首页> 外文期刊>Cytometry, Part B. Clinical cytometry: the journal of the International Society for Analytical Cytology >Heterogeneity of aldehyde dehydrogenase expression in lung cancer cell lines is revealed by aldefluor flow cytometry-based assay
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Heterogeneity of aldehyde dehydrogenase expression in lung cancer cell lines is revealed by aldefluor flow cytometry-based assay

机译:醛脱氢酶在肺癌细胞系中表达的异质性通过基于aldefluor流式细胞仪的分析揭示

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Background: We have been interested in studying the roles of two aldehyde dehydrogenases in the biology of lung cancer. In this study, we seek to apply Aldefluor flow cytometry-based assay for the measurement of aldehyde dehydrogenase (ALDH) activity in lung cancer cell lines, which may become a new tool that will facilitate our continued research in this field. Experimental Design: Several established lung cancer cell lines were used, including A549 cell line expressing siRNA against aldehyde dehydrogenase class-1A1 (ALDH1A1). Western blot analysis, spectrophotometry assay, and Aldefluor staining were used to measure protein or enzyme activity in these cell lines. For the purpose of measurement of ALDH activity by Aldefluor in cells with known high ALDH levels, cells were mixed 1:10 with immortalized lung epithelial cell line (Beas-2B), which is known to lack ALDH activity. To delineate dead cells, double staining using Aldefluor and propidium iodide (PI) was done. Double staining was also used to detect changes in ALDH activity in two different cell lines after treatment with 4-hydroperoxycyclophosphamide (4-HC). Results: Our results show a very good correlation between Aldefluor, Western blot, and spectrophotometry assays. Mixing experiments with Beas-2B cells allowed accurate assessment of ALDH activity in A549 cells at baseline and after siRNA expression, thus establishing an approach that facilitates the measurement of very high ALDH using the Aldefluor assay. Aldefluor staining was able to detect heterogeneity in ALDH expression among as well as within the same cell lines and better assess viability after 4-HC treatment when combined with Pl. Conclusions: Aldefluor assay can be adapted successfully to measure ALDH activity in lung cancer cells and may have the advantage of providing real time changes in ALDH activity in viable cells treated with siRNA or chemotherapy. (c) 2006 International Society for Analytical Cytology.
机译:背景:我们一直对研究两种醛脱氢酶在肺癌生物学中的作用感兴趣。在这项研究中,我们寻求将基于Aldefluor流式细胞仪的测定方法应用于肺癌细胞系中醛脱氢酶(ALDH)活性的测量,这可能成为一种新工具,将有助于我们在这一领域的持续研究。实验设计:使用了几种已建立的肺癌细胞系,包括表达针对醛脱氢酶1A1类(ALDH1A1)的siRNA的A549细胞系。 Western印迹分析,分光光度法测定和Aldefluor染色用于测量这些细胞系中的蛋白质或酶活性。为了通过Aldefluor在已知高ALDH水平的细胞中测量ALDH活性,将细胞与永生化的肺上皮细胞系(Beas-2B)按1:10混合,该细胞系缺乏ALDH活性。为了描绘死细胞,使用Aldefluor和碘化丙锭(PI)进行了两次染色。在用4-氢过氧环磷酰胺(4-HC)处理后,双染色还用于检测两种不同细胞系中ALDH活性的变化。结果:我们的结果显示Aldefluor,Western印迹和分光光度法测定之间有很好的相关性。通过与Beas-2B细胞混合实验,可以准确评估基线和siRNA表达后A549细胞中的ALDH活性,从而建立了一种使用Aldefluor测定法促进非常高的ALDH测量的方法。 Aldefluor染色能够检测到同一细胞系之间以及同一细胞系内ALDH表达的异质性,并且在与P1结合使用4-HC处理后能够更好地评估生存力。结论:Aldefluor测定法可成功地用于测量肺癌细胞中的ALDH活性,并具有实时提供siRNA或化学疗法治疗的活细胞中ALDH活性变化的优势。 (c)2006年国际分析细胞学学会。

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