able to initiate a regenerative-like process in host renal tissues adjacent to the graft in MWF male rats as indicated by an increase in cell proliferation and vascular density, accompanied by mRNA and protein upregulation of VEGF, FGF2, HGF, IGF-1 and Pax-2. The expression of SMP30 and NCAM was induced in tubular cells. Oxidative stress and apoptosis markedly decreased. Our study shows that embryonic kidneys generate functional nephrons when transplanted into animals with severe renal disease and at the same time activate events at least partly mimicking those observed in kidney tissues during renal regeneration. Public Library of Science 2015-03-26 /pmc/articles/PMC4374877/ /pubmed/25811887 http://dx.doi.org/10.1371/journal.pone.0120235 Text en © 2015 Imberti 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
Imberti, Barbara
Corna, Daniela
Rizzo, Paola
Xinaris, Christodoulos
Abbate, Mauro
Longaretti, Lorena
Cassis, Paola
Benedetti, Valentina
Benigni, Ariela
Zoja, Carlamaria
Remuzzi, Giuseppe
Morigi, Marina
Renal Primordia Activate Kidney Regenerative Events in a Rat Model of Progressive Renal Disease
title Renal Primordia Activate Kidney Regenerative Events in a Rat Model of Progressive Renal Disease
title_full Renal Primordia Activate Kidney Regenerative Events in a Rat Model of Progressive Renal Disease
title_fullStr Renal Primordia Activate Kidney Regenerative Events in a Rat Model of Progressive Renal Disease
title_full_unstemmed Renal Primordia Activate Kidney Regenerative Events in a Rat Model of Progressive Renal Disease
title_short Renal Primordia Activate Kidney Regenerative Events in a Rat Model of Progressive Renal Disease
title_sort renal primordia activate kidney regenerative events in a rat model of progressive renal disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4374877/
https://www.ncbi.nlm.nih.gov/pubmed/25811887
http://dx.doi.org/10.1371/journal.pone.0120235
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