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Evidence of In Vitro Preservation of Human Nephrogenesis at the Single-Cell Level

During nephrogenesis, stem/progenitor cells differentiate and give rise to early nephron structures that segment to proximal and distal nephron cell types. Previously, we prospectively isolated progenitors from human fetal kidney (hFK) utilizing a combination of surface markers. However, upon cultur...

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Autores principales: Pode-Shakked, Naomi, Gershon, Rotem, Tam, Gal, Omer, Dorit, Gnatek, Yehudit, Kanter, Itamar, Oriel, Sarit, Katz, Guy, Harari-Steinberg, Orit, Kalisky, Tomer, Dekel, Benjamin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5511042/
https://www.ncbi.nlm.nih.gov/pubmed/28552604
http://dx.doi.org/10.1016/j.stemcr.2017.04.026
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author Pode-Shakked, Naomi
Gershon, Rotem
Tam, Gal
Omer, Dorit
Gnatek, Yehudit
Kanter, Itamar
Oriel, Sarit
Katz, Guy
Harari-Steinberg, Orit
Kalisky, Tomer
Dekel, Benjamin
author_facet Pode-Shakked, Naomi
Gershon, Rotem
Tam, Gal
Omer, Dorit
Gnatek, Yehudit
Kanter, Itamar
Oriel, Sarit
Katz, Guy
Harari-Steinberg, Orit
Kalisky, Tomer
Dekel, Benjamin
author_sort Pode-Shakked, Naomi
collection PubMed
description During nephrogenesis, stem/progenitor cells differentiate and give rise to early nephron structures that segment to proximal and distal nephron cell types. Previously, we prospectively isolated progenitors from human fetal kidney (hFK) utilizing a combination of surface markers. However, upon culture nephron progenitors differentiated and could not be robustly maintained in vitro. Here, by culturing hFK in a modified medium used for in vitro growth of mouse nephron progenitors, and by dissection of NCAM(+)/CD133(−) progenitor cells according to EpCAM expression (NCAM(+)/CD133(−)/EpCAM(−), NCAM(+)/CD133(−)/EpCAM(dim), NCAM(+)/CD133(−)/EpCAM(bright)), we show at single-cell resolution a preservation of uninduced and induced cap mesenchyme as well as a transitioning mesenchymal-epithelial state. Concomitantly, differentiating and differentiated epithelial lineages are also maintained. In vitro expansion of discrete stages of early human nephrogenesis in nephron stem cell cultures may be used for drug screening on a full repertoire of developing kidney cells and for prospective isolation of mesenchymal or epithelial renal lineages for regenerative medicine.
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spelling pubmed-55110422017-07-21 Evidence of In Vitro Preservation of Human Nephrogenesis at the Single-Cell Level Pode-Shakked, Naomi Gershon, Rotem Tam, Gal Omer, Dorit Gnatek, Yehudit Kanter, Itamar Oriel, Sarit Katz, Guy Harari-Steinberg, Orit Kalisky, Tomer Dekel, Benjamin Stem Cell Reports Article During nephrogenesis, stem/progenitor cells differentiate and give rise to early nephron structures that segment to proximal and distal nephron cell types. Previously, we prospectively isolated progenitors from human fetal kidney (hFK) utilizing a combination of surface markers. However, upon culture nephron progenitors differentiated and could not be robustly maintained in vitro. Here, by culturing hFK in a modified medium used for in vitro growth of mouse nephron progenitors, and by dissection of NCAM(+)/CD133(−) progenitor cells according to EpCAM expression (NCAM(+)/CD133(−)/EpCAM(−), NCAM(+)/CD133(−)/EpCAM(dim), NCAM(+)/CD133(−)/EpCAM(bright)), we show at single-cell resolution a preservation of uninduced and induced cap mesenchyme as well as a transitioning mesenchymal-epithelial state. Concomitantly, differentiating and differentiated epithelial lineages are also maintained. In vitro expansion of discrete stages of early human nephrogenesis in nephron stem cell cultures may be used for drug screening on a full repertoire of developing kidney cells and for prospective isolation of mesenchymal or epithelial renal lineages for regenerative medicine. Elsevier 2017-05-25 /pmc/articles/PMC5511042/ /pubmed/28552604 http://dx.doi.org/10.1016/j.stemcr.2017.04.026 Text en © 2017 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pode-Shakked, Naomi
Gershon, Rotem
Tam, Gal
Omer, Dorit
Gnatek, Yehudit
Kanter, Itamar
Oriel, Sarit
Katz, Guy
Harari-Steinberg, Orit
Kalisky, Tomer
Dekel, Benjamin
Evidence of In Vitro Preservation of Human Nephrogenesis at the Single-Cell Level
title Evidence of In Vitro Preservation of Human Nephrogenesis at the Single-Cell Level
title_full Evidence of In Vitro Preservation of Human Nephrogenesis at the Single-Cell Level
title_fullStr Evidence of In Vitro Preservation of Human Nephrogenesis at the Single-Cell Level
title_full_unstemmed Evidence of In Vitro Preservation of Human Nephrogenesis at the Single-Cell Level
title_short Evidence of In Vitro Preservation of Human Nephrogenesis at the Single-Cell Level
title_sort evidence of in vitro preservation of human nephrogenesis at the single-cell level
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5511042/
https://www.ncbi.nlm.nih.gov/pubmed/28552604
http://dx.doi.org/10.1016/j.stemcr.2017.04.026
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