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Maintenance of Mouse Nephron Progenitor Cells in Aggregates with Gamma-Secretase Inhibitor

Knowledge on how to maintain and expand nephron progenitor cells (NPC) in vitro is important to provide a potentially valuable source for kidney replacement therapies. In our present study, we examined the possibility of optimizing NPC maintenance in the "re-aggregate" system. We found tha...

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Autores principales: Yuri, Shunsuke, Nishikawa, Masaki, Yanagawa, Naomi, Jo, Oak D., Yanagawa, Norimoto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4468097/
https://www.ncbi.nlm.nih.gov/pubmed/26075891
http://dx.doi.org/10.1371/journal.pone.0129242
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author Yuri, Shunsuke
Nishikawa, Masaki
Yanagawa, Naomi
Jo, Oak D.
Yanagawa, Norimoto
author_facet Yuri, Shunsuke
Nishikawa, Masaki
Yanagawa, Naomi
Jo, Oak D.
Yanagawa, Norimoto
author_sort Yuri, Shunsuke
collection PubMed
description Knowledge on how to maintain and expand nephron progenitor cells (NPC) in vitro is important to provide a potentially valuable source for kidney replacement therapies. In our present study, we examined the possibility of optimizing NPC maintenance in the "re-aggregate" system. We found that Six2-expressing (Six2(+))-NPC could be maintained in aggregates reconstituted with dispersed cells from E12.5 mouse embryonic kidneys for at least up to 21 days in culture. The maintenance of Six2(+)-NPC required the presence of ureteric bud cells. The number of Six2(+)-NPC increased by more than 20-fold at day 21, but plateaued after day 14. In an attempt to further sustain NPC proliferation by passage subculture, we found that the new (P1) aggregates reconstituted from the original (P0) aggregates failed to maintain NPC. However, based on the similarity between P1 aggregates and aggregates derived from E15.5 embryonic kidneys, we suspected that the differentiated NPC in P1 aggregates may interfere with NPC maintenance. In support of this notion, we found that preventing NPC differentiation by DAPT, a γ-secretase inhibitor that inhibits Notch signaling pathway, was effective to maintain and expand Six2(+)-NPC in P1 aggregates by up to 65-fold. The Six2(+)-NPC in P1 aggregates retained their potential to epithelialize upon exposure to Wnt signal. In conclusion, we demonstrated in our present study that the "re-aggregation" system can be useful for in vitro maintenance of NPC when combined with γ-secretase inhibitor.
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spelling pubmed-44680972015-06-25 Maintenance of Mouse Nephron Progenitor Cells in Aggregates with Gamma-Secretase Inhibitor Yuri, Shunsuke Nishikawa, Masaki Yanagawa, Naomi Jo, Oak D. Yanagawa, Norimoto PLoS One Research Article Knowledge on how to maintain and expand nephron progenitor cells (NPC) in vitro is important to provide a potentially valuable source for kidney replacement therapies. In our present study, we examined the possibility of optimizing NPC maintenance in the "re-aggregate" system. We found that Six2-expressing (Six2(+))-NPC could be maintained in aggregates reconstituted with dispersed cells from E12.5 mouse embryonic kidneys for at least up to 21 days in culture. The maintenance of Six2(+)-NPC required the presence of ureteric bud cells. The number of Six2(+)-NPC increased by more than 20-fold at day 21, but plateaued after day 14. In an attempt to further sustain NPC proliferation by passage subculture, we found that the new (P1) aggregates reconstituted from the original (P0) aggregates failed to maintain NPC. However, based on the similarity between P1 aggregates and aggregates derived from E15.5 embryonic kidneys, we suspected that the differentiated NPC in P1 aggregates may interfere with NPC maintenance. In support of this notion, we found that preventing NPC differentiation by DAPT, a γ-secretase inhibitor that inhibits Notch signaling pathway, was effective to maintain and expand Six2(+)-NPC in P1 aggregates by up to 65-fold. The Six2(+)-NPC in P1 aggregates retained their potential to epithelialize upon exposure to Wnt signal. In conclusion, we demonstrated in our present study that the "re-aggregation" system can be useful for in vitro maintenance of NPC when combined with γ-secretase inhibitor. Public Library of Science 2015-06-15 /pmc/articles/PMC4468097/ /pubmed/26075891 http://dx.doi.org/10.1371/journal.pone.0129242 Text en © 2015 Yuri 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
Yuri, Shunsuke
Nishikawa, Masaki
Yanagawa, Naomi
Jo, Oak D.
Yanagawa, Norimoto
Maintenance of Mouse Nephron Progenitor Cells in Aggregates with Gamma-Secretase Inhibitor
title Maintenance of Mouse Nephron Progenitor Cells in Aggregates with Gamma-Secretase Inhibitor
title_full Maintenance of Mouse Nephron Progenitor Cells in Aggregates with Gamma-Secretase Inhibitor
title_fullStr Maintenance of Mouse Nephron Progenitor Cells in Aggregates with Gamma-Secretase Inhibitor
title_full_unstemmed Maintenance of Mouse Nephron Progenitor Cells in Aggregates with Gamma-Secretase Inhibitor
title_short Maintenance of Mouse Nephron Progenitor Cells in Aggregates with Gamma-Secretase Inhibitor
title_sort maintenance of mouse nephron progenitor cells in aggregates with gamma-secretase inhibitor
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4468097/
https://www.ncbi.nlm.nih.gov/pubmed/26075891
http://dx.doi.org/10.1371/journal.pone.0129242
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