首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Development of an XTT tetrazolium salt-based assay for detection of specific hyperthermia sensitizers in a high-flux screening programme.
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Development of an XTT tetrazolium salt-based assay for detection of specific hyperthermia sensitizers in a high-flux screening programme.

机译:基于XTT四唑盐的检测方法的开发,用于在高通量筛选程序中检测特定的高热敏化剂。

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It is now possible to search for new drugs using high-throughput screening of chemical libraries accumulated over the past few years. To detect potential new hyperthermia sensitizers, we are screening for chemical inhibitors of thermotolerance. For the screening of a large chemical library, a rapid and simple assay based on the XTT-tetrazolium salt with the addition of intermediate electron acceptor, phenazine methosulphate (PMS) as a promoter, was developed. It was found that the sensitivity of the XTT/PMS assay is sufficient for assessing thermal cell killing and thermotolerance, although it was highly dependent on cell number and type. When the formazan assay system was challenged with the bioflavonoid drug quercetin (up to 25mm) and validated against the clonogenic cell survival assay, significant decreases in thermotolerant cell viability were observed, directly reflecting inhibition of thermotolerance. Although short-term assays can, in some instances, underestimate overall cell killing, the dose dependency of inhibition of thermotolerance by quercetin recorded in this study by clonogenic and XTT/PMS assays was similar. Application of the XTT/PMS assay in chemical library screening was highly effective in differentiating potential thermotolerance inhibitors from both chemicals with lack of efficacy and from toxic compounds. Taken together, these results show that the XTT/PMS assay, when carried out under careful conditions, is well suited for primary high-flux screen of many thousands of compounds, thus opening up new areas for discovery of hyperthermia sensitizers.
机译:现在,可以使用过去几年中积累的化学文库的高通量筛选来搜索新药。为了检测潜在的新型高温热敏剂,我们正在筛选耐热性的化学抑制剂。为了筛选大型化学文库,开发了一种基于XTT-四唑鎓盐并添加中间电子受体,吩嗪硫酸甲酯(PMS)作为促进剂的快速简便的测定方法。发现XTT / PMS分析的灵敏度足以评估热细胞的杀伤和耐热性,尽管它高度依赖于细胞数量和类型。当用生物类黄酮药物槲皮素(最大25毫米)挑战甲for测定系统并针对克隆形成细胞存活测定进行验证时,观察到耐热细胞活力显着降低,直接反映了耐热性的抑制。尽管在某些情况下短期分析可能会低估总体细胞杀伤力,但克隆形成和XTT / PMS分析在这项研究中记录的槲皮素抑制耐热性的剂量依赖性是相似的。 XTT / PMS分析在化学文库筛选中的应用在区分潜在的耐热抑制剂与缺乏功效的化学药品和有毒化合物方面非常有效。综上所述,这些结果表明,在谨慎的条件下进行XTT / PMS分析,非常适合于数千种化合物的一次高通量筛选,从而为发现高温敏化剂开辟了新领域。

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