Multilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cells

Abstract Background Human induced pluripotent stem cells (hiPSCs) offer a renewable source of cells for the generation of hematopoietic cells for cell-based therapy, disease modeling, and drug screening. However, current serum/feeder-free differentiation protocols rely on the use of various cytokine...

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Main Authors: Ratchapong Netsrithong, Siriwal Suwanpitak, Bootsakorn Boonkaew, Kongtana Trakarnsanga, Lung-Ji Chang, Chartsiam Tipgomut, Chinnavuth Vatanashevanopakorn, Kovit Pattanapanyasat, Methichit Wattanapanitch
Format: Article
Language:English
Published: BMC 2020-11-01
Series:Stem Cell Research & Therapy
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Online Access:http://link.springer.com/article/10.1186/s13287-020-01997-w
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spelling doaj-9974968082df4a4a98ff0b7af1132e112020-11-25T04:08:30ZengBMCStem Cell Research & Therapy1757-65122020-11-0111111510.1186/s13287-020-01997-wMultilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cellsRatchapong Netsrithong0Siriwal Suwanpitak1Bootsakorn Boonkaew2Kongtana Trakarnsanga3Lung-Ji Chang4Chartsiam Tipgomut5Chinnavuth Vatanashevanopakorn6Kovit Pattanapanyasat7Methichit Wattanapanitch8Siriraj Center for Regenerative Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol UniversitySiriraj Center for Regenerative Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol UniversitySiriraj Center for Regenerative Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol UniversityDepartment of Biochemistry, Faculty of Medicine Siriraj Hospital, Mahidol UniversityShenzhen Genoimmune Medical InstituteDepartment of Biochemistry, Faculty of Medicine Siriraj Hospital, Mahidol UniversitySiriraj Center for Regenerative Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol UniversitySiriraj Center for Regenerative Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol UniversitySiriraj Center for Regenerative Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol UniversityAbstract Background Human induced pluripotent stem cells (hiPSCs) offer a renewable source of cells for the generation of hematopoietic cells for cell-based therapy, disease modeling, and drug screening. However, current serum/feeder-free differentiation protocols rely on the use of various cytokines, which makes the process very costly or the generation of embryoid bodies (EBs), which are labor-intensive and can cause heterogeneity during differentiation. Here, we report a simple feeder and serum-free monolayer protocol for efficient generation of iPSC-derived multipotent hematoendothelial progenitors (HEPs), which can further differentiate into endothelial and hematopoietic cells including erythroid and T lineages. Methods Formation of HEPs from iPSCs was initiated by inhibition of GSK3 signaling for 2 days followed by the addition of VEGF and FGF2 for 3 days. The HEPs were further induced toward mature endothelial cells (ECs) in an angiogenic condition and toward T cells by co-culturing with OP9-DL1 feeder cells. Endothelial-to-hematopoietic transition (EHT) of the HEPs was further promoted by supplementation with the TGF-β signaling inhibitor. Erythroid differentiation was performed by culturing the hematopoietic stem/progenitor cells (HSPCs) in a three-stage erythroid liquid culture system. Results Our protocol significantly enhanced the number of KDR+ CD34+ CD31+ HEPs on day 5 of differentiation. Further culture of HEPs in angiogenic conditions promoted the formation of mature ECs, which expressed CD34, CD31, CD144, vWF, and ICAM-1, and could exhibit the formation of vascular-like network and acetylated low-density lipoprotein (Ac-LDL) uptake. In addition, the HEPs were differentiated into CD8+ T lymphocytes, which could be expanded up to 34-fold upon TCR stimulation. Inhibition of TGF-β signaling at the HEP stage promoted EHT and yielded a large number of HSPCs expressing CD34 and CD43. Upon erythroid differentiation, these HSPCs were expanded up to 40-fold and displayed morphological changes following stages of erythroid development. Conclusion This protocol offers an efficient and simple approach for the generation of multipotent HEPs and could be adapted to generate desired blood cells in large numbers for applications in basic research including developmental study, disease modeling, and drug screening as well as in regenerative medicine.http://link.springer.com/article/10.1186/s13287-020-01997-wInduced pluripotent stem cellsHematopoietic differentiationHematoendothelial progenitorsEndothelial cellsT lymphocytesErythroid cells
