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PKH(high)/CD133+/CD24− Renal Stem-Like Cells Isolated from Human Nephrospheres Exhibit In Vitro Multipotency

The mechanism upon which human kidneys undergo regeneration is debated, though different lineage-tracing mouse models have tried to explain the cellular types and the mechanisms involved. Different sources of human renal progenitors have been proposed, but it is difficult to argue whether these popu...

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Autores principales: Bombelli, Silvia, Meregalli, Chiara, Grasselli, Chiara, Bolognesi, Maddalena M., Bruno, Antonino, Eriani, Stefano, Torsello, Barbara, De Marco, Sofia, Bernasconi, Davide P., Zucchini, Nicola, Mazzola, Paolo, Bianchi, Cristina, Grasso, Marco, Albini, Adriana, Cattoretti, Giorgio, Perego, Roberto A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7465083/
https://www.ncbi.nlm.nih.gov/pubmed/32751333
http://dx.doi.org/10.3390/cells9081805
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author Bombelli, Silvia
Meregalli, Chiara
Grasselli, Chiara
Bolognesi, Maddalena M.
Bruno, Antonino
Eriani, Stefano
Torsello, Barbara
De Marco, Sofia
Bernasconi, Davide P.
Zucchini, Nicola
Mazzola, Paolo
Bianchi, Cristina
Grasso, Marco
Albini, Adriana
Cattoretti, Giorgio
Perego, Roberto A.
author_facet Bombelli, Silvia
Meregalli, Chiara
Grasselli, Chiara
Bolognesi, Maddalena M.
Bruno, Antonino
Eriani, Stefano
Torsello, Barbara
De Marco, Sofia
Bernasconi, Davide P.
Zucchini, Nicola
Mazzola, Paolo
Bianchi, Cristina
Grasso, Marco
Albini, Adriana
Cattoretti, Giorgio
Perego, Roberto A.
author_sort Bombelli, Silvia
collection PubMed
description The mechanism upon which human kidneys undergo regeneration is debated, though different lineage-tracing mouse models have tried to explain the cellular types and the mechanisms involved. Different sources of human renal progenitors have been proposed, but it is difficult to argue whether these populations have the same capacities that have been described in mice. Using the nephrosphere (NS) model, we isolated the quiescent population of adult human renal stem-like PKH(high)/CD133+/CD24− cells (RSC). The aim of this study was to deepen the RSC in vitro multipotency capacity. RSC, not expressing endothelial markers, generated secondary nephrospheres containing CD31+/vWf+ cells and cytokeratin positive cells, indicating the coexistence of endothelial and epithelial commitment. RSC cultured on decellularized human renal scaffolds generated endothelial structures together with the proximal and distal tubular structures. CD31+ endothelial committed progenitors sorted from nephrospheres generated spheroids with endothelial-like sprouts in Matrigel. We also demonstrated the double commitment toward endothelial and epithelial lineages of single RSC. The ability of the plastic RSC population to recapitulate the development of tubular epithelial and endothelial renal lineages makes these cells a good tool for the creation of organoids with translational relevance for studying the parenchymal and endothelial cell interactions and developing new therapeutic strategies.
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spelling pubmed-74650832020-09-04 PKH(high)/CD133+/CD24− Renal Stem-Like Cells Isolated from Human Nephrospheres Exhibit In Vitro Multipotency Bombelli, Silvia Meregalli, Chiara Grasselli, Chiara Bolognesi, Maddalena M. Bruno, Antonino Eriani, Stefano Torsello, Barbara De Marco, Sofia Bernasconi, Davide P. Zucchini, Nicola Mazzola, Paolo Bianchi, Cristina Grasso, Marco Albini, Adriana Cattoretti, Giorgio Perego, Roberto A. Cells Article The mechanism upon which human kidneys undergo regeneration is debated, though different lineage-tracing mouse models have tried to explain the cellular types and the mechanisms involved. Different sources of human renal progenitors have been proposed, but it is difficult to argue whether these populations have the same capacities that have been described in mice. Using the nephrosphere (NS) model, we isolated the quiescent population of adult human renal stem-like PKH(high)/CD133+/CD24− cells (RSC). The aim of this study was to deepen the RSC in vitro multipotency capacity. RSC, not expressing endothelial markers, generated secondary nephrospheres containing CD31+/vWf+ cells and cytokeratin positive cells, indicating the coexistence of endothelial and epithelial commitment. RSC cultured on decellularized human renal scaffolds generated endothelial structures together with the proximal and distal tubular structures. CD31+ endothelial committed progenitors sorted from nephrospheres generated spheroids with endothelial-like sprouts in Matrigel. We also demonstrated the double commitment toward endothelial and epithelial lineages of single RSC. The ability of the plastic RSC population to recapitulate the development of tubular epithelial and endothelial renal lineages makes these cells a good tool for the creation of organoids with translational relevance for studying the parenchymal and endothelial cell interactions and developing new therapeutic strategies. MDPI 2020-07-29 /pmc/articles/PMC7465083/ /pubmed/32751333 http://dx.doi.org/10.3390/cells9081805 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bombelli, Silvia
Meregalli, Chiara
Grasselli, Chiara
Bolognesi, Maddalena M.
Bruno, Antonino
Eriani, Stefano
Torsello, Barbara
De Marco, Sofia
Bernasconi, Davide P.
Zucchini, Nicola
Mazzola, Paolo
Bianchi, Cristina
Grasso, Marco
Albini, Adriana
Cattoretti, Giorgio
Perego, Roberto A.
PKH(high)/CD133+/CD24− Renal Stem-Like Cells Isolated from Human Nephrospheres Exhibit In Vitro Multipotency
title PKH(high)/CD133+/CD24− Renal Stem-Like Cells Isolated from Human Nephrospheres Exhibit In Vitro Multipotency
title_full PKH(high)/CD133+/CD24− Renal Stem-Like Cells Isolated from Human Nephrospheres Exhibit In Vitro Multipotency
title_fullStr PKH(high)/CD133+/CD24− Renal Stem-Like Cells Isolated from Human Nephrospheres Exhibit In Vitro Multipotency
title_full_unstemmed PKH(high)/CD133+/CD24− Renal Stem-Like Cells Isolated from Human Nephrospheres Exhibit In Vitro Multipotency
title_short PKH(high)/CD133+/CD24− Renal Stem-Like Cells Isolated from Human Nephrospheres Exhibit In Vitro Multipotency
title_sort pkh(high)/cd133+/cd24− renal stem-like cells isolated from human nephrospheres exhibit in vitro multipotency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7465083/
https://www.ncbi.nlm.nih.gov/pubmed/32751333
http://dx.doi.org/10.3390/cells9081805
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