A high-content small molecule screen identifies novel inducers of definitive endoderm

Objectives: Human embryonic stem cells (hESCs) and human induced pluripotent stem cells (hiPSCs) can generate any given cell type in the human body. One challenge for cell-replacement therapy is the efficient differentiation and expansion of large quantities of progenitor cells from pluripotent stem...

Full description

Bibliographic Details
Main Authors: Alexander Korostylev, Pallavi U. Mahaddalkar, Oliver Keminer, Kamyar Hadian, Kenji Schorpp, Philip Gribbon, Heiko Lickert
Format: Article
Language:English
Published: Elsevier 2017-07-01
Series:Molecular Metabolism
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2212877817301369
id doaj-1ef4f51c5ff74a988d66cd4d166b0608
record_format Article
spelling doaj-1ef4f51c5ff74a988d66cd4d166b06082020-11-24T23:48:00ZengElsevierMolecular Metabolism2212-87782017-07-016764065010.1016/j.molmet.2017.04.009A high-content small molecule screen identifies novel inducers of definitive endodermAlexander Korostylev0Pallavi U. Mahaddalkar1Oliver Keminer2Kamyar Hadian3Kenji Schorpp4Philip Gribbon5Heiko Lickert6Institute for Diabetes and Regeneration, Helmholtz Zentrum München, GermanyInstitute for Diabetes and Regeneration, Helmholtz Zentrum München, GermanyFraunhofer-Institut für Molekularbiologie und Angewandte Ökologie IME, ScreeningPort, 22525, Hamburg, GermanyAssay Development and Screening Platform, Helmholtz Zentrum München, GermanyAssay Development and Screening Platform, Helmholtz Zentrum München, GermanyFraunhofer-Institut für Molekularbiologie und Angewandte Ökologie IME, ScreeningPort, 22525, Hamburg, GermanyInstitute for Diabetes and Regeneration, Helmholtz Zentrum München, GermanyObjectives: Human embryonic stem cells (hESCs) and human induced pluripotent stem cells (hiPSCs) can generate any given cell type in the human body. One challenge for cell-replacement therapy is the efficient differentiation and expansion of large quantities of progenitor cells from pluripotent stem cells produced under good manufacturing practice (GMP). FOXA2 and SOX17 double positive definitive endoderm (DE) progenitor cells can give rise to all endoderm-derived cell types in the thymus, thyroid, lung, pancreas, liver, and gastrointestinal tract. FOXA2 is a pioneer transcription factor in DE differentiation that is also expressed and functionally required during pancreas development and islet cell homeostasis. Current differentiation protocols can successfully generate endoderm; however, generation of mature glucose-sensitive and insulin-secreting β-cells is still a challenge. As a result, it is of utmost importance to screen for small molecules that can improve DE and islet cell differentiation for cell-replacement therapy for diabetic patients. Methods: The aim of this study was to identify and validate small molecules that can induce DE differentiation and further enhance pancreatic progenitor differentiation. Therefore, we developed a large scale, high-content screen for testing a chemical library of 23,406 small molecules to identify compounds that induce FoxA2 in mouse embryonic stem cells (mESCs). Results: Based on our high-content screen algorithm, we selected 84 compounds that directed differentiation of mESCs towards the FoxA2 lineage. Strikingly, we identified ROCK inhibition (ROCKi) as a novel mechanism of endoderm induction in mESCs and hESCs. DE induced by the ROCK inhibitor Fasudil efficiently gives rise to PDX1+ pancreatic progenitors from hESCs. Conclusion: Taken together, DE induction by ROCKi can simplify and improve current endoderm and pancreatic differentiation protocols towards a GMP-grade cell product for β-cell replacement.http://www.sciencedirect.com/science/article/pii/S2212877817301369Rock inhibitionFasudilPancreatic progenitorsAnterior definitive endodermDifferentiations
collection DOAJ
language English
format Article
sources DOAJ
author Alexander Korostylev
Pallavi U. Mahaddalkar
Oliver Keminer
Kamyar Hadian
Kenji Schorpp
Philip Gribbon
Heiko Lickert
spellingShingle Alexander Korostylev
Pallavi U. Mahaddalkar
Oliver Keminer
Kamyar Hadian
Kenji Schorpp
Philip Gribbon
Heiko Lickert
A high-content small molecule screen identifies novel inducers of definitive endoderm
