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Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease

Identification of tissue-specific renal stem/progenitor cells with nephrogenic potential is a critical step in developing cell-based therapies for renal disease. In the human kidney, stem/progenitor cells are induced into the nephrogenic pathway to form nephrons until the 34 week of gestation, and n...

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Autores principales: Harari-Steinberg, Orit, Metsuyanim, Sally, Omer, Dorit, Gnatek, Yehudit, Gershon, Rotem, Pri-Chen, Sara, Ozdemir, Derya D, Lerenthal, Yaniv, Noiman, Tzahi, Ben-Hur, Herzel, Vaknin, Zvi, Schneider, David F, Aronow, Bruce J, Goldstein, Ronald S, Hohenstein, Peter, Dekel, Benjamin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3799579/
https://www.ncbi.nlm.nih.gov/pubmed/23996934
http://dx.doi.org/10.1002/emmm.201201584
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author Harari-Steinberg, Orit
Metsuyanim, Sally
Omer, Dorit
Gnatek, Yehudit
Gershon, Rotem
Pri-Chen, Sara
Ozdemir, Derya D
Lerenthal, Yaniv
Noiman, Tzahi
Ben-Hur, Herzel
Vaknin, Zvi
Schneider, David F
Aronow, Bruce J
Goldstein, Ronald S
Hohenstein, Peter
Dekel, Benjamin
author_facet Harari-Steinberg, Orit
Metsuyanim, Sally
Omer, Dorit
Gnatek, Yehudit
Gershon, Rotem
Pri-Chen, Sara
Ozdemir, Derya D
Lerenthal, Yaniv
Noiman, Tzahi
Ben-Hur, Herzel
Vaknin, Zvi
Schneider, David F
Aronow, Bruce J
Goldstein, Ronald S
Hohenstein, Peter
Dekel, Benjamin
author_sort Harari-Steinberg, Orit
collection PubMed
description Identification of tissue-specific renal stem/progenitor cells with nephrogenic potential is a critical step in developing cell-based therapies for renal disease. In the human kidney, stem/progenitor cells are induced into the nephrogenic pathway to form nephrons until the 34 week of gestation, and no equivalent cell types can be traced in the adult kidney. Human nephron progenitor cells (hNPCs) have yet to be isolated. Here we show that growth of human foetal kidneys in serum-free defined conditions and prospective isolation of NCAM1(+) cells selects for nephron lineage that includes the SIX2-positive cap mesenchyme cells identifying a mitotically active population with in vitro clonogenic and stem/progenitor properties. After transplantation in the chick embryo, these cells—but not differentiated counterparts—efficiently formed various nephron tubule types. hNPCs engrafted and integrated in diseased murine kidneys and treatment of renal failure in the 5/6 nephrectomy kidney injury model had beneficial effects on renal function halting disease progression. These findings constitute the first definition of an intrinsic nephron precursor population, with major potential for cell-based therapeutic strategies and modelling of kidney disease.
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spelling pubmed-37995792013-10-23 Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease Harari-Steinberg, Orit Metsuyanim, Sally Omer, Dorit Gnatek, Yehudit Gershon, Rotem Pri-Chen, Sara Ozdemir, Derya D Lerenthal, Yaniv Noiman, Tzahi Ben-Hur, Herzel Vaknin, Zvi Schneider, David F Aronow, Bruce J Goldstein, Ronald S Hohenstein, Peter Dekel, Benjamin EMBO Mol Med Research Articles Identification of tissue-specific renal stem/progenitor cells with nephrogenic potential is a critical step in developing cell-based therapies for renal disease. In the human kidney, stem/progenitor cells are induced into the nephrogenic pathway to form nephrons until the 34 week of gestation, and no equivalent cell types can be traced in the adult kidney. Human nephron progenitor cells (hNPCs) have yet to be isolated. Here we show that growth of human foetal kidneys in serum-free defined conditions and prospective isolation of NCAM1(+) cells selects for nephron lineage that includes the SIX2-positive cap mesenchyme cells identifying a mitotically active population with in vitro clonogenic and stem/progenitor properties. After transplantation in the chick embryo, these cells—but not differentiated counterparts—efficiently formed various nephron tubule types. hNPCs engrafted and integrated in diseased murine kidneys and treatment of renal failure in the 5/6 nephrectomy kidney injury model had beneficial effects on renal function halting disease progression. These findings constitute the first definition of an intrinsic nephron precursor population, with major potential for cell-based therapeutic strategies and modelling of kidney disease. Blackwell Publishing Ltd 2013-10 2013-09-02 /pmc/articles/PMC3799579/ /pubmed/23996934 http://dx.doi.org/10.1002/emmm.201201584 Text en © 2013 The Authors. Published by John Wiley and Sons, Ltd on behalf of EMBO http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Research Articles
Harari-Steinberg, Orit
Metsuyanim, Sally
Omer, Dorit
Gnatek, Yehudit
Gershon, Rotem
Pri-Chen, Sara
Ozdemir, Derya D
Lerenthal, Yaniv
Noiman, Tzahi
Ben-Hur, Herzel
Vaknin, Zvi
Schneider, David F
Aronow, Bruce J
Goldstein, Ronald S
Hohenstein, Peter
Dekel, Benjamin
Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease
title Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease
title_full Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease
title_fullStr Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease
title_full_unstemmed Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease
title_short Identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease
title_sort identification of human nephron progenitors capable of generation of kidney structures and functional repair of chronic renal disease
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3799579/
https://www.ncbi.nlm.nih.gov/pubmed/23996934
http://dx.doi.org/10.1002/emmm.201201584
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