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人胚胎干细胞的荧光激活单细胞分选

Fluorescence-activated single cell sorting of human embryonic stem cells.

作者信息

Hewitt Z, Forsyth N R, Waterfall M, Wojtacha D, Thomson A J, McWhir J

机构信息

Gene Function and Development, Roslin Institute, Roslin, Midlothian, United Kingdom.

出版信息

Cloning Stem Cells. 2006 Fall;8(3):225-34. doi: 10.1089/clo.2006.8.225.

Abstract

Human embryonic stem cells (hESC) are the subject of intense investigation for use in regenerative medicine, in toxicity testing, and as models for the study of human development. Automated cell sorting will enhance the isolation of homogenous pools of differentiated hESCs both for basic studies and for therapeutic applications. Sorting could also be used to deplete undifferentiated, potentially tumourigenic cells. However, hESCs are sensitive to single cell disaggregation and recover poorly when plated at clonal density. Here we report a method for successful semi-automated single cell sorting of hESCs. This method utilizes an ES-specific promoter-transgene construct and automated FACS-based single cell sorting and plating. Clonal recovery in physiologic oxygen (2%) was increased fourfold over room oxygen (21%; p < 0.01). This automated protocol will help to realize proposed hESC strategies that are hampered by low throughput and poor yields.

摘要

人类胚胎干细胞(hESC)是再生医学、毒性测试以及人类发育研究模型等领域深入研究的对象。自动化细胞分选将有助于从基础研究和治疗应用两方面增强对分化的hESC同质细胞群的分离。分选还可用于去除未分化的、具有潜在致瘤性的细胞。然而,hESC对单细胞解离敏感,以克隆密度接种时恢复能力较差。在此,我们报告一种成功对hESC进行半自动单细胞分选的方法。该方法利用一种ES特异性启动子-转基因构建体以及基于流式细胞仪的自动化单细胞分选和接种。在生理氧浓度(2%)下的克隆回收率比在室内氧浓度(21%)下提高了四倍(p < 0.01)。这种自动化方案将有助于实现那些因通量低和产量差而受阻的hESC相关策略。

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