首页> 外文期刊>Stem cell reviews and Reports >Separation of SSEA-4 and TRA-1-60 labelled undifferentiated human embryonic stem cells from a heterogeneous cell population using magnetic-activated cell sorting (MACS) and fluorescence-activated cell sorting (FACS).
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Separation of SSEA-4 and TRA-1-60 labelled undifferentiated human embryonic stem cells from a heterogeneous cell population using magnetic-activated cell sorting (MACS) and fluorescence-activated cell sorting (FACS).

机译:使用磁激活细胞分选(MACS)和荧光激活细胞分选(FACS)从异种细胞群体中分离SSEA-4和TRA-1-60标记的未分化人类胚胎干细胞。

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A major concern in human embryonic stem cell (hESC)-derived cell replacement therapy is the risk of tumorigenesis from undifferentiated hESCs residing in the population of hESC-derived cells. Separation of these undifferentiated hESCs from the differentiated derivatives using cell sorting methods may be a plausible approach in overcoming this problem. We therefore explored magnetic activated cell sorting (MACS) and fluorescence activated cell sorting (FACS) to separate labelled undifferentiated hESCs from a heterogeneous population of hESCs and hepatocellular carcinoma cells (HepG2) deliberately mixed respectively at different ratios (10:90, 20:80, 30:70, 40:60 and 50:50) to mimic a standard in vitro differentiation protocol, instead of using a hESC-differentiated cell population, so that we could be sure of the actual number of cells separated. HES-3 and HES-4 cells were labelled in separate experiments for the stem cell markers SSEA-4 and TRA-1-60 using primary antibodies. Anti-PE magnetic microbeads that recognize the PE-conjugated SSEA-4 labelled hESCs was added to the heterogeneous cell mixture and passed through the MACS column. The cells that passed through the column ('flow-through' fraction) and those retained ('labelled' fraction') were subsequently analysed using FACS. The maximum efficacy of hESCs retention using MACS was 81.0 +/- 2.9% (HES-3) and 83.6 +/- 4.2% (HES-4). Using FACS, all the undifferentiated hESCs labelled with the two cell-surface markers could be removed by selective gating. Both hESCs and HepG2 cells in the 'flow-through' fraction following MACS separation were viable in culture whereas by FACS separation only the HepG2 cells were viable. FACS efficiently helps to eliminate the undifferentiated hESCs based on their cell-surface antigens expressed.
机译:人类胚胎干细胞(hESC)衍生的细胞替代疗法中的一个主要问题是驻留在hESC衍生细胞群中的未分化hESC致癌的风险。使用细胞分选方法将这些未分化的hESC与分化的衍生物分离可能是克服这一问题的一种可行方法。因此,我们探索了磁激活细胞分选(MACS)和荧光激活细胞分选(FACS)来从特异混合的hESCs和肝癌细胞(HepG2)的异质群体中分离标记的未分化hESCs(10:90,20:80 ,30:70、40:60和50:50)来模拟标准的体外分化方案,而不是使用hESC分化的细胞群,这样我们就可以确定分离出的实际细胞数。使用一级抗体在单独的实验中为干细胞标记SSEA-4和TRA-1-60标记HES-3和HES-4细胞。将识别PE共轭的SSEA-4标记的hESC的抗PE磁微珠添加到异质细胞混合物中,并通过MACS柱。随后,使用FACS分析通过柱的细胞(“流通”级分)和保留的细胞(“标记的”级分)。使用MACS保留hESCs的最大功效为81.0 +/- 2.9%(HES-3)和83.6 +/- 4.2%(HES-4)。使用FACS,可以通过选择性门控去除所有用两种细胞表面标记标记的未分化hESC。 MACS分离后“流通”级分中的hESCs和HepG2细胞在培养中都是可行的,而通过FACS分离只有HepG2细胞是可行的。 FACS基于表达的细胞表面抗原,有效地帮助消除了未分化的hESC。

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