Efficient and rapid induction of human iPSCs/ESCs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.

The first step in developing regenerative medicine approaches to treat renal diseases using pluripotent stem cells must be the generation of intermediate mesoderm (IM), an embryonic germ layer that gives rise to kidneys. In order to achieve this goal, establishing an efficient, stable and low-cost m...

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Main Authors: Toshikazu Araoka, Shin-ichi Mae, Yuko Kurose, Motonari Uesugi, Akira Ohta, Shinya Yamanaka, Kenji Osafune
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3893162?pdf=render
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spelling doaj-cb7b979c60d9415a913f4a42cace4cc92020-11-25T02:15:31ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8488110.1371/journal.pone.0084881Efficient and rapid induction of human iPSCs/ESCs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.Toshikazu AraokaShin-ichi MaeYuko KuroseMotonari UesugiAkira OhtaShinya YamanakaKenji OsafuneThe first step in developing regenerative medicine approaches to treat renal diseases using pluripotent stem cells must be the generation of intermediate mesoderm (IM), an embryonic germ layer that gives rise to kidneys. In order to achieve this goal, establishing an efficient, stable and low-cost method for differentiating IM cells using small molecules is required. In this study, we identified two retinoids, AM580 and TTNPB, as potent IM inducers by high-throughput chemical screening, and established rapid (five days) and efficient (80% induction rate) IM differentiation from human iPSCs using only two small molecules: a Wnt pathway activator, CHIR99021, combined with either AM580 or TTNPB. The resulting human IM cells showed the ability to differentiate into multiple cell types that constitute adult kidneys, and to form renal tubule-like structures. These small molecule differentiation methods can bypass the mesendoderm step, directly inducing IM cells by activating Wnt, retinoic acid (RA), and bone morphogenetic protein (BMP) pathways. Such methods are powerful tools for studying kidney development and may potentially provide cell sources to generate renal lineage cells for regenerative therapy.http://europepmc.org/articles/PMC3893162?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Toshikazu Araoka
Shin-ichi Mae
Yuko Kurose
Motonari Uesugi
Akira Ohta
Shinya Yamanaka
Kenji Osafune
spellingShingle Toshikazu Araoka
Shin-ichi Mae
Yuko Kurose
Motonari Uesugi
Akira Ohta
Shinya Yamanaka
Kenji Osafune
Efficient and rapid induction of human iPSCs/ESCs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.
PLoS ONE
author_facet Toshikazu Araoka
Shin-ichi Mae
Yuko Kurose
Motonari Uesugi
Akira Ohta
Shinya Yamanaka
Kenji Osafune
author_sort Toshikazu Araoka
title Efficient and rapid induction of human iPSCs/ESCs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.
title_short Efficient and rapid induction of human iPSCs/ESCs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.
title_full Efficient and rapid induction of human iPSCs/ESCs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.
title_fullStr Efficient and rapid induction of human iPSCs/ESCs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.
title_full_unstemmed Efficient and rapid induction of human iPSCs/ESCs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.
title_sort efficient and rapid induction of human ipscs/escs into nephrogenic intermediate mesoderm using small molecule-based differentiation methods.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description The first step in developing regenerative medicine approaches to treat renal diseases using pluripotent stem cells must be the generation of intermediate mesoderm (IM), an embryonic germ layer that gives rise to kidneys. In order to achieve this goal, establishing an efficient, stable and low-cost method for differentiating IM cells using small molecules is required. In this study, we identified two retinoids, AM580 and TTNPB, as potent IM inducers by high-throughput chemical screening, and established rapid (five days) and efficient (80% induction rate) IM differentiation from human iPSCs using only two small molecules: a Wnt pathway activator, CHIR99021, combined with either AM580 or TTNPB. The resulting human IM cells showed the ability to differentiate into multiple cell types that constitute adult kidneys, and to form renal tubule-like structures. These small molecule differentiation methods can bypass the mesendoderm step, directly inducing IM cells by activating Wnt, retinoic acid (RA), and bone morphogenetic protein (BMP) pathways. Such methods are powerful tools for studying kidney development and may potentially provide cell sources to generate renal lineage cells for regenerative therapy.
url http://europepmc.org/articles/PMC3893162?pdf=render
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