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Generation of a human haploid neural stem cell line for genome-wide genetic screening
BACKGROUND: Haploid embryonic stem cells (haESCs) have been established in many species. Differentiated haploid cell line types in mammals are lacking due to spontaneous diploidization during differentiation that compromises lineage-specific screens. AIM: To derive human haploid neural stem cells (h...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Baishideng Publishing Group Inc
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10401418/ https://www.ncbi.nlm.nih.gov/pubmed/37545755 http://dx.doi.org/10.4252/wjsc.v15.i7.734 |
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author | Wang, Hai-Song Ma, Xin-Rui Niu, Wen-Bin Shi, Hao Liu, Yi-Dong Ma, Ning-Zhao Zhang, Nan Jiang, Zi-Wei Sun, Ying-Pu |
author_facet | Wang, Hai-Song Ma, Xin-Rui Niu, Wen-Bin Shi, Hao Liu, Yi-Dong Ma, Ning-Zhao Zhang, Nan Jiang, Zi-Wei Sun, Ying-Pu |
author_sort | Wang, Hai-Song |
collection | PubMed |
description | BACKGROUND: Haploid embryonic stem cells (haESCs) have been established in many species. Differentiated haploid cell line types in mammals are lacking due to spontaneous diploidization during differentiation that compromises lineage-specific screens. AIM: To derive human haploid neural stem cells (haNSCs) to carry out lineage-specific screens. METHODS: Human haNSCs were differentiated from human extended haESCs with the help of Y27632 (ROCK signaling pathway inhibitor) and a series of cytokines to reduce diploidization. Neuronal differentiation of haNSCs was performed to examine their neural differentiation potency. Global gene expression analysis was con-ducted to compare haNSCs with diploid NSCs and haESCs. Fluorescence activated cell sorting was performed to assess the diploidization rate of extended haESCs and haNSCs. Genetic manipulation and screening were utilized to evaluate the significance of human haNSCs as genetic screening tools. RESULTS: Human haESCs in extended pluripotent culture medium showed more compact and smaller colonies, a higher efficiency in neural differentiation, a higher cell survival ratio and higher stability in haploidy maintenance. These characteristics effectively facilitated the derivation of human haNSCs. These human haNSCs can be generated by differentiation and maintain haploidy and multipotency to neurons and glia in the long term in vitro. After PiggyBac transfection, there were multiple insertion sites in the human haNSCs’ genome, and the insertion sites were evenly spread across all chromosomes. In addition, after the cells were treated with manganese, we were able to generate a list of manganese-induced toxicity genes, demonstrating their utility as genetic screening tools. CONCLUSION: This is the first report of a generated human haploid somatic cell line with a complete genome, proliferative ability and neural differentiation potential that provides cell resources for recessive inheritance and drug targeted screening. |
format | Online Article Text |
id | pubmed-10401418 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Baishideng Publishing Group Inc |
record_format | MEDLINE/PubMed |
spelling | pubmed-104014182023-08-05 Generation of a human haploid neural stem cell line for genome-wide genetic screening Wang, Hai-Song Ma, Xin-Rui Niu, Wen-Bin Shi, Hao Liu, Yi-Dong Ma, Ning-Zhao Zhang, Nan Jiang, Zi-Wei Sun, Ying-Pu World J Stem Cells Basic Study BACKGROUND: Haploid embryonic stem cells (haESCs) have been established in many species. Differentiated haploid cell line types in mammals are lacking due to spontaneous diploidization during differentiation that compromises lineage-specific screens. AIM: To derive human haploid neural stem cells (haNSCs) to carry out lineage-specific screens. METHODS: Human haNSCs were differentiated from human extended haESCs with the help of Y27632 (ROCK signaling pathway inhibitor) and a series of cytokines to reduce diploidization. Neuronal differentiation of haNSCs was performed to examine their neural differentiation potency. Global gene expression analysis was con-ducted to compare haNSCs with diploid NSCs and haESCs. Fluorescence activated cell sorting was performed to assess the diploidization rate of extended haESCs and haNSCs. Genetic manipulation and screening were utilized to evaluate the significance of human haNSCs as genetic screening tools. RESULTS: Human haESCs in extended pluripotent culture medium showed more compact and smaller colonies, a higher efficiency in neural differentiation, a higher cell survival ratio and higher stability in haploidy maintenance. These characteristics effectively facilitated the derivation of human haNSCs. These human haNSCs can be generated by differentiation and maintain haploidy and multipotency to neurons and glia in the long term in vitro. After PiggyBac transfection, there were multiple insertion sites in the human haNSCs’ genome, and the insertion sites were evenly spread across all chromosomes. In addition, after the cells were treated with manganese, we were able to generate a list of manganese-induced toxicity genes, demonstrating their utility as genetic screening tools. CONCLUSION: This is the first report of a generated human haploid somatic cell line with a complete genome, proliferative ability and neural differentiation potential that provides cell resources for recessive inheritance and drug targeted screening. Baishideng Publishing Group Inc 2023-07-26 2023-07-26 /pmc/articles/PMC10401418/ /pubmed/37545755 http://dx.doi.org/10.4252/wjsc.v15.i7.734 Text en ©The Author(s) 2023. Published by Baishideng Publishing Group Inc. All rights reserved. https://creativecommons.org/licenses/by-nc/4.0/This article is an open-access article that was selected by an in-house editor and fully peer-reviewed by external reviewers. It is distributed in accordance with the Creative Commons Attribution NonCommercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial. |
spellingShingle | Basic Study Wang, Hai-Song Ma, Xin-Rui Niu, Wen-Bin Shi, Hao Liu, Yi-Dong Ma, Ning-Zhao Zhang, Nan Jiang, Zi-Wei Sun, Ying-Pu Generation of a human haploid neural stem cell line for genome-wide genetic screening |
title | Generation of a human haploid neural stem cell line for genome-wide genetic screening |
title_full | Generation of a human haploid neural stem cell line for genome-wide genetic screening |
title_fullStr | Generation of a human haploid neural stem cell line for genome-wide genetic screening |
title_full_unstemmed | Generation of a human haploid neural stem cell line for genome-wide genetic screening |
title_short | Generation of a human haploid neural stem cell line for genome-wide genetic screening |
title_sort | generation of a human haploid neural stem cell line for genome-wide genetic screening |
topic | Basic Study |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10401418/ https://www.ncbi.nlm.nih.gov/pubmed/37545755 http://dx.doi.org/10.4252/wjsc.v15.i7.734 |
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