Literature DB >> 31965957

Establishment of a feeder and serum-free culture system for human embryonic stem cells.

LiYun Wang1, RuiNa Zhang2, RongHua Ma1, GongXue Jia2, ShengYan Jian1, XiangHui Zeng1, ZhengFang Xiong1, BinYe Li1, Chen Li1,3, ZhenZhen Lv4, Xue Bai4.   

Abstract

Stem cells are an immortal cell population capable of self-renewal; they are essential for human development and ageing and are a major focus of research in regenerative medicine. Despite considerable progress in differentiation of stem cells in vitro, culture conditions require further optimization to maximize the potential for multicellular differentiation during expansion. The aim of this study was to develop a feeder-free, serum-free culture method for human embryonic stem cells (hESCs), to establish optimal conditions for hESC proliferation, and to determine the biological characteristics of the resulting hESCs. The H9 hESC line was cultured using a homemade serum-free, feeder-free culture system, and growth was observed. The expression of pluripotency proteins (OCT4, NANOG, SOX2, LIN28, SSEA-3, SSEA-4, TRA-1-60, and TRA-1-81) in hESCs was determined by immunofluorescence and western blotting. The mRNA expression levels of genes encoding nestin, brachyury and α-fetoprotein in differentiated H9 cells were determined by RT-PCR. The newly developed culture system resulted in classical hESC colonies that were round or elliptical in shape, with clear and neat boundaries. The expression of pluripotency proteins was increased, and the genes encoding nestin, brachyury, and α-fetoprotein were expressed in H9 cells, suggesting that the cells maintained in vitro differentiation capacity. Our culture system containing a unique set of components, with animal-derived substances, maintained the self-renewal potential and pluripotency of H9 cells for eight passages. Further optimization of this system may expand the clinical application of hESCs.

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Keywords:  Basic fibroblast growth factor; Feeder-free; Human embryonic stem cells; Pluripotency; Self-renewal

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Year:  2020        PMID: 31965957     DOI: 10.1017/S0967199419000625

Source DB:  PubMed          Journal:  Zygote        ISSN: 0967-1994            Impact factor:   1.442


  2 in total

1.  Different transcriptional profiles of human embryonic stem cells grown in a feeder-free culture system and on human foreskin fibroblast feeder layers.

Authors:  Lu Xiao; Juan Zhu; Zheng Liu; Bangyong Wu; Xiaohua Zhou; Yanxing Wei; Fei Sun; Zhijian Wang; Song Quan; Qi Li; Jun Wang; Liping Huang; Yanlin Ma
Journal:  Aging (Albany NY)       Date:  2022-09-13       Impact factor: 5.955

2.  Video bioinformatics analysis of human pluripotent stem cell morphology, quality, and cellular dynamics.

Authors:  Sabrina C Lin; Antonio Loza; Lauren Antrim; Prue Talbot
Journal:  Stem Cells Transl Med       Date:  2021-06-05       Impact factor: 6.940

  2 in total

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