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Specification of Region-Specific Neurons Including Forebrain Glutamatergic Neurons from Human Induced Pluripotent Stem Cells

BACKGROUND: Directed differentiation of human induced pluripotent stem cells (hiPSC) into functional, region-specific neural cells is a key step to realizing their therapeutic promise to treat various neural disorders, which awaits detailed elucidation. METHODOLOGY/PRINCIPAL FINDINGS: We analyzed ne...

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Autores principales: Zeng, Hui, Guo, Min, Martins-Taylor, Kristen, Wang, Xiaofang, Zhang, Zheng, Park, Jung Woo, Zhan, Shuning, Kronenberg, Mark S., Lichtler, Alexander, Liu, Hui-Xia, Chen, Fang-Ping, Yue, Lixia, Li, Xue-Jun, Xu, Ren-He
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2912324/
https://www.ncbi.nlm.nih.gov/pubmed/20686615
http://dx.doi.org/10.1371/journal.pone.0011853
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author Zeng, Hui
Guo, Min
Martins-Taylor, Kristen
Wang, Xiaofang
Zhang, Zheng
Park, Jung Woo
Zhan, Shuning
Kronenberg, Mark S.
Lichtler, Alexander
Liu, Hui-Xia
Chen, Fang-Ping
Yue, Lixia
Li, Xue-Jun
Xu, Ren-He
author_facet Zeng, Hui
Guo, Min
Martins-Taylor, Kristen
Wang, Xiaofang
Zhang, Zheng
Park, Jung Woo
Zhan, Shuning
Kronenberg, Mark S.
Lichtler, Alexander
Liu, Hui-Xia
Chen, Fang-Ping
Yue, Lixia
Li, Xue-Jun
Xu, Ren-He
author_sort Zeng, Hui
collection PubMed
description BACKGROUND: Directed differentiation of human induced pluripotent stem cells (hiPSC) into functional, region-specific neural cells is a key step to realizing their therapeutic promise to treat various neural disorders, which awaits detailed elucidation. METHODOLOGY/PRINCIPAL FINDINGS: We analyzed neural differentiation from various hiPSC lines generated by others and ourselves. Although heterogeneity in efficiency of neuroepithelial (NE) cell differentiation was observed among different hiPSC lines, the NE differentiation process resembles that from human embryonic stem cells (hESC) in morphology, timing, transcriptional profile, and requirement for FGF signaling. NE cells differentiated from hiPSC, like those from hESC, can also form rostral phenotypes by default, and form the midbrain or spinal progenitors upon caudalization by morphogens. The rostrocaudal neural progenitors can further mature to develop forebrain glutamatergic projection neurons, midbrain dopaminergic neurons, and spinal motor neurons, respectively. Typical ion channels and action potentials were recorded in the hiPSC-derived neurons. CONCLUSIONS/SIGNIFICANCE: Our results demonstrate that hiPSC, regardless of how they were derived, can differentiate into a spectrum of rostrocaudal neurons with functionality, which supports the considerable value of hiPSC for study and treatment of patient-specific neural disorders.
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spelling pubmed-29123242010-08-03 Specification of Region-Specific Neurons Including Forebrain Glutamatergic Neurons from Human Induced Pluripotent Stem Cells Zeng, Hui Guo, Min Martins-Taylor, Kristen Wang, Xiaofang Zhang, Zheng Park, Jung Woo Zhan, Shuning Kronenberg, Mark S. Lichtler, Alexander Liu, Hui-Xia Chen, Fang-Ping Yue, Lixia Li, Xue-Jun Xu, Ren-He PLoS One Research Article BACKGROUND: Directed differentiation of human induced pluripotent stem cells (hiPSC) into functional, region-specific neural cells is a key step to realizing their therapeutic promise to treat various neural disorders, which awaits detailed elucidation. METHODOLOGY/PRINCIPAL FINDINGS: We analyzed neural differentiation from various hiPSC lines generated by others and ourselves. Although heterogeneity in efficiency of neuroepithelial (NE) cell differentiation was observed among different hiPSC lines, the NE differentiation process resembles that from human embryonic stem cells (hESC) in morphology, timing, transcriptional profile, and requirement for FGF signaling. NE cells differentiated from hiPSC, like those from hESC, can also form rostral phenotypes by default, and form the midbrain or spinal progenitors upon caudalization by morphogens. The rostrocaudal neural progenitors can further mature to develop forebrain glutamatergic projection neurons, midbrain dopaminergic neurons, and spinal motor neurons, respectively. Typical ion channels and action potentials were recorded in the hiPSC-derived neurons. CONCLUSIONS/SIGNIFICANCE: Our results demonstrate that hiPSC, regardless of how they were derived, can differentiate into a spectrum of rostrocaudal neurons with functionality, which supports the considerable value of hiPSC for study and treatment of patient-specific neural disorders. Public Library of Science 2010-07-29 /pmc/articles/PMC2912324/ /pubmed/20686615 http://dx.doi.org/10.1371/journal.pone.0011853 Text en Zeng 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
Zeng, Hui
Guo, Min
Martins-Taylor, Kristen
Wang, Xiaofang
Zhang, Zheng
Park, Jung Woo
Zhan, Shuning
Kronenberg, Mark S.
Lichtler, Alexander
Liu, Hui-Xia
Chen, Fang-Ping
Yue, Lixia
Li, Xue-Jun
Xu, Ren-He
Specification of Region-Specific Neurons Including Forebrain Glutamatergic Neurons from Human Induced Pluripotent Stem Cells
title Specification of Region-Specific Neurons Including Forebrain Glutamatergic Neurons from Human Induced Pluripotent Stem Cells
title_full Specification of Region-Specific Neurons Including Forebrain Glutamatergic Neurons from Human Induced Pluripotent Stem Cells
title_fullStr Specification of Region-Specific Neurons Including Forebrain Glutamatergic Neurons from Human Induced Pluripotent Stem Cells
title_full_unstemmed Specification of Region-Specific Neurons Including Forebrain Glutamatergic Neurons from Human Induced Pluripotent Stem Cells
title_short Specification of Region-Specific Neurons Including Forebrain Glutamatergic Neurons from Human Induced Pluripotent Stem Cells
title_sort specification of region-specific neurons including forebrain glutamatergic neurons from human induced pluripotent stem cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2912324/
https://www.ncbi.nlm.nih.gov/pubmed/20686615
http://dx.doi.org/10.1371/journal.pone.0011853
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