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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Determination of dynamic doxorubicin-EC50 value in an automated high-content workstation for cellular assays.
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Determination of dynamic doxorubicin-EC50 value in an automated high-content workstation for cellular assays.

机译:在自动化的高内涵工作站中进行动态阿霉素EC50值测定,以进行细胞分析。

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To overcome the problems of endpoint tests routinely required for EC50 determination, we utilized a novel automated high-content workstation and calculated a time-resolved EC50 value of MCF-7 mamma carcinoma cells treated with a pharmacologic agent. Measuring parameters were the cellular oxygen consumption and the extracellular acidification. These parameters were detected in real-time and label free with optochemical sensor spots in a modified 24-well sensor plate. In particular, the objective was to compare the measuring data of the workstation with a classical standard resazurin cell assay and to transfer the benefit of continuously recorded metabolic data of the workstation to practical time-resolved information about the effect of the applied active reagent (doxorubicin). MCF-7 cells were treated with a broad range of doxorubicin concentrations (100 muM to 1 nM) over 24 h and cellular activities were investigated with both, the resazurin assay and the automated workstation. Twenty-four hours after treatment, the resazurin assay showed an EC50 value (6.3 muM) which was about one decade above the value obtained from oxygen consumption rate (0.37 muM) and extracellular acidification rate (0.72 muM), measured with the workstation. Presumably, the differences are due to the different metabolic nature and regulation behind these measuring parameters. By polynomial fitting of continuously recorded metabolic data, we were able to point out a dynamic, time-resolved EC50 characteristic for different time points. The workstation is a powerful tool to record in vitro kinetic data of pharmacologic effects in vital cells in an automated experimental run.
机译:为了克服EC50测定通常需要进行的终点测试的问题,我们利用了一种新型的自动化高含量工作站,并计算了用药理剂处理的MCF-7乳腺癌细胞的时间分辨EC50值。测量参数是细胞耗氧量和细胞外酸化。这些参数是实时检测的,并且在经过修改的24孔传感器板上可以用光化学传感器点进行无标签标记。特别是,目标是将工作站的测量数据与经典标准刃天青细胞测定法进行比较,并将工作站连续记录的代谢数据的益处转移到有关所用活性试剂(阿霉素)作用的实际时间分辨信息上)。在24小时内,将MCF-7细胞用各种浓度的阿霉素(100μM至1 nM)处理,并用刃天青测定法和自动化工作站研究了细胞活性。处理后二十四小时,刃天青测定显示EC50值(6.3μM),比工作站测得的耗氧率(0.37μM)和细胞外酸化率(0.72μM)高出约十倍。据推测,差异是由于这些测量参数背后的新陈代谢性质和调节不同所致。通过连续记录的代谢数据的多项式拟合,我们能够指出不同时间点的动态,时间分辨的EC50特性。该工作站是一个功能强大的工具,可通过自动化实验记录重要细胞中药理作用的体外动力学数据。

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