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首页> 外文期刊>Human Reproduction >Characterization of CD30 expression in human embryonic stem cell lines cultured in serum-free media and passaged mechanically.
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Characterization of CD30 expression in human embryonic stem cell lines cultured in serum-free media and passaged mechanically.

机译:CD30在无血清培养基中培养并机械传代的人类胚胎干细胞系中CD30表达的特征。

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摘要

BACKGROUND: The presence of chromosomal abnormalities could have a negative impact for human embryonic stem cell (hESC) applications both in regenerative medicine and in research. A biomarker that allows the identification of chromosomal abnormalities induced in hESC in culture before they take over the culture would represent an important tool for defining optimal culture conditions for hESC. Here we investigate the expression of CD30, reported to be a biomarker of hESCs with abnormal karyotype, in undifferentiated and spontaneously differentiated hESC. METHODS AND RESULTS: hESC were derived and cultured on mouse fibroblasts in KO-SR containing medium (serum free media) and passaged mechanically. Our results based on analysis at mRNA (RT-PCR) and protein (fluorescence-activated cell sorting and immunocytochemistry) level show that CD30 is expressed in undifferentiated hESC, even at very early passages, without any correlation with the presence of chromosomal anomalies. We also show that the expression of CD30 is rapidly lost during early spontaneous differentiation of hESC. CONCLUSION: We conclude that CD30 expression in hESC cultures is probably a consequence of culture conditions, and that KO-SR may play a role. In addition, the expression of so-called 'stemness' markers does not change in undifferentiated hESC during long-term culture or when cells acquire chromosomal abnormalities.
机译:背景:染色体异常的存在可能对人类胚胎干细胞(hESC)在再生医学和研究中的应用产生负面影响。一种生物标记物,可在hESC接管培养之前鉴定培养物中hESC诱导的染色体异常,这将是定义hESC最佳培养条件的重要工具。在这里,我们调查了CD30的表达,据报道是CD30在未分化和自发分化的hESC中具有异常核型的生物标志物。方法和结果:hESC衍生并在含有KO-SR的培养基(无血清培养基)中的小鼠成纤维细胞上培养,并进行机械传代。我们基于mRNA(RT-PCR)和蛋白质(荧光激活的细胞分选和免疫细胞化学)水平的分析结果表明,CD30在未分化的hESC中表达,即使在很早的传代中也没有表达,与染色体异常的存在没有任何关系。我们还显示,在hESC的早期自发分化过程中,CD30的表达迅速丧失。结论:我们得出的结论是,hESC培养物中CD30的表达可能是培养条件的结果,而KO-SR可能发挥了作用。另外,在长期培养过程中或当细胞获得染色体异常时,未分化的hESC中所谓的“ stemness”标记的表达不会改变。

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