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首页> 外文期刊>Journal of Cancer >A New Method for Identifying Stem-Like Cells in Esophageal Cancer Cell Lines
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A New Method for Identifying Stem-Like Cells in Esophageal Cancer Cell Lines

机译:一种识别食管癌细胞系中干细胞样细胞的新方法

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Cancer stem cells (CSCs) appear to resist chemo-radiotherapy and initiate tumor recurrence in patients. Isolation and further characterization of this subpopulation is important for targeting CSCs. Flow cytometry using Aldefluor, a fluorescent substrate of aldehyde dehydrogenase, has been used to isolate CSCs from various cancer cell lines. However, new techniques are needed to locate and identify CSCs in culture for live-cell analyses such as fluorescence microscopy without introducing artifacts during cell sorting and to observe CSC and non-CSC interactions. Previously, we characterized a distinct CSC subpopulation within human esophageal cancer cell lines (ESCC). In this study we introduce the attached-cell Aldefluor method (ACAM) to detect CSCs in ESCC cell lines (KY-5, KY-10, TE-1, TE-8, YES-1, YES-2). To validate this technique, we isolated CSCs from the YES-2 parental line using standard Aldefluor flow cytometry to create a cell line enriched in CSCs (YES-2CSC). This line showed significantly greater ACAM staining and higher CD44 levels than YES-2. ACAM also showed significantly higher ALDH activity in YES-2CSC than in YES-2S, a cell line that has a diminished CSC subpopulation after having survived treatment with curcumin. ACAM stained cells within tumorspheres made from the CSC-enriched line but not differentiating cells from the tumorspheres. This study also demonstrates a new method for generating and growing tumorspheres without the growth factor supplements normally used in medium to form tumorspheres. ACAM should be evaluated using other cancer cell lines to further substantiate its effectiveness and to characterize CSCs in culture through various imaging techniques.
机译:癌症干细胞(CSC)似乎抵抗化学放射疗法并在患者中引发肿瘤复发。该亚群的分离和进一步表征对于靶向CSC非常重要。使用醛脱氢酶的荧光底物Aldefluor的流式细胞术已用于从各种癌细胞系中分离CSC。但是,需要新技术来定位和鉴定培养物中的CSC,以进行活细胞分析(例如荧光显微镜检查),而不会在细胞分选过程中引入假象,并观察CSC和非CSC的相互作用。以前,我们表征了人类食道癌细胞系(ESCC)中独特的CSC亚群。在这项研究中,我们介绍了附着细胞Aldefluor方法(ACAM)来检测ESCC细胞系(KY-5,KY-10,TE-1,TE-8,YES-1,YES-2)中的CSC。为了验证该技术,我们使用标准的Aldefluor流式细胞仪从YES-2亲本系中分离了CSC,以创建富含CSC的细胞系(YES-2CSC)。与YES-2相比,该品系显示出显着更高的ACAM染色和更高的CD44水平。与YES-2S相比,ACAM在YES-2CSC中的ALDH活性也明显更高,YES-2S是一种用姜黄素治疗后CSC亚群减少的细胞系。由富含CSC的品系制成的肿瘤球体内的ACAM染色细胞,但未将细胞与肿瘤球区分开。这项研究还证明了一种无需使用通常在培养基中形成肿瘤球的生长因子补充剂即可产生和生长肿瘤球的新方法。应使用其他癌细胞系评估ACAM,以进一步证实其有效性并通过各种成像技术表征培养中的CSC。

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