collection DOAJ
language English
format Article
sources DOAJ
author Ratchapong Netsrithong
Siriwal Suwanpitak
Bootsakorn Boonkaew
Kongtana Trakarnsanga
Lung-Ji Chang
Chartsiam Tipgomut
Chinnavuth Vatanashevanopakorn
Kovit Pattanapanyasat
Methichit Wattanapanitch
spellingShingle Ratchapong Netsrithong
Siriwal Suwanpitak
Bootsakorn Boonkaew
Kongtana Trakarnsanga
Lung-Ji Chang
Chartsiam Tipgomut
Chinnavuth Vatanashevanopakorn
Kovit Pattanapanyasat
Methichit Wattanapanitch
Multilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cells
Stem Cell Research & Therapy
Induced pluripotent stem cells
Hematopoietic differentiation
Hematoendothelial progenitors
Endothelial cells
T lymphocytes
Erythroid cells
author_facet Ratchapong Netsrithong
Siriwal Suwanpitak
Bootsakorn Boonkaew
Kongtana Trakarnsanga
Lung-Ji Chang
Chartsiam Tipgomut
Chinnavuth Vatanashevanopakorn
Kovit Pattanapanyasat
Methichit Wattanapanitch
author_sort Ratchapong Netsrithong
title Multilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cells
title_short Multilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cells
title_full Multilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cells
title_fullStr Multilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cells
title_full_unstemmed Multilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cells
title_sort multilineage differentiation potential of hematoendothelial progenitors derived from human induced pluripotent stem cells
publisher BMC
series Stem Cell Research & Therapy
issn 1757-6512
publishDate 2020-11-01
description Abstract Background Human induced pluripotent stem cells (hiPSCs) offer a renewable source of cells for the generation of hematopoietic cells for cell-based therapy, disease modeling, and drug screening. However, current serum/feeder-free differentiation protocols rely on the use of various cytokines, which makes the process very costly or the generation of embryoid bodies (EBs), which are labor-intensive and can cause heterogeneity during differentiation. Here, we report a simple feeder and serum-free monolayer protocol for efficient generation of iPSC-derived multipotent hematoendothelial progenitors (HEPs), which can further differentiate into endothelial and hematopoietic cells including erythroid and T lineages. Methods Formation of HEPs from iPSCs was initiated by inhibition of GSK3 signaling for 2 days followed by the addition of VEGF and FGF2 for 3 days. The HEPs were further induced toward mature endothelial cells (ECs) in an angiogenic condition and toward T cells by co-culturing with OP9-DL1 feeder cells. Endothelial-to-hematopoietic transition (EHT) of the HEPs was further promoted by supplementation with the TGF-β signaling inhibitor. Erythroid differentiation was performed by culturing the hematopoietic stem/progenitor cells (HSPCs) in a three-stage erythroid liquid culture system. Results Our protocol significantly enhanced the number of KDR+ CD34+ CD31+ HEPs on day 5 of differentiation. Further culture of HEPs in angiogenic conditions promoted the formation of mature ECs, which expressed CD34, CD31, CD144, vWF, and ICAM-1, and could exhibit the formation of vascular-like network and acetylated low-density lipoprotein (Ac-LDL) uptake. In addition, the HEPs were differentiated into CD8+ T lymphocytes, which could be expanded up to 34-fold upon TCR stimulation. Inhibition of TGF-β signaling at the HEP stage promoted EHT and yielded a large number of HSPCs expressing CD34 and CD43. Upon erythroid differentiation, these HSPCs were expanded up to 40-fold and displayed morphological changes following stages of erythroid development. Conclusion This protocol offers an efficient and simple approach for the generation of multipotent HEPs and could be adapted to generate desired blood cells in large numbers for applications in basic research including developmental study, disease modeling, and drug screening as well as in regenerative medicine.
topic Induced pluripotent stem cells
Hematopoietic differentiation
Hematoendothelial progenitors
Endothelial cells
T lymphocytes
Erythroid cells
url http://link.springer.com/article/10.1186/s13287-020-01997-w
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