Molecular Metabolism
Rock inhibition
Fasudil
Pancreatic progenitors
Anterior definitive endoderm
Differentiations
author_facet Alexander Korostylev
Pallavi U. Mahaddalkar
Oliver Keminer
Kamyar Hadian
Kenji Schorpp
Philip Gribbon
Heiko Lickert
author_sort Alexander Korostylev
title A high-content small molecule screen identifies novel inducers of definitive endoderm
title_short A high-content small molecule screen identifies novel inducers of definitive endoderm
title_full A high-content small molecule screen identifies novel inducers of definitive endoderm
title_fullStr A high-content small molecule screen identifies novel inducers of definitive endoderm
title_full_unstemmed A high-content small molecule screen identifies novel inducers of definitive endoderm
title_sort high-content small molecule screen identifies novel inducers of definitive endoderm
publisher Elsevier
series Molecular Metabolism
issn 2212-8778
publishDate 2017-07-01
description Objectives: Human embryonic stem cells (hESCs) and human induced pluripotent stem cells (hiPSCs) can generate any given cell type in the human body. One challenge for cell-replacement therapy is the efficient differentiation and expansion of large quantities of progenitor cells from pluripotent stem cells produced under good manufacturing practice (GMP). FOXA2 and SOX17 double positive definitive endoderm (DE) progenitor cells can give rise to all endoderm-derived cell types in the thymus, thyroid, lung, pancreas, liver, and gastrointestinal tract. FOXA2 is a pioneer transcription factor in DE differentiation that is also expressed and functionally required during pancreas development and islet cell homeostasis. Current differentiation protocols can successfully generate endoderm; however, generation of mature glucose-sensitive and insulin-secreting β-cells is still a challenge. As a result, it is of utmost importance to screen for small molecules that can improve DE and islet cell differentiation for cell-replacement therapy for diabetic patients. Methods: The aim of this study was to identify and validate small molecules that can induce DE differentiation and further enhance pancreatic progenitor differentiation. Therefore, we developed a large scale, high-content screen for testing a chemical library of 23,406 small molecules to identify compounds that induce FoxA2 in mouse embryonic stem cells (mESCs). Results: Based on our high-content screen algorithm, we selected 84 compounds that directed differentiation of mESCs towards the FoxA2 lineage. Strikingly, we identified ROCK inhibition (ROCKi) as a novel mechanism of endoderm induction in mESCs and hESCs. DE induced by the ROCK inhibitor Fasudil efficiently gives rise to PDX1+ pancreatic progenitors from hESCs. Conclusion: Taken together, DE induction by ROCKi can simplify and improve current endoderm and pancreatic differentiation protocols towards a GMP-grade cell product for β-cell replacement.
topic Rock inhibition
Fasudil
Pancreatic progenitors
Anterior definitive endoderm
Differentiations
url http://www.sciencedirect.com/science/article/pii/S2212877817301369
work_keys_str_mv AT alexanderkorostylev ahighcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT pallaviumahaddalkar ahighcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT oliverkeminer ahighcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT kamyarhadian ahighcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT kenjischorpp ahighcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT philipgribbon ahighcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT heikolickert ahighcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT alexanderkorostylev highcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT pallaviumahaddalkar highcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT oliverkeminer highcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT kamyarhadian highcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT kenjischorpp highcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT philipgribbon highcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
AT heikolickert highcontentsmallmoleculescreenidentifiesnovelinducersofdefinitiveendoderm
_version_ 1725487787362222080