Ovchinnikov Dmitry A, Titmarsh Drew M, Fortuna Patrick R J, Hidalgo Alejandro, Alharbi Samah, Whitworth Deanne J, Cooper-White Justin J, Wolvetang Ernst J
Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, QLD 4072, Australia.
School of Veterinary Sciences, The University of Queensland, Gatton, QLD 4343, Australia.
Stem Cell Res. 2014 Sep;13(2):251-61. doi: 10.1016/j.scr.2014.05.006. Epub 2014 Jun 8.
Optimization of pluripotent stem cell expansion and differentiation is facilitated by biological tools that permit non-invasive and dynamic monitoring of pluripotency, and the ability to select for an undifferentiated input cell population. Here we report on the generation and characterisation of clonal human embryonic stem (HES3, H9) and human induced pluripotent stem cell lines (UQEW01i-epifibC11) that have been stably modified with an artificial EOS(C3+) promoter driving expression of EGFP and puromycin resistance-conferring proteins. We show that EGFP expression faithfully reports on the pluripotency status of the cells in these lines and that antibiotic selection allows for an efficient elimination of differentiated cells from the cultures. We demonstrate that the extinction of the expression of the pluripotency reporter during differentiation closely correlates with the decrease in expression of conventional pluripotency markers, such as OCT4 (POU5F1), TRA-1-60 and SSEA4 when screening across conditions with various levels of pluripotency-maintaining or differentiation-inducing signals. We further illustrate the utility of these lines for real-time monitoring of pluripotency in embryoid bodies and microfluidic bioreactors.
多能干细胞扩增和分化的优化可通过一些生物学工具来实现,这些工具能够对多能性进行非侵入性动态监测,并能选择未分化的输入细胞群体。在此,我们报告了克隆人胚胎干细胞系(HES3、H9)和人诱导多能干细胞系(UQEW01i-epifibC11)的产生及特性,这些细胞系已被用人造EOS(C3+)启动子进行稳定修饰,该启动子驱动EGFP和赋予嘌呤霉素抗性的蛋白的表达。我们表明,EGFP表达能如实反映这些细胞系中细胞的多能性状态,并且抗生素筛选可有效从培养物中清除分化细胞。我们证明,在分化过程中多能性报告基因表达的消失与传统多能性标志物(如OCT4 (POU5F1)、TRA-1-60和SSEA4)表达的降低密切相关,这是在筛选具有不同水平多能性维持或分化诱导信号的条件时得出的结论。我们进一步说明了这些细胞系在实时监测胚状体和微流控生物反应器中多能性方面的实用性。