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Colloidal Self-Assembled Patterns Maintain the Pluripotency and Promote the Hemopoietic Potential of Human Embryonic Stem Cells

The generation of blood cells in a significant amount for clinical uses is still challenging. Human pluripotent stem cells-derived hemopoietic cells (hPSC-HCs) are a promising cell source to generate blood cells. Previously, it has been shown that the attached substrates are crucial in the maintenan...

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Autores principales: Lin, Jiao, Zeng, Jiahui, Sun, Wencui, Liu, Kun, Enkhbat, Myagmartsend, Yi, Danying, Harati, Javad, Liu, Jiaxin, Kingshott, Peter, Chen, Bo, Ma, Feng, Wang, Peng-Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8636751/
https://www.ncbi.nlm.nih.gov/pubmed/34869369
http://dx.doi.org/10.3389/fcell.2021.771773
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author Lin, Jiao
Zeng, Jiahui
Sun, Wencui
Liu, Kun
Enkhbat, Myagmartsend
Yi, Danying
Harati, Javad
Liu, Jiaxin
Kingshott, Peter
Chen, Bo
Ma, Feng
Wang, Peng-Yuan
author_facet Lin, Jiao
Zeng, Jiahui
Sun, Wencui
Liu, Kun
Enkhbat, Myagmartsend
Yi, Danying
Harati, Javad
Liu, Jiaxin
Kingshott, Peter
Chen, Bo
Ma, Feng
Wang, Peng-Yuan
author_sort Lin, Jiao
collection PubMed
description The generation of blood cells in a significant amount for clinical uses is still challenging. Human pluripotent stem cells-derived hemopoietic cells (hPSC-HCs) are a promising cell source to generate blood cells. Previously, it has been shown that the attached substrates are crucial in the maintenance or differentiation of hPSCs. In this study, a new family of artificial extracellular matrix (ECM) called colloidal self-assembled patterns (cSAPs: #1–#5) was used for the expansion of mouse and human PSCs. The optimized cSAP (i.e., #4 and #5) was selected for subsequent hemopoietic differentiation of human embryonic stem cells (hESCs). Results showed that the hematopoietic potential of hESCs was enhanced approx 3–4 folds on cSAP #5 compared to the flat control. The cell population of hematopoietic progenitors (i.e., CD34(+)CD43(+) cells) and erythroid progenitors (i.e., CD71+GPA+ cells) were enhanced 4 folds at day 8 and 3 folds at day 14. RNA sequencing analysis of cSAP-derived hESCs showed that there were 300 genes up-regulated and 627 genes down-regulated compared to the flat control. The enriched signaling pathways, including up-regulation (i.e., Toll-like receptor, HIF-1a, and Notch) or down-regulation (i.e., FAs, MAPK, JAK/STAT, and TGF-β) were classic in the maintenance of hESC phenotype Real time PCR confirmed that the expression of focal adhesion (PTK2, VCL, and CXCL14) and MAPK signaling (CAV1) related genes was down-regulated 2-3 folds compared to the flat control. Altogether, cSAP enhances the pluripotency and the hematopoietic potential of hESCs that subsequently generates more blood-like cells. This study reveals the potential of cSAPs on the expansion and early-stage blood cell lineage differentiation of hPSCs.
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spelling pubmed-86367512021-12-03 Colloidal Self-Assembled Patterns Maintain the Pluripotency and Promote the Hemopoietic Potential of Human Embryonic Stem Cells Lin, Jiao Zeng, Jiahui Sun, Wencui Liu, Kun Enkhbat, Myagmartsend Yi, Danying Harati, Javad Liu, Jiaxin Kingshott, Peter Chen, Bo Ma, Feng Wang, Peng-Yuan Front Cell Dev Biol Cell and Developmental Biology The generation of blood cells in a significant amount for clinical uses is still challenging. Human pluripotent stem cells-derived hemopoietic cells (hPSC-HCs) are a promising cell source to generate blood cells. Previously, it has been shown that the attached substrates are crucial in the maintenance or differentiation of hPSCs. In this study, a new family of artificial extracellular matrix (ECM) called colloidal self-assembled patterns (cSAPs: #1–#5) was used for the expansion of mouse and human PSCs. The optimized cSAP (i.e., #4 and #5) was selected for subsequent hemopoietic differentiation of human embryonic stem cells (hESCs). Results showed that the hematopoietic potential of hESCs was enhanced approx 3–4 folds on cSAP #5 compared to the flat control. The cell population of hematopoietic progenitors (i.e., CD34(+)CD43(+) cells) and erythroid progenitors (i.e., CD71+GPA+ cells) were enhanced 4 folds at day 8 and 3 folds at day 14. RNA sequencing analysis of cSAP-derived hESCs showed that there were 300 genes up-regulated and 627 genes down-regulated compared to the flat control. The enriched signaling pathways, including up-regulation (i.e., Toll-like receptor, HIF-1a, and Notch) or down-regulation (i.e., FAs, MAPK, JAK/STAT, and TGF-β) were classic in the maintenance of hESC phenotype Real time PCR confirmed that the expression of focal adhesion (PTK2, VCL, and CXCL14) and MAPK signaling (CAV1) related genes was down-regulated 2-3 folds compared to the flat control. Altogether, cSAP enhances the pluripotency and the hematopoietic potential of hESCs that subsequently generates more blood-like cells. This study reveals the potential of cSAPs on the expansion and early-stage blood cell lineage differentiation of hPSCs. Frontiers Media S.A. 2021-11-16 /pmc/articles/PMC8636751/ /pubmed/34869369 http://dx.doi.org/10.3389/fcell.2021.771773 Text en Copyright © 2021 Lin, Zeng, Sun, Liu, Enkhbat, Yi, Harati, Liu, Kingshott, Chen, Ma and Wang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Lin, Jiao
Zeng, Jiahui
Sun, Wencui
Liu, Kun
Enkhbat, Myagmartsend
Yi, Danying
Harati, Javad
Liu, Jiaxin
Kingshott, Peter
Chen, Bo
Ma, Feng
Wang, Peng-Yuan
Colloidal Self-Assembled Patterns Maintain the Pluripotency and Promote the Hemopoietic Potential of Human Embryonic Stem Cells
title Colloidal Self-Assembled Patterns Maintain the Pluripotency and Promote the Hemopoietic Potential of Human Embryonic Stem Cells
title_full Colloidal Self-Assembled Patterns Maintain the Pluripotency and Promote the Hemopoietic Potential of Human Embryonic Stem Cells
title_fullStr Colloidal Self-Assembled Patterns Maintain the Pluripotency and Promote the Hemopoietic Potential of Human Embryonic Stem Cells
title_full_unstemmed Colloidal Self-Assembled Patterns Maintain the Pluripotency and Promote the Hemopoietic Potential of Human Embryonic Stem Cells
title_short Colloidal Self-Assembled Patterns Maintain the Pluripotency and Promote the Hemopoietic Potential of Human Embryonic Stem Cells
title_sort colloidal self-assembled patterns maintain the pluripotency and promote the hemopoietic potential of human embryonic stem cells
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8636751/
https://www.ncbi.nlm.nih.gov/pubmed/34869369
http://dx.doi.org/10.3389/fcell.2021.771773